{"type": "FeatureCollection", "features": [{"id": "10.1016/j.biocon.2013.04.023", "type": "Feature", "geometry": null, "properties": {"license": "Restricted", "updated": "2026-09-20T16:15:14Z", "type": "Journal Article", "created": "2013-06-11", "title": "Grazed Vegetation Mosaics Do Not Maximize Arthropod Diversity: Evidence From Salt Marshes", "description": "<p>Light to moderate grazing in grasslands can create vegetation mosaics of short grazed vegetation and tall ungrazed vegetation. These mosaics have been proposed to maximize plant and animal species richness, yet experimental evidence, especially regarding arthropods is scarce. This study compares abundance, richness and species composition of arthropods in grazed mosaics to those of homogeneous short and tall vegetation.</p><p>We sampled arthropods on three German coastal salt marshes where grazing with three densities (high, moderate and none) was installed in 1989 on previously intensively grazed plots. Stable vegetation mosaics had developed under moderate stocking densities. We collected spiders, beetles, bugs and moth larvae by suction sampling in a stratified random sampling design.</p><p>Treatments had caused large differences in plant composition after 20 years, which were reflected in the arthropod community. Most species showed a clear preference for either short or tall vegetation, but some species were most abundant in grazed mosaics. Arthropod richness and composition were similar in patches of short vegetation in moderately and highly stocked plots, while patches of tall vegetation were similar to ungrazed plots. Surprisingly, however, grazed mosaics were not richer in species than homogeneous tall vegetation, despite the co-occurrence of species from short, tall and mosaic vegetation.</p><p>We conclude that, although arthropod richness of salt marshes is greatly enhanced when stocking density is decreased, this cannot substitute ungrazed marshes for conservation of arthropod diversity. However, long term cessation leads to the disappearance of several species, and therefore the possibilities of rotational grazing should be explored. (C) 2013 Elsevier Ltd. All rights reserved.</p>", "keywords": ["0106 biological sciences", "2. Zero hunger", "Beetles", "Habitat heterogeneity", "Patch grazing", "Spiders", "15. Life on land", "Invertebrates", "Grassland", "01 natural sciences", "Species richness"], "contacts": [{"organization": "Michiel F. WallisDeVries, Michiel F. WallisDeVries, Corinna Rickert, Rikjan Vermeulen, Oscar Vorst, Roel van Klink, Jan P. Bakker,", "roles": ["creator"]}]}, "links": [{"href": "https://doi.org/10.1016/j.biocon.2013.04.023"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Biological%20Conservation", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1016/j.biocon.2013.04.023", "name": "item", "description": "10.1016/j.biocon.2013.04.023", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1016/j.biocon.2013.04.023"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2013-08-01T00:00:00Z"}}, {"id": "10.1016/j.foreco.2008.01.069", "type": "Feature", "geometry": null, "properties": {"license": "Open Access", "updated": "2026-09-20T16:15:35Z", "type": "Journal Article", "created": "2008-03-25", "title": "Dynamics Of Understorey Herbaceous Plant Diversity Following Shrub Clearing Of Cork Oak Forests: A Five-Year Study", "description": "Cork oak forest management has been traditionally oriented towards optimization of cork production. Shrub clearing is a traditional silvicultural practice aimed to (1) facilitate cork extraction (conducted every nine years); (2) increase cork yield by reducing competition from neighbouring shrubs; and (3) reduce fire risk by decreasing fuel load. These silvicultural practices, however, may interfere with current objectives of conservation and sustainable use of biodiversity. The effects of shrub clearing on different diversity components were assessed in three structurally contrasting forests sites, located in Southern Spain. A fenced experimental plot (1 ha) was established at each forest site. Half of each plot was shrub-cleared and the other half was left unmanaged (control stand). Afterwards, the presence of herbaceous species was monitored during five consecutive years in a total of 120 permanent quadrats (1 m2). Species richness (\u03b1- and \u03b3-diversity) increased with the clearing, mainly by expansion of open grassland species, while \u03b2-diversity declined due to the homogenizing process associated with this expansion. Thus, the herbaceous species composition was modified by these silvicultural practices, especially the second year following treatment application. Effects differed across forest stands, being more marked in the Open Woodland, while there was no significant effect observed in the closed Forest. Understorey herbaceous communities were resilient to shrub clearing and initial diversity values were approximately restored after five years. The high resprouting potential of shrubs contributed to this resilience. Based on the results of this study, we propose several low costs strategies to be incorporated in forest management plans to reconcile cork oak extraction with the maintenance of biodiversity. \u00a9 2008 Elsevier B.V. All rights reserved.", "keywords": ["0106 biological sciences", "Quercus suber", "Sustainability", "0401 agriculture", " forestry", " and fisheries", "Mediterranean forest", "04 agricultural and veterinary sciences", "15. Life on land", "01 natural sciences", "Silvicultural practice", "Species richness"]}, "links": [{"href": "https://doi.org/10.1016/j.foreco.2008.01.069"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Forest%20Ecology%20and%20Management", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1016/j.foreco.2008.01.069", "name": "item", "description": "10.1016/j.foreco.2008.01.069", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1016/j.foreco.2008.01.069"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2008-05-01T00:00:00Z"}}, {"id": "10.1016/j.scitotenv.2008.11.046", "type": "Feature", "geometry": null, "properties": {"updated": "2026-09-20T16:15:58Z", "type": "Journal Article", "created": "2008-12-20", "title": "How Nitrogen And Sulphur Addition, And A Single Drought Event Affect Root Phosphatase Activity In Phalaris Arundinacea", "description": "Conservation and restoration of fens and fen meadows often aim to reduce soil nutrients, mainly nitrogen (N) and phosphorus (P). The biogeochemistry of P has received much attention as P-enrichment is expected to negatively impact on species diversity in wetlands. It is known that N, sulphur (S) and hydrological conditions affect the biogeochemistry of P, yet their interactive effects on P-dynamics are largely unknown. Additionally, in Europe, climate change has been predicted to lead to increases in summer drought. We performed a greenhouse experiment to elucidate the interactive effects of N, S and a single drought event on the P-availability for Phalaris arundinacea. Additionally, the response of plant phosphatase activity to these factors was measured over the two year experimental period. In contrast to results from earlier experiments, our treatments hardly affected soil P-availability. This may be explained by the higher pH in our soils, hampering the formation of Fe-P or Fe-Al complexes. Addition of S, however, decreased the plants N:P ratio, indicating an effect of S on the N:P stoichiometry and an effect on the plant's P-demand. Phosphatase activity increased significantly after addition of S, but was not affected by the addition of N or a single drought event. Root phosphatase activity was also positively related to plant tissue N and P concentrations, plant N and P uptake, and plant aboveground biomass, suggesting that the phosphatase enzyme influences P-biogeochemistry. Our results demonstrated that it is difficult to predict the effects of wetland restoration, since the involved mechanisms are not fully understood. Short-term and long-term effects on root phosphatase activity may differ considerably. Additionally, the addition of S can lead to unexpected effects on the biogeochemistry of P. Our results showed that natural resource managers should be careful when restoring degraded fens or preventing desiccation of fen ecosystems.", "keywords": ["summer", "0106 biological sciences", "plant tissue", "550", "Sulphate induced enzyme activity", "phosphorus limitation", "plant", "sulfate", "drought", "deposition", "Plant Roots", "01 natural sciences", "nitrogen", "iron", "biogeochemistry", "Root-surface phosphatase", "SDG 13 - Climate Action", "Phalaris", "species richness", "phosphorus", "N:P stoichiometry", "manager", "Plant Proteins", "2. Zero hunger", "pH", "grasslands", "Phosphorus", "dynamics", "04 agricultural and veterinary sciences", "wetland", "6. Clean water", "enzyme activity", "stoichiometry", "Europe", "eutrophication", "climate change", "Nitrogen", "growth", "fresh-water wetlands", "phosphatase", "soil", "desiccation", "Stress", " Physiological", "N:P ratios", "greenhouse", "N:P rations", "Fertilizers", "580", "Phosphorus uptake", "ecosystem", "biomass", "species diversity", "carbon", "nutrient", "15. Life on land", "Phosphoric Monoester Hydrolases", "enzyme", "fertilization", "13. Climate action", "Wetlands", "sulfur", "0401 agriculture", " forestry", " and fisheries", "Sulfur"]}, "links": [{"href": "https://doi.org/10.1016/j.scitotenv.2008.11.046"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Science%20of%20The%20Total%20Environment", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1016/j.scitotenv.2008.11.046", "name": "item", "description": "10.1016/j.scitotenv.2008.11.046", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1016/j.scitotenv.2008.11.046"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2009-03-01T00:00:00Z"}}, {"id": "10.1016/j.soilbio.2014.02.003", "type": "Feature", "geometry": null, "properties": {"updated": "2026-09-20T16:16:10Z", "type": "Journal Article", "created": "2014-02-18", "title": "Productivity Affects The Density-Body Mass Relationship Of Soil Fauna Communities", "description": "The productivity of ecosystems and their disturbance regime affect the structure of animal communities. However, it is not clear which trophic levels benefit the most from higher productivity or are the most impacted by disturbance. The density-body mass (DBM) relationship has been shown to reflect changes in the structure of communities subjected to environmental modifications, so far, mainly in aquatic systems. We tested how different seawater inundation frequencies and cattle grazing, which both disturbed and impacted the productivity of a terrestrial system, a salt marsh, affected the size structure of soil fauna communities, expressed by their DBM relationship. We hypothesized that either: (1) all the trophic levels of soil fauna would benefit from higher productivity (i.e., amount of litter mass), reflected by a higher Y-intercept of the DBM relationship; (2) only smaller animals would benefit, reflected by a lower slope of the relationship; (3) or only larger animals would benefit, reflected by a higher slope of the relationship. We collected a large range of soil fauna from different elevation levels in grazed and ungrazed areas, thence subjected to different levels of productivity, represented by litter mass, with the most inundated and grazed area as the least productive one. Considering that pore size must be smaller in inundated and grazed areas, productivity seemed to be a greater factor influencing species distribution than soil structure. We found slopes lower than-0.75, showing that large animals dominated the community. However, a difference between the DBM relationships of the most and least frequently inundated ungrazed sites indicated that higher productivity benefited the smaller animals. Our findings show that high productivity does not equally affect the different trophic levels of this soil fauna community, suggesting inefficient transfers of energy from one trophic level to another, as smaller species benefitted more from higher productivity. \u00a9 2014 Elsevier Ltd.", "keywords": ["population-density", "0106 biological sciences", "abundance", "plant-species richness", "rain-forest", "size relationships", "energetic equivalence rule", "intermediate disturbance hypothesis", "15. Life on land", "01 natural sciences", "forest mull", "salt-marsh", "13. Climate action", "food webs", "SDG 14 - Life Below Water"]}, "links": [{"href": "https://doi.org/10.1016/j.soilbio.2014.02.003"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Soil%20Biology%20and%20Biochemistry", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1016/j.soilbio.2014.02.003", "name": "item", "description": "10.1016/j.soilbio.2014.02.003", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1016/j.soilbio.2014.02.003"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2014-05-01T00:00:00Z"}}, {"id": "10.1016/j.soilbio.2022.108918", "type": "Feature", "geometry": null, "properties": {"updated": "2026-09-20T16:16:14Z", "type": "Journal Article", "created": "2022-12-22", "title": "Litter chemistry of common European tree species drives the feeding preference and consumption rate of soil invertebrates, and shapes the diversity and structure of gut and faecal microbiomes", "description": "Open AccessTerrestrial isopods and millipedes are key drivers of a litter decomposition in terrestrial ecosystems but the effects of litter chemistry on feeding preference and litter consumption rate as well as on the diversity and composition of gut and faecal microbiome still entails several challenges. We established a mesocosm experiment with terrestrial isopods (Oniscus asellus) and millipedes (Glomeris marginata) fed by leaf litter from six common European tree species (ash, maple, lime, beech, oak and Norway spruce) to reveal the effect of litter chemistry on consumption rate and feeding preference as well as on the compositions of gut and faecal microbiomes. The total percentage of consumed litter showed that O. asellus preferred nutrient-rich and labile-C litter of ash over more recalcitrant litter of oak, beech, and Norway spruce, while G. marginata preferred calcium-rich ash, maple and lime litter over beech and Norway spruce. Consumption of litter by O. asellus and G. marginata increased with concentrations of magnesium, sulphur and potassium but decreased with concentrations of iron, phosphorus, lignin, cellulose and TOC. The millipede G. marginata harboured higher bacterial OTU richness (73.5 \u00b1 12.5) than the isopod O. asellus (49.1 \u00b1 15.9), but fungal OTU richness was similar with 25.8 \u00b1 6.7 in O. asellus and 25.7 \u00b1 2.7 in G. marginata. In total, faeces of both animals hosted higher diversity than gut. In gut and faeces of O. asellus, the fungal OTU richness was highest for individuals fed by litter of Norway spruce, while lowest OTU richness was recorded for individuals fed by litter of more palatable ash. In contrast, the highest diversity of the fungal community in gut and faeces of G. marginata was recorded for individuals fed by palatable lime litter, while the lowest OTUs richness was recorded when millipedes were fed by maple and spruce. The structures of bacterial and fungal communities generally separated between O. asellus and G. marginata. The fungal community structure in gut and faeces differed between animals fed by different foliar litters, while the bacterial community structure mainly differed between gut and faeces regardless of the offered type of litter. The fungal community structure in gut and faeces of O. asellus and G. marginata were shaped by concentrations of magnesium, sulphur, lignin and cellulose. The bacterial communities in gut and faeces of both O. asellus and G. marginata were dominated by copiotrophic bacteria, while fungal communities were dominated by unspecified saprotrophs. Our study suggest that litter quality is a strong driver of feeding preference and consumption rates as well as composition of bacterial and fungal communities in gut and faeces of two species representing the main groups of litter feeding soil fauna in European forests.", "keywords": ["0301 basic medicine", "Genomic Insights into Social Insects and Symbiosis", "Plant Science", "Plant litter", "Agricultural and Biological Sciences", "03 medical and health sciences", "Biochemistry", " Genetics and Molecular Biology", "Litter", "Genetics", "Ecological Niche", "Biology", "Ecosystem", "Beech", "0303 health sciences", "Species Distribution Modeling and Climate Change Impacts", "Ecology", "Ecological Modeling", "Botany", "Life Sciences", "15. Life on land", "Plant-Parasitic Nematodes in Molecular Plant Pathology", "Detritus", "FOS: Biological sciences", "Detritivore", "Environmental Science", "Physical Sciences", "Species richness"]}, "links": [{"href": "https://doi.org/10.1016/j.soilbio.2022.108918"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Soil%20Biology%20and%20Biochemistry", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1016/j.soilbio.2022.108918", "name": "item", "description": "10.1016/j.soilbio.2022.108918", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1016/j.soilbio.2022.108918"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2023-02-01T00:00:00Z"}}, {"id": "10.1111/gcb.14631", "type": "Feature", "geometry": null, "properties": {"license": "Open Access", "updated": "2026-09-20T16:17:30Z", "type": "Journal Article", "created": "2019-03-29", "title": "Multifunctionality debt in global drylands linked to past biome and climate", "description": "Abstract<p>Past vegetation and climatic conditions are known to influence current biodiversity patterns. However, whether their legacy effects affect the provision of multiple ecosystem functions, that is, multifunctionality, remains largely unknown. Here we analyzed soil nutrient stocks and their transformation rates in 236 drylands from six continents to evaluate the associations between current levels of multifunctionality and legacy effects of the\uffc2\uffa0Last Glacial Maximum (LGM) desert biome distribution and climate. We found that past desert distribution and temperature legacy, defined as increasing temperature from LGM, were negatively correlated with contemporary multifunctionality even after accounting for predictors such as current climate, soil texture, plant species richness, and site topography. Ecosystems that have been deserts since the LGM had up to 30% lower contemporary multifunctionality compared with those that were nondeserts during the LGM. In addition, ecosystems that experienced higher warming rates since the LGM had lower contemporary multifunctionality than those suffering lower warming rates, with a ~9% reduction per extra degree Celsius. Past desert distribution and temperature legacies had direct negative effects, while temperature legacy also had indirect (via soil sand content) negative effects on multifunctionality. Our results indicate that past biome and climatic conditions have left a strong \uffe2\uff80\uff9cfunctionality debt\uffe2\uff80\uff9d in global drylands. They also suggest that ongoing warming and expansion of desert areas may leave a strong fingerprint in the future functioning of dryland ecosystems worldwide that needs to be considered when establishing management actions aiming to combat land degradation and desertification.</p", "keywords": ["0301 basic medicine", "2. Zero hunger", "Nutrient transformation rates", "Conservation of Natural Resources", "0303 health sciences", "Last Glacial Maximum", "Paleoclimate", "Climate", "Temperature", "Precipitation", "Biodiversity", "Ecolog\u00eda", "Plants", "15. Life on land", "Arid climate", "Soil", "03 medical and health sciences", "13. Climate action", "XXXXXX - Unknown", "Nutrient stocks", "Plant productivity", "Plant species richness", "Ecosystem"]}, "links": [{"href": "https://onlinelibrary.wiley.com/doi/pdf/10.1111/gcb.14631"}, {"href": "https://doi.org/10.1111/gcb.14631"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Global%20Change%20Biology", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1111/gcb.14631", "name": "item", "description": "10.1111/gcb.14631", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1111/gcb.14631"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2019-04-21T00:00:00Z"}}, {"id": "10.15454/8DHNRM", "type": "Feature", "geometry": null, "properties": {"license": "Open Access", "updated": "2026-09-20T16:18:10Z", "type": "Dataset", "title": "Inventory of plant vascular community diversity and large herbivore pressure of forest stands in 2013-2014, Sologne, France", "description": "This dataset contains data on vascular plant diversity and community composition of the understory in mature broadleaf and conifer forest stands in the Sologne natural region, Central France. The objectif of the project was to study the effects of large wild ungulates on forest biodiversity using a natural and anthropogenic gradient of ungulate pressure. Study area The study area was located in the Sologne Natural Region in the center of France. Sologne is characterized by flat topography and poor sandy soils on top of an impermeable clay layer, and the area is thus subject to frequent winter floodings and summer droughts are recurrent. The dominate land use is forest (53%), of which the majority is recent forests stemming from spontaneous colonization of abandoned land, but also the result of massive afforestation programs during the second half of the 19th century. Deciduous trees represent approximately 77% of the forest cover (Quercus robur: 39%, Quercus petraea: 14%, Betula pendula 9%), while the remaining 23% is made up of coniferous tree species, mainly Pinus sylvestris (13%). The three most common forest stand compositions are monospecific stands of Q. robur (23%), Q. petraea (9%) and P. sylvestris (9%). In Sologne, population densities of large ungulates (red deer, Cervus elaphus, roe deer, Capreaolus capreolus, and wild boar, Sus scrofa) have shown a marked increase in number during the past decades, as elsewhere in France and Europe. No absolute estimates of ungulate densities are available for the study area, but hunting statistics for the three species are among the highest in France, and hunting bags for the 2004/2005 hunting season for red deer, roe deer and wild boar averaged 0.4 \u00b1 0.5 (mean \u00b1 SD), 1.9 \u00b1 1.4 and 3.7 \u00b1 3.7 individuals per km\u00b2, respectively (source: the French national agency for wildlife, ONCFS). No wild large predators were present in the study area. Sampling design We made use of four fenced, five partially fenced and ten unfenced private forest properties to set up an experimental gradient of wild ungulate densities to test their effects on the structure, composition and diversity of plant communities. We selected private properties with at least 100 ha land and where forest was the dominant land use (60-100% forest). Average area of forest was 295 \u00b1 165 ha (mean \u00b1 SD; range = 91-703) per land property (Appendix 1: Table S1). A preselection of private properties all over the study area was established by contacting the Centre r\u00e9gional de la propri\u00e9t\u00e9 foresti\u00e8re (CRPF) d\u2019Ile-de-France et du Centre (Regional public organizations for private forest owners) who helped out to suggest potential land owners willing to participate to the study. We then set up a list of equal number of fenced and unfenced properties in different parts of the study area. Private land owners were then contacted by telephone in order to obtain their permission to carry out field observations on their land property. We stopped contacting landowners once we had obtained the permission from ten unfenced private properties and that were well spread over the study area. Due to difficulties in obtaining permission from land owners with fenced properties, we did not reach a completely balanced design. A completely random sample of private properties would not have been possible due to the high degree of reluctance among private landowners to give their permission to carry out observations on their land property. For each land property, we randomly assigned five study plots stratified according to the proportion of area of deciduous and coniferous forest stands. A buffer zone of at least 50 m was applied to each forest stand nearby roads and open areas. A field visit was made before final selection to assure that the study plot was not situated in recently harvested forest stands or nearby forest edges (&lt;30 m). We also rejected coppice forest stands. Ungulate pressure data We used the observed intensity of major foraging activities by ungulates (browsing for deer and rooting for wild boar) to situate sampling points along a gradient of increasing ungulate densities. As mark-recapture data was not available for our study sites, we could not base our gradient on absolute ungulate densities, but situate the study sites on a relative scale based on the above-mentioned indices (and detailed below) of ungulate activities. Deer browsing pressure was quantified at each sampling point by comparing forage use and availability based on resource selection theory. Forage use and availability were estimated on winter browse (woody and semi-woody vegetation) accessible to deer (0-2 m) in late winter (March) before the start of the growing season. Forage use and availability were estimated on three 40 m2-circular subplots per study plot, each situated at a distance of 14 m from the center of the study plot. For each species, forage availability was quantified by estimating the percentage of plant cover (i.e. the horizontal projection of shoots, twigs and branches and thus a proxy of the total number of \u201cbites\u201d available), while forage use was quantified by estimating the percentage of available shoots browsed (i.e. the percentage of actual \u201cbites\u201d). Visual estimates of forage use and availability were then attributed to one of six classes (0-1%, 1-5%, 5-20%, 20-50%, 50-75%, 75-100%), converted to mid-point values for statistical analyses. For each circular plot (40 m2), we then calculated a browsing pressure index, B, based on the sum of the forage consumed weighted by forage availability. We then used the mean value of B for the three subplots as a representative measure of browsing pressure at study plot. Wild boar rooting was quantified at the sampling points by visually estimating the percentage of soil disturbed by wild boar rooting behavior. Observations of wild boar rooting were carried out in late winter at the same time as observations of deer browsing and were estimated on the same three circular plots used for estimating deer browsing pressure (40 m2). The mean percentage of wild boar rooting for the three subplots was used as a representative measure of wild boar rooting at the study plot level. Vegetation data At each sampling point, we recorded all vascular plant species according to their presence in two vertical understory vegetation layers. We defined the two vegetation layers in relation to their accessibility to one or both of the two deer species present in our study area: low understory layer accessible both to roe and red deer (up to 130 cm in height) and high understory layer accessible only to red deer (from 130 cm to 200 cm in height). However, the data for the two vegetation layers were merged (see below). We attributed plant cover values, to each species and for each vegetation layer, based on visual estimates to the nearest percent for common species (plant cover &gt;1%) and to the nearest promille for rare species (plant cover &lt;1%). Vegetation sampling was carried out by five experienced botanists (nBot1 = 75, nBot2 = 59, nBot2 = 26, nBot2 = 20, nBot2 = 10) that formed mixed teams composed of two observers (A and B) in order to minimize observer effects. A team was composed of either botanists A (n = 36) or B (n = 20) and any of the other botanists, or both of them (n = 39). In order to harmonize the sampling effort among study plots, teams spent at least 30 minutes of actively searching new species, excluding extra time that was added for species identification problems and estimations of plant cover values. We used a relatively large sample plot size (1 000 m2) as we were interested in capturing not only common but also rare species, while limiting the size in order to include only one forest habitat type. Plant functional traits We used a trait-based approach to determine any correlations between ungulate activities and understory plant community structure, composition and diversity. From the vegetation data, we derived three families of response variables: (i) species density and (ii) plant cover for qualitative traits (including plant functional groups and categorical habitat preferences), and (iii) community-weighted means (CWM) for quantitative trait values (including quantitative habitat preferences). Data on response variables were calculated at each sampling point for the overall plant community, and separately for four plant functional types (trees, shrubs, forbs and graminoids). Data on plant functional traits were extracted from four main sources: the LEDA and BiolFlor plant trait data bases, and the floras \u201cFlore Foresti\u00e8re Fran\u00e7aise\u201dand \u201cNouvelle flore de la Belgique, du Grand-Duch\u00e9 de Luxembourg, du Nord de la France et des R\u00e9gions voisines\u201d. Missing data was added by consulting the scientific literature. We used plant functional trait data of categorical traits of plants (plant life span, plant leaf vertical distribution and spiny plants) and seeds (seed life span, frugivory seed characteristics and seed appendages), quantitative traits of plants (specific leaf area, canopy height, plant leaf vertical distribution, plant life span) and seeds (seed mass, seed releasing height, seed longevity, seed shape), as well as qualitative and quantitative plant habitat preferences (forest history, successional stage, EUNIS main habitats, Ellenberg\u2019s indicator values and Grime\u2019s CSR-scheme). Observed differences at the community level of these plant and seed characteristics among study plots are likely to inform about the plant community\u2019s response to various ungulate activities related to trophic interactions (e.g. direct effects of grazing, browsing and frugivory) and engineering effects (e.g. direct effects of trampling, rooting, seed dispersal). Site characteristics In order to take into account possible confounding factors, known to be strong determinants of vegetation composition, we made a forest stand description and took soil samples at each sampling point. Forest stands were described by measuring the dominant tree height within a radius of 18 m from the sampling point, the basal area at 1.3 m (breast height, BAbh) and canopy openness. BAbh was estimated using point sampling methodology and by separately estimating BAbh for broadleaves (BAbroadleaves), conifers (BAconifers) and coppice (BAcoppice), which allowed us to calculate overall BAbh and canopy mixture (varying from 0%, pure stand, to 50% , equally mixed stand of broadleaves and coniferous tree species). We visually estimated canopy openness at sampling points along three radial transects (one measurement every two meter along the 16 m-long transects, a total of 27 measurements per sampling point). We also determined forest history at sampling points distinguishing between recent and ancient forests. Forest history was derived from three times series of historical maps (Carte d'\u00c9tat-Major) drawn between (i) 1820 and 1866 and aerial photographs for the periods (ii) 1947-1950 and (iii) 1975-1980. We classified forest stands at sampling points as ancient forests whenever continuous forest cover was observed for all three time series (i.e. forest as land use since at least 1820-1866), while stands were classified as recent forest whenever any other form of land use was described at the sampling points for any of the three time series. Soil samples of about 500 g were taken of the mineral soil at 20 cm depth at a distance of 10 m from the point center and in three different directions (0\u00b0, 120\u00b0 et 240\u00b0). Soil samples were sent to the Soil Analysis Laboratory of INRA, Arras France. Soil samples were analyzed for soil texture (particle-size fractions in percentage of sand, silt and clay), cation exchange capacity (CEC, cmol+/kg), organic carbon (C, g/kg), total nitrogen (N, g/kg), and extractable soil phosphorus (P2O5, g/kg). Total organic carbon and total nitrogen content in the soil was measured after dry combustion (ISO 10694, ISO 13878), and the cation exchange capacity (CEC) was determined by extracting exchangeable cations (Al3+, Ca2+, Fe2+, K+, Mg2+, Mn2+, Na+) using a hexamminecobalt trichloride solution (ISO 23470). Extractable soil phosphorus was determined using Duchaufour\u2019s method, which is a method appropriate for acidic forest soils. Soil pH was measured at our own laboratory using a pH-meter (Eutech Instruments Eco Scan 6+) in a 1:5 (volume fraction) suspension of soil in 1 mol/l potassium chloride solution (pHKCl) following the ISO 10390 standard. The majority of forest stands were recent forests (n = 76), while the remaining fifth were classified as ancient forests (n = 19). Two thirds of sampling points were situated in high stands dominanted by broadleafs (n = 63) composed of oak trees (Quercus petraea, Q. robur), while one third were in high stands of coniferous trees (n = 32) composed of pine trees (Pinus sylvestris, P. nigra subsp. laricio). Overall mean basal area was 22.6 \u00b1 0.9 m2/ha and the mean dominant tree height was 23.4 \u00b1 0.4 m. Coppice stools of Betula sp., Carpinus betulus, Castanea sativa, Corylus avellana and Quercus sp. were present in the understory at about one third (n = 35) of the sampling points with a mean basal area of 6.5 \u00b1 1.2 m2/ha. Soils were representative of the region characterized by low soil fertility of N (0.4 \u00b1 0.04 g/kg) and P2O5 (0.03 \u00b1 0.004 g/kg), low CEC (1.8 \u00b1 0.2), and high acidity (4.2 \u00b1 0.03).", "keywords": ["Earth and Environmental Science", "Cervidae", "Ecology", "plant community", "browsing", "Biospheric Sciences", "Biodiversity and Ecology", "Suidae", "Earth and Environmental Sciences", "ungulate", "species richness", "forest ecology", "Environmental Research", "Natural Sciences", "Geosciences", "biodiversity"], "contacts": [{"organization": "M\u00e5rell, Anders, Baltzinger, Christophe,", "roles": ["creator"]}]}, "links": [{"href": "https://doi.org/10.15454/8DHNRM"}, {"rel": "self", "type": "application/geo+json", "title": "10.15454/8DHNRM", "name": "item", "description": "10.15454/8DHNRM", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.15454/8DHNRM"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2024-01-01T00:00:00Z"}}, {"id": "10.1111/gcb.70084", "type": "Feature", "geometry": null, "properties": {"license": "Open Access", "updated": "2026-09-20T16:17:31Z", "type": "Journal Article", "created": "2025-03-11", "title": "Higher Plant Diversity Does Not Moderate the Influence of Changing Rainfall Regimes on Plant\u2013Soil Feedback of a Semi\u2010Arid Grassland", "description": "ABSTRACT<p>Climate change is expected to increase the frequency of severe droughts, but it remains unclear whether soil biotic conditioning by plant communities with varying species richness or functional group diversity moderate plant\uffe2\uff80\uff93soil feedback (PSF)\uffe2\uff80\uff94an important ecosystem process driving plant community dynamics\uffe2\uff80\uff94under altered rainfall regimes. We conducted a two\uffe2\uff80\uff90phase PSF experiment to test how plant diversity affects biotic PSF under different rainfall regimes. In Phase 1, we set up mesocosms with 15 plant assemblages composed of two grasses, two forbs and two nitrogen\uffe2\uff80\uff90fixing legumes [one, two, three, or six species from one, two, or three functional group(s)] common to the semi\uffe2\uff80\uff90arid eastern Eurasian Steppe. Mesocosms were subjected to two rainfall amounts (ambient, 50% reduction) crossed with two frequencies (ambient, 50% reduction) for a growing season (~3\uffe2\uff80\uff89months). Conditioned soil from each mesocosm was then used in Phase 2 to inoculate (7% v/v) sterilised mesocosms planted with the same species as in Phase 1 and grown for 8\uffe2\uff80\uff89weeks. Simultaneously, the same plant assemblages were grown in sterilised soil to calculate PSF based on plant biomass measured at the end of Phase 2. Feedback effects differed amongst plant assemblages, but were not significantly altered by reduced rainfall treatments within any plant assemblage. This suggests that the examined interactions between plant and soil microbial communities were resistant to simulated rainfall reductions and that increasing plant diversity did not moderate PSF under altered rainfall regimes. Moreover, increasing plant species richness or functional group diversity did not lessen the magnitude of PSF differences between ambient and reduced rainfall treatments. Collectively, these findings advance our understanding of plant diversity's potential to mitigate climate change effects on PSF, showing that in semi\uffe2\uff80\uff90arid grasslands, higher plant diversity may not moderate PSF responses to altered rainfall regimes and highlighting the importance of considering species\uffe2\uff80\uff90specific traits and interaction stability.</p", "keywords": ["580", "570", "plant-soil feedback", "Rain", "Climate Change", "Soil Science", "drought", "Biodiversity", "Plants", "Markvetenskap", "plant functional groups", "Grassland", "plant\u2013soil feedback", "Soil", "climate change", "plant\u2013soil (below-ground) interactions", "Biomass", "species richness", "Research Article"], "contacts": [{"organization": "Xiliang Li, G. Kenny Png, Zhen Zhang, Fenghui Guo, Yuanheng Li, Fang Li, Shan Luo, Nicholas J. Ostle, John N. Quinton, Urs A. Schaffner, Xiangyang Hou, David A. Wardle, Richard D. Bardgett,", "roles": ["creator"]}]}, "links": [{"href": "https://doi.org/10.1111/gcb.70084"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Global%20Change%20Biology", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1111/gcb.70084", "name": "item", "description": "10.1111/gcb.70084", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1111/gcb.70084"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2025-03-01T00:00:00Z"}}, {"id": "10.1111/j.1365-2486.2007.01464.x", "type": "Feature", "geometry": null, "properties": {"license": "Open Access", "updated": "2026-09-20T16:17:36Z", "type": "Journal Article", "created": "2007-10-04", "title": "Response Of Plant Species Richness And Primary Productivity In Shrublands Along A North-South Gradient In Europe To Seven Years Of Experimental Warming And Drought: Reductions In Primary Productivity In The Heat And Drought Year Of 2003", "description": "Abstract<p>We used a nonintrusive field experiment carried out at six sites \uffe2\uff80\uff93 Wales (UK), Denmark (DK), the Netherlands (NL), Hungary (HU), Sardinia (Italy \uffe2\uff80\uff93 IT), and Catalonia (Spain \uffe2\uff80\uff93 SP) \uffe2\uff80\uff93 along a climatic and latitudinal gradient to examine the response of plant species richness and primary productivity to warming and drought in shrubland ecosystems. The warming treatment raised the plot daily temperature by ca. 1 \uffc2\uffb0C, while the drought treatment led to a reduction in soil moisture at the peak of the growing season that ranged from 26% at the SP site to 82% in the NL site. During the 7 years the experiment lasted (1999\uffe2\uff80\uff932005), we used the pin\uffe2\uff80\uff90point method to measure the species composition of plant communities and plant biomass, litterfall, and shoot growth of the dominant plant species at each site. A significantly lower increase in the number of species pin\uffe2\uff80\uff90pointed per transect was found in the drought plots at the SP site, where the plant community was still in a process of recovering from a forest fire in 1994. No changes in species richness were found at the other sites, which were at a more mature and stable state of succession and, thus less liable to recruitment of new species. The relationship between annual biomass accumulation and temperature of the growing season was positive at the coldest site and negative at the warmest site. The warming treatment tended to increase the aboveground net primary productivity (ANPP) at the northern sites. The relationship between annual biomass accumulation and soil moisture during the growing season was not significant at the wettest sites, but was positive at the driest sites. The drought treatment tended to reduce the ANPP in the NL, HU, IT, and SP sites. The responses to warming were very strongly related to the Gaussen aridity index (stronger responses the lower the aridity), whereas the responses to drought were not. Changes in the annual aboveground biomass accumulation, litterfall, and, thus, the ANPP, mirrored the interannual variation in climate conditions: the most outstanding change was a decrease in biomass accumulation and an increase in litterfall at most sites during the abnormally hot year of 2003. Species richness also tended to decrease in 2003 at all sites except the cold and wet UK site. Species\uffe2\uff80\uff90specific responses to warming were found in shoot growth: at the SP site, Globularia alypum was not affected, while the other dominant species, Erica multiflora, grew 30% more; at the UK site, Calluna vulgaris tended to grow more in the warming plots, while Empetrum nigrum tended to grow less. Drought treatment decreased plant growth in several studied species, although there were some species such as Pinus halepensis at the SP site or C. vulgaris at the UK site that were not affected. The magnitude of responses to warming and drought thus depended greatly on the differences between sites, years, and species and these multiple plant responses may be expected to have consequences at ecosystem and community level. Decreases in biodiversity and the increase in E. multiflora growth at the SP site as a response to warming challenge the assumption that sensitivity to warming may be less well developed at more southerly latitudes; likewise, the fact that one of the studied shrublands presented negative ANPP as a response to the 2003 heat wave also challenges the hypothesis that future climate warming will lead to an enhancement of plant growth and carbon sequestration in temperate ecosystems. Extreme events may thus change the general trend of increased productivity in response to warming in the colder sites.</p>", "keywords": ["0106 biological sciences", "Onada de calor", "arctic ecosystems", "Matorral", "drought", "Biomasa vegetal", "heathland", "global warming", "01 natural sciences", "Sequ\u00eda", "Productividad primaria neta", "Forest-steppe", "Gradiente Europea", "Climate change", "Canvi clim\u00e0tic", "Cambio clim\u00e1tico", "net primary productivity", "evergreen mediterranean forest", "species richness", "litterfall", "biodiversity", "European gradient", "Plant growth", "2. Zero hunger", "Global warming", "terrestrial ecosystems", "phillyrea-latifolia", "Biodiversity", "Sequera", "Crecimiento de las plantas", "6. Clean water", "Net primary productivity", "climate change", "Brezal", "Biomassa vegetal", "climate-change", "heat wave", "Bosc-estepa", "environmental-change", "Litterfall", "Shrubland", "Biodiversidad", "soil", "Riquesa d'esp\u00e8cies", "forest-steppe", "Heat wave", "Bruguerar", "carbon-cycle", "Riqueza de especies", "quercus-ilex", "14. Life underwater", "plant biomass", "Hojarasca", "Plant biomass", "Drought", "Escalfament global", "plant growth", "15. Life on land", "biodiversity; climate change; global warming; plant community; primary production; shrubland; species richness", " Benelux; Catalonia; Central Europe; Denmark; Eurasia; Europe; Hungary; Italy; Netherlands; Northern Europe; Sardinia; Scandinavia; Southern Europe; Spain; United Kingdom; Wales; Western Europe", " Calluna; Calluna vulgaris; Empetrum nigrum; Erica multiflora; Globularia alypum; Pinus halepensis; Biodiversity; Climate change; Drought; European gradient; Forest-steppe; Global warming; Heat wave; Heathland; Litterfall; Net primary productivity; Plant biomass; Plant growth; Shrubland; Species richness", "Gradient Europea", "Biodiversitat", "Creixement de les plantes", "Productivitat prim\u00e0ria neta", "13. Climate action", "cistus-albidus", "Calentamiento global", "Bosque-estepa", "shrubland", "Fullaraca", "Heathland", "Species richness", "Ola de calor"]}, "links": [{"href": "https://doi.org/10.1111/j.1365-2486.2007.01464.x"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Global%20Change%20Biology", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1111/j.1365-2486.2007.01464.x", "name": "item", "description": "10.1111/j.1365-2486.2007.01464.x", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1111/j.1365-2486.2007.01464.x"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2007-10-04T00:00:00Z"}}, {"id": "10.1111/gcb.14440", "type": "Feature", "geometry": null, "properties": {"license": "Open Access", "updated": "2026-09-20T16:17:30Z", "type": "Journal Article", "created": "2018-09-22", "title": "Cascading effects from plants to soil microorganisms explain how plant species richness and simulated climate change affect soil multifunctionality", "description": "Abstract<p>Despite their importance, how plant communities and soil microorganisms interact to determine the capacity of ecosystems to provide multiple functions simultaneously (multifunctionality) under climate change is poorly known. We conducted a common garden experiment using grassland species to evaluate how plant functional structure and soil microbial (bacteria and protists) diversity and abundance regulate soil multifunctionality responses to joint changes in plant species richness (one, three and six species) and simulated climate change (3\uffc2\uffb0C warming and 35% rainfall reduction). The effects of species richness and climate on soil multifunctionality were indirectly driven via changes in plant functional structure and their relationships with the abundance and diversity of soil bacteria and protists. More specifically, warming selected for the larger and most productive plant species, increasing the average size within communities and leading to reductions in functional plant diversity. These changes increased the total abundance of bacteria that, in turn, increased that of protists, ultimately promoting soil multifunctionality. Our work suggests that cascading effects between plant functional traits and the abundance of multitrophic soil organisms largely regulate the response of soil multifunctionality to simulated climate change, and ultimately provides novel experimental insights into the mechanisms underlying the effects of biodiversity and climate change on ecosystem functioning.</p", "keywords": ["[SDE] Environmental Sciences", "0106 biological sciences", "570", "[SDV]Life Sciences [q-bio]", "Nutrientcycles", "Climate Change", "Edafolog\u00eda (Biolog\u00eda)", "Bacterial Physiological Phenomena", "biotic communities", "01 natural sciences", "631.4", "climatic changes", "Soil", "XXXXXX - Unknown", "Climate change", "14. Life underwater", "species richness", "bacteria", "Ecosystem", "Plant Physiological Phenomena", "Soil Microbiology", "biodiversity", "580", "2. Zero hunger", "species diversity", "Bacteria", "Protist", "2417.13 Ecolog\u00eda Vegetal", "nutrient cycles", "environmental filtering", "Biodiversity", "15. Life on land", "[SDV] Life Sciences [q-bio]", "climate change", "13. Climate action", "ecosystem functioning", "[SDE]Environmental Sciences", "Ecosystem functioning", "2511.02 Biolog\u00eda de Suelos", "protist", "Environmental filtering", "Species richness"]}, "links": [{"href": "https://onlinelibrary.wiley.com/doi/pdf/10.1111/gcb.14440"}, {"href": "https://doi.org/10.1111/gcb.14440"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Global%20Change%20Biology", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1111/gcb.14440", "name": "item", "description": "10.1111/gcb.14440", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1111/gcb.14440"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2018-10-09T00:00:00Z"}}, {"id": "10.1111/geb.12215", "type": "Feature", "geometry": null, "properties": {"license": "Open Access", "updated": "2026-09-20T16:17:32Z", "type": "Journal Article", "created": "2014-09-13", "title": "Plant Diversity And Ecosystem Multifunctionality Peak At Intermediate Levels Of Woody Cover In Global Drylands", "description": "AbstractAim<p>The global spread of woody plants into grasslands is predicted to increase over the coming century. While there is general agreement regarding the anthropogenic causes of this phenomenon, its ecological consequences are less certain. We analysed how woody vegetation of differing cover affects plant diversity (richness and evenness) and the surrogates of multiple ecosystem processes (multifunctionality) in global drylands, and how these change with aridity.</p>Location<p>Two hundred and twenty\uffe2\uff80\uff90four dryland sites from all continents except Antarctica, widely differing in their environmental conditions (from arid to dry\uffe2\uff80\uff90subhumid sites) and relative woody cover (from 0 to 100%).</p>Methods<p>Using a standardized field survey, we measured the cover, richness and evenness of perennial vegetation. At each site, we measured 14 soil variables related to fertility and the build\uffe2\uff80\uff90up of nutrient pools. These variables are critical for maintaining ecosystem functioning in drylands.</p>Results<p>Species richness and ecosystem multifunctionality were strongly related to woody vegetation, with both variables peaking at a relative woody cover (RWC) of 41\uffe2\uff80\uff9360%. This relationship shifted with aridity. We observed linear positive effects of RWC in dry\uffe2\uff80\uff90subhumid sites. These positive trends shifted to hump\uffe2\uff80\uff90shaped RWC\uffe2\uff80\uff93diversity and multifunctionality relationships under semi\uffe2\uff80\uff90arid environments. Finally, hump\uffe2\uff80\uff90shaped (richness, evenness) or linear negative (multifunctionality) effects of RWC were found under the most arid conditions.</p>Main conclusions<p>Plant diversity and multifunctionality peaked at intermediate levels of woody cover, although this relationship became increasingly positive in wetter environments. This comprehensive study accounts for multiple ecosystem attributes across a range of levels of woody cover and environmental conditions. Our results help us to reconcile contrasting views of woody encroachment found in the current literature and can be used to improve predictions of the likely effects of encroachment on biodiversity and ecosystem services.</p>", "keywords": ["580", "0106 biological sciences", "2. Zero hunger", "arid regions", "species diversity", "vegetation dynamics", "Thicketization", "Shrub encroachment", "shrubland ecology", "Species evennes", "15. Life on land", "01 natural sciences", "Soil", "Semi-arid", "13. Climate action", "XXXXXX - Unknown", "soils", "Aridity", "Species richness"]}, "links": [{"href": "https://doi.org/10.1111/geb.12215"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Global%20Ecology%20and%20Biogeography", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1111/geb.12215", "name": "item", "description": "10.1111/geb.12215", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1111/geb.12215"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2014-09-13T00:00:00Z"}}, {"id": "10.1186/s13750-022-00257-z", "type": "Feature", "geometry": null, "properties": {"updated": "2026-09-20T16:17:58Z", "type": "Journal Article", "created": "2022-01-31", "title": "What are the effects of herbivore diversity on tundra ecosystems? A systematic review protocol", "description": "Abstract                 Background                 <p>Changes in the diversity of herbivore communities can strongly influence the functioning of northern ecosystems. Different herbivores have different impacts on ecosystems because of differences in their diets, behaviour and energy requirements. The combined effects of different herbivores can in some cases compensate each other but lead to stronger directional changes elsewhere. However, the diversity of herbivore assemblages has until recently been a largely overlooked dimension of plant\uffe2\uff80\uff93herbivore interactions. Given the ongoing environmental changes in tundra ecosystems, with increased influx of boreal species and changes in the distribution and abundance of arctic herbivores, a better understanding of the consequences of changes in the diversity of herbivore assemblages is needed. This protocol presents the methodology that will be used in a systematic review on the effects of herbivore diversity on different processes, functions and properties of tundra ecosystems.</p>                                Methods                 <p>This systematic review builds on an earlier systematic map on herbivory studies in the Arctic that identified a relatively large number of studies assessing the effects of multiple herbivores. The systematic review will include primary field studies retrieved from databases, search engines and specialist websites, that compare responses of tundra ecosystems to different levels of herbivore diversity, including both vertebrate and invertebrate herbivores. We will use species richness of herbivores or the richness of functional groups of herbivores as a measure of the diversity of the herbivore assemblages. Studies will be screened in three stages: title, abstract and full text, and inclusion will follow clearly identified eligibility criteria, based on their target population, exposure, comparator and study design. The review will cover terrestrial Arctic ecosystems including the forest-tundra ecotone. Potential outcomes will include multiple processes, functions and properties of tundra ecosystems related to primary productivity, nutrient cycling, accumulation and dynamics of nutrient pools, as well as the impacts of herbivores on other organisms. Studies will be critically appraised for validity, and where studies report similar outcomes, meta-analysis will be performed.</p>", "keywords": ["0106 biological sciences", "Browsing", "Plant\u2013herbivore interaction", "Systematic Review Protocol", "15. Life on land", "01 natural sciences", "Herbivore assemblage", "Environmental sciences", "Grazing", "Ecology", " evolutionary biology", "Defoliation", "13. Climate action", "Ecosystem function", "GE1-350", "14. Life underwater", "Species richness"]}, "links": [{"href": "https://link.springer.com/content/pdf/10.1186/s13750-022-00257-z.pdf"}, {"href": "https://doi.org/10.1186/s13750-022-00257-z"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Environmental%20Evidence", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1186/s13750-022-00257-z", "name": "item", "description": "10.1186/s13750-022-00257-z", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1186/s13750-022-00257-z"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2022-01-31T00:00:00Z"}}, {"id": "10.1126/sciadv.adj8016", "type": "Feature", "geometry": null, "properties": {"updated": "2026-09-20T16:17:50Z", "type": "Journal Article", "created": "2023-11-29", "title": "Connecting the multiple dimensions of global soil fungal diversity", "description": "<?xml version='1.0' encoding='UTF-8'?><article><p>How the multiple facets of soil fungal diversity vary worldwide remains virtually unknown, hindering the management of this essential species-rich group. By sequencing high-resolution DNA markers in over 4000 topsoil samples from natural and human-altered ecosystems across all continents, we illustrate the distributions and drivers of different levels of taxonomic and phylogenetic diversity of fungi and their ecological groups. We show the impact of precipitation and temperature interactions on local fungal species richness (alpha diversity) across different climates. Our findings reveal how temperature drives fungal compositional turnover (beta diversity) and phylogenetic diversity, linking them with regional species richness (gamma diversity). We integrate fungi into the principles of global biodiversity distribution and present detailed maps for biodiversity conservation and modeling of global ecological processes.</p></article>", "keywords": ["Supplementary Data", "biodiversity", " fungi", " ecology", "QH301 Biology", "Diversity (politics)", "Plant Science", "Biodiversity conservation", "Fungal Diversity", "Agricultural and Biological Sciences", "Soil", "Life", "Sociology", "WATER", "Global biodiversity distribution", "Fungal diversity", "Phylogeny", "Soil Microbiology", "2. Zero hunger", "Multidisciplinary", "Earth", " Environmental", " Ecological", " and Space Sciences", "Geography", "Ecology", "soil fungal diversity", "4. Education", "SPECIES RICHNESS", "Life Sciences", "https://www.science.org/doi/suppl/10.1126/sciadv.adj8016/suppl_file/sciadv.adj8016_sm.pdf", "Biodiversity", "FOS: Sociology", "global biodiversity distribution", "sienet", "https://www.science.org/doi/suppl/10.1126/sciadv.adj8016/suppl_file/sciadv.adj8016_tables_s1_to_s13.zip", "Diversity and Evolution of Fungal Pathogens", "570", "Supplementary Information", "DNA markers", "QH301", "Sequencing high-resolution DNA", "Biochemistry", " Genetics and Molecular Biology", "monimuotoisuus", "Mycorrhizal Fungi and Plant Interactions", "Life Science", "Humans", "14. Life underwater", "General", "Global ecological processes", "Biology", "Ecosystem", "Ecology", " Evolution", " Behavior and Systematics", "global ecological processes", "Soil fungal diversity", "microbiology", "Fungi", "Water", "Cell Biology", "15. Life on land", "luonnon monimuotoisuus", "Agronomy", "biodiversiteetti", "LIFE", "ekosysteemit (ekologia)", "Evolution and Ecology of Endophyte-Grass Symbiosis", "13. Climate action", "Ecology", " evolutionary biology", "Earth and Environmental Sciences", "FOS: Biological sciences", "Anthropology", "ta1181", "biodiversity conservation", "Species richness"]}, "links": [{"href": "https://www.science.org/doi/epdf/10.1126/sciadv.adj8016"}, {"href": "https://www.science.org/doi/pdf/10.1126/sciadv.adj8016"}, {"href": "https://doi.org/10.1126/sciadv.adj8016"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Science%20Advances", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1126/sciadv.adj8016", "name": "item", "description": "10.1126/sciadv.adj8016", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1126/sciadv.adj8016"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2023-12-01T00:00:00Z"}}, {"id": "10.1556/168.2017.18.3.7", "type": "Feature", "geometry": null, "properties": {"updated": "2026-09-20T16:18:14Z", "type": "Journal Article", "created": "2018-02-12", "title": "Phytophagous hoverflies (Diptera: Syrphidae) as indicators of changing landscapes", "description": "Spatial and temporal differences in landscape patterns are of considerable interest for understanding ecological processes. In this study, we assessed habitat quality by using the Syrph The Net database and data on decreasing species richness over a 25-year period for the two largest phytophagous hoverfly genera (Merodon and Cheilosia). Furthermore, within this time frame, we explored congruence between ecological responses (species richness and Biodiversity Maintenance Function for these two genera) and landscape structural changes through correlation analysis. Our results indicate that landscapes have experienced changes in aggregation, isolation/connectivity and landscape diversity, with these parameters being significantly correlated with Cheilosia species richness loss and habitat quality. We conclude that the genus Cheilosia is a good bioindicator that can highlight not only the current quality of an area but also temporal changes in landscape patterns.", "keywords": ["0106 biological sciences", "MODELS", "INSECTS", "DIVERSITY", "LAND COVER CHANGE", "Cheilosia", "Land cover change", "01 natural sciences", "BIOINDICATORS", "CONNECTIVITY", "RICHNESS", "FORESTS", "14. Life underwater", "Merodon", "Connectivity", "LAND-USE", "Landscape structure", "Bioindicators; Cheilosia; Connectivity; Insects; Land cover change; Landscape structure; Merodon; Species richness", "15. Life on land", "EXTINCTION RISK", "Insects", "Ecology", " evolutionary biology", "QH540 Ecology / \u00f6kol\u00f3gia", "Bioindicators", "BIODIVERSITY", "ABUNDANCE", "Species richness", "RESPONSES"]}, "links": [{"href": "https://akademiai.com/doi/pdf/10.1556/168.2017.18.3.7"}, {"href": "https://doi.org/10.1556/168.2017.18.3.7"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Community%20Ecology", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1556/168.2017.18.3.7", "name": "item", "description": "10.1556/168.2017.18.3.7", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1556/168.2017.18.3.7"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2017-12-01T00:00:00Z"}}, {"id": "10.1890/02-0433", "type": "Feature", "geometry": null, "properties": {"updated": "2026-09-20T16:18:22Z", "type": "Journal Article", "created": "2007-06-04", "title": "Plant Diversity, Soil Microbial Communities, And Ecosystem Function: Are There Any Links?", "description": "A current debate in ecology centers on the extent to which ecosystem function depends on biodiversity. Here, we provide evidence from a long-term field manipulation of plant diversity that soil microbial communities, and the key ecosystem processes that they mediate, are significantly altered by plant species richness. After seven years of plant growth, we determined the composition and function of soil microbial communities beneath experimental plant diversity treatments containing 1-16 species. Microbial community bio- mass, respiration, and fungal abundance significantly increased with greater plant diversity, as did N mineralization rates. However, changes in microbial community biomass, activity, and composition largely resulted from the higher levels of plant production associated with greater diversity, rather than from plant diversity per se. Nonetheless, greater plant pro- duction could not explain more rapid N mineralization, indicating that plant diversity affected this microbial process, which controls rates of ecosystem N cycling. Greater N availability probably contributed to the positive relationship between plant diversity and productivity in the N-limited soils of our experiment, suggesting that plant-microbe in- teractions in soil are an integral component of plant diversity's influence on ecosystem", "keywords": ["2. Zero hunger", "soil C and N cycling", "Science", "Ecology and Evolutionary Biology", "microbial communities", "phospholipid fatty acid analysis", "04 agricultural and veterinary sciences", "15. Life on land", "plant communities", "gross N mineralization", "soil microbes", "ecosystem function", "0401 agriculture", " forestry", " and fisheries", "species richness", "gross N immobilization", "biodiversity"], "contacts": [{"organization": "Zak, Donald R., Holmes, William E., White, David C., Peacock, Aaron D., Tilman, David,", "roles": ["creator"]}]}, "links": [{"href": "https://doi.org/10.1890/02-0433"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Ecology", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.1890/02-0433", "name": "item", "description": "10.1890/02-0433", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.1890/02-0433"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2003-08-01T00:00:00Z"}}, {"id": "10.2307/3237027", "type": "Feature", "geometry": null, "properties": {"license": "Closed Access", "updated": "2026-09-20T16:18:48Z", "type": "Journal Article", "created": "2006-05-07", "title": "Nutrient Supply In Undrained And Drained Calthion Meadows", "description": "<p>Abstract.  Plant species\uffe2\uff80\uff90rich Calthion meadows on mesotrophic fen peat soil extensively cut for hay are among the endangered semi\uffe2\uff80\uff90natural vegetation types in northwestern Europe. They are often badly affected by lowering the groundwater table (drainage) and fertilization.</p><p>In a comparative study of an undrained site with a Calthion meadow and an adjacent drained site, availability of N, P and K was biologically assessed under field conditions (for two years) as well as in a greenhouse (for 18 weeks) by measuring shoot responsiveness. Also, experimental wetting of intact turf samples taken from both sites was applied in order to study the interaction between nutrient supply and anaerobic soil conditions. It was concluded that the above\uffe2\uff80\uff90ground phytomass yield in the undrained site was restricted by a major shortage of N\uffe2\uff80\uff90supply and a moderate shortage of K\uffe2\uff80\uff90supply by the fen peat soil. The above\uffe2\uff80\uff90ground phytomass yield of the drained site was only reduced by a strongly limited supply of K by the soil. The extent of K\uffe2\uff80\uff90deficiency was larger for the drained site. No P\uffe2\uff80\uff90deficiency was observed in any of the drained or undrained sites. Rewetting turf samples, taken from the drained site, did not change above\uffe2\uff80\uff90ground phytomass yields, suggesting that nutrient supplies were not affected by rewetting. Leaching has likely resulted in a strong reduction of K\uffe2\uff80\uff90supply in the drained site. It is assumed that a shortage in K\uffe2\uff80\uff90supply from the peat soil may have become an important environmental constraint for characteristic plant species of Calthion meadows. This may hamper the development of this meadow type on drained peat soils after rewetting by groundwater discharge.</p>", "keywords": ["DYNAMICS", "0106 biological sciences", "NRS", "restoration", "GRASSLAND", "LIMITATION", "GROUNDWATER", "fen peat", "15. Life on land", "01 natural sciences", "SOIL", "VEGETATION PATTERNS", "ADLIB-ART-1990", "fertilization", "ITC-ISI-JOURNAL-ARTICLE", "FERTILIZER APPLICATION", "plant species richness", "macronutrient deficiency", "COMMUNITIES", "drainage", "management", "SEDIMENTS", "FENS"], "contacts": [{"organization": "JA Inberg, D. M. Pegtel, I.C. van Duren, BA Aerts,", "roles": ["creator"]}]}, "links": [{"href": "https://doi.org/10.2307/3237027"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Journal%20of%20Vegetation%20Science", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.2307/3237027", "name": "item", "description": "10.2307/3237027", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.2307/3237027"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "1997-12-01T00:00:00Z"}}, {"id": "10.4067/s0718-95162014005000045", "type": "Feature", "geometry": null, "properties": {"license": "Open Access", "updated": "2026-09-20T16:19:20Z", "type": "Journal Article", "created": "2014-08-22", "description": "Nitrogen (N) deposition greatly affects the above ground biological composition of grasslands and soil properties. However, its influence on the relationship among soil, plant and bacterial communities remain controversy. We calculated Shannon-wiener index to measure the soil bacterial diversity based on denaturing gradient gel electrophoresis, and investigate the roles of vegetation and soil properties on the soil bacterial community under N addition. A three-year simulated N deposition experiment was conducted in a forbs community dominated by Leymus chinensis (Trin.) Tzvel. and Artemisia scoparia Wald. Et. Kit. N was added at five levels (0, 23, 46, 69, 92 kg ha -1 yr -1 ). Our results showed that N addition increased the soil microbial biomass carbon (SMBC) and soil bacterial diversity. Moderate N (23, 46, 69 kg ha -1 yr -1 ) addition increased the soil bacterial diversity, whereas excess N (92 kg ha -1 yr -1 ) addition inhibited it. The SMBC and soil bacterial diversity were related to richness of plant functional groups. In particular, SMBC had positive correlation with biomass of annuals and biennials, suggesting that the effects of the plant community on the soil bacteria could be explained by a relationship between the soil bacterial community and a subset of plant species rather than all species.", "keywords": ["Songnen grassland", "13. Climate action", "soil bacterial community", "0401 agriculture", " forestry", " and fisheries", "04 agricultural and veterinary sciences", "species richness", "15. Life on land", "Nitrogen deposition", "resource availability"], "contacts": [{"organization": "Sun, S, Xing, F, Zhao, H, Gao, Y, Bai, Z, Dong, Y,", "roles": ["creator"]}]}, "links": [{"href": "https://doi.org/10.4067/s0718-95162014005000045"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Journal%20of%20soil%20science%20and%20plant%20nutrition", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.4067/s0718-95162014005000045", "name": "item", "description": "10.4067/s0718-95162014005000045", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.4067/s0718-95162014005000045"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2014-01-01T00:00:00Z"}}, {"id": "10.5061/dryad.mpg4f4r3b", "type": "Feature", "geometry": null, "properties": {"license": "unspecified", "updated": "2026-09-20T16:19:31Z", "type": "Dataset", "title": "Changing plant species composition and richness benefit soil carbon sequestration under climate warming", "description": "Anthropogenic warming and land-use change are expected to accelerate  global soil organic carbon (SOC) losses and change plant species  composition and richness. However, how changes in plant composition and  species richness mediate SOC responses to climate warming and land-use  change remains poorly understood. Using data from a 7-year warming and  clipping field experiment in an alpine meadow on the Qinghai-Tibetan  Plateau, we examined the direct effects of warming and clipping on SOC  storage versus their indirect effects mediated by plant functional type  and species richness. We found that warming significantly increased SOC  storage by 8.1% and clipping decreased it by 6.4%, which was closely  correlated with the corresponding response of below-ground net primary  productivity (BNPP). We also found a negative correlation between SOC  storage and species richness, which was ascribed to the increased BNPP via  enhancing the dominance of grasses and decreasing species richness under  warming. The lower SOC storage under clipping was caused by the  clipping-induced decrease in BNPP via weakening the dominance of grasses  and increasing species richness. Our findings highlight that the SOC  storage in this alpine meadow under climate warming and clipping was  primarily governed by BNPP, which was mediated by changes in the dominance  of grasses and species richness. Overall, our study demonstrates that  shifting to the dominance of grasses and changing species richness would  benefit soil C sequestration under climate warming, but this positive  effect would be dampened by grazing or hay harvest.", "keywords": ["2. Zero hunger", "soil organic carbon", "dominant functional type", "13. Climate action", "Land-use change", "14. Life underwater", "15. Life on land", "species richness", "FOS: Natural sciences", "climate warming"], "contacts": [{"organization": "Yan, Yingjie, Niu, Shuli, He, Yicheng, Wang, Song, Song, Lei, Peng, Jinlong, Chen, Xinli, Quan, Quan, Meng, Cheng, Zhou, Qingping, Wang, Jinsong,", "roles": ["creator"]}]}, "links": [{"href": "https://doi.org/10.5061/dryad.mpg4f4r3b"}, {"rel": "self", "type": "application/geo+json", "title": "10.5061/dryad.mpg4f4r3b", "name": "item", "description": "10.5061/dryad.mpg4f4r3b", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.5061/dryad.mpg4f4r3b"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2022-10-11T00:00:00Z"}}, {"id": "10.5061/dryad.3r2280gp2", "type": "Feature", "geometry": null, "properties": {"license": "unspecified", "updated": "2026-09-20T16:19:26Z", "type": "Dataset", "created": "2023-11-21", "title": "Herbivory and allelopathy contribute jointly to the diversity-invasibility relationship", "description": "unspecified<em>Treatments</em>  In the herbivory-reduction  treatment, we sprayed the plots with an insecticide. To avoid that the  insecticide spray would drift into plots of the non-insecticide treatment,  we randomly assigned the four blocks, each with 47 plots, to one of the  four experimental treatments (i.e. herbivory reduction, allelopathy  reduction, herbivory and allelopathy reduction, no herbivory and  allelopathy reduction). Within each block, the monocultures and species  mixtures of the native plants as well as the three monocultures of  <em>S. canadensis</em> were randomly assigned to different  plots. In the blocks with herbivory reduction, we sprayed each plot every  10 days with a 0.5-L solution of Abamectin (1:500, v:v; Hongke Biochemical  Co., Ltd, Shijiazhuang city, Hebei province in China), which is a  broad-spectrum insecticide. The other plots were sprayed with tap water  instead, and the plants in those plots were considered to be fully exposed  to herbivory. In the blocks with allelopathy reduction, we had, prior to  planting, mixed 8 L (~4 kg) of activated carbon (HG/T 3491-1999, Wuxi  Yatai United Chemical Co., Ltd) into the top 20 cm of soil in each plot,  resulting in a concentration of 1: 100 (v:v). Activated carbon can adsorb  chemicals, including allelopathic substances produced by plants, and  thereby supposedly neutralizes or reduces allelopathic interactions  (Inderjit and Callaway, 2003; Prati &amp; Bossdorf, 2004; Ridenour  &amp; Callaway, 2001; Yuan et al., 2022). However, as activated carbon  may have undesired side-effects on plant growth (Lau et al., 2008; Kabouw  et al., 2010; Wei\u00dfhuhn &amp; Prati, 2009; Wurst et al., 2010), we  tested for side effects in the additional S. canadensis monoculture plots.  We found no significant effect of activated carbon on biomass production  of S. canadensis (Appendix S1: Fig. S1), which suggests that side effects  of activated carbon were absent or minimal in our study. Therefore, plots  without activated carbon were considered to have the full strength of  allelopathic interactions among the plants.  <em>Measurements</em>  To quantify the likelihood of  resource competition in each plot, we measured light interception by the  canopy and soil nutrient contents. Light interception in each plot was  measured twice on cloud-free days (September 25\u201328, 2018 and September  21\u201324, 2019). Photosynthetically active radiation (PAR) was measured at  three randomly selected points within the central 1.6 m \u00d7 1.6 m area of  each plot using a PAR ceptometer (GLZ-C, Zhejiang Top Instrument Co., Ltd,  China). This was done at mid-day (between 11:00 and 14:00), when the solar  angle was maximal. Light-interception proportion was calculated as (PAR  above the canopy - PAR at ground level)/PAR above the canopy.  To  determine nutrient contents, we took three soil cores (6.4 cm in diameter  and 20 cm in depth) from the central 1.6 m \u00d7 1.6 m area of each plot, and  thoroughly mixed the three cores to obtain one composite sample per plot.  This was done on the days that we took the light measurments. Samples were  air-dried for two weeks and then sieved through a 2-mm mesh. After that,  20 g of each soil sample was ground into powder and used to measure soil  total nitrogen and total phosphorus contents with an autoanalyzer  (Autoanalyzer 3, BRAN+LUEBBE, Germany). We also determined the total  organic carbon content using the method of Nelson and Sommers  (1982). Before biomass harvest in 2018 and 2019 years,  in each plot of herbivory and allelopathy and that of herbivory and  allelopathy reduction treatment, 30 leaves (10 leaves was randomly  selected in each of upper, middle and lower layers of canopy) of each  species living in each plot were surveyed for damage by herbivores. If the  total number of leaves of a species was less than 30, and the leaves were  all surveyed. We counted the number of leaves with herbivore damage (e.g.  holes). We then quantified the herbivory ratio as the number of leaves  with herbivory damage divided by 30. In addition, we calculated for the  damaged leaves on each plant species a herbivory intensity (an  herbivory-severity index) as the average proportion of leaf area lost due  to herbivory. To measure foliar flavonoid content of native speies and  <em>S. canadensis</em>, five plots that having the species (if  the species have died and another plot was reselected) were randomly  selected in each of four treatments. Leaf samples (5-10 number) of the  species were randomly gathered in each of five plots. The method of Shen  et al. (2005) was used to measure the foliar flavonoid  content. To determine the biomass production of plants,  and whether this changed over time, we did two harvests. The first one was  done in October 2018, one year after the invaders had been planted, and  the second one was done in October 2019. At the first harvest, we  collected aboveground biomass of all living plants in one half (1 m \u00d7 2 m)  of each plot, and at the second harvest, we did this for the remaining  halves. At both harvests, the plants were sorted to species, dried at 80\u00b0C  for 48 h and weighed.", "keywords": ["FOS: Biological sciences", "Solidago canadensis L", "allelopathy", "Biomass", "nutrient availability", "Herbivory", "species richness", "light interception", "invasibility"], "contacts": [{"organization": "Wang, Xiao-Yan, Wang, Jiang, Gao, Song, Hong, Hefang, Xue, Wei, Yuan, Jiwei, van Kleunen, Mark, Li, Junmin,", "roles": ["creator"]}]}, "links": [{"href": "https://doi.org/10.5061/dryad.3r2280gp2"}, {"rel": "self", "type": "application/geo+json", "title": "10.5061/dryad.3r2280gp2", "name": "item", "description": "10.5061/dryad.3r2280gp2", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.5061/dryad.3r2280gp2"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2024-04-26T00:00:00Z"}}, {"id": "10.5061/dryad.54ht3", "type": "Feature", "geometry": null, "properties": {"license": "Open Access", "updated": "2026-09-20T16:19:27Z", "type": "Dataset", "title": "Data from: Effects of plant diversity on the concentration of secondary plant metabolites and the density of arthropods on focal plants in the field", "description": "Open Access1. The diversity of the surrounding plant community can directly affect  the abundance of insects on a focal plant as well as the size and quality  of that focal plant. However, to what extent the effects of plant  diversity on the arthropod community on a focal plant are mediated by host  plant quality or by the diversity of the surrounding plants remains  unresolved. 2. In the field, we sampled arthropod communities on focal  Jacobaea vulgaris plants growing in experimental plant communities that  were maintained at different levels of diversity (1, 2, 4 or 9 species)  for three years. Focal plants were also planted in plots without  surrounding vegetation. We recorded the structural characteristics of each  of the surrounding plant communities as well as the growth, and primary  and secondary chemistry (pyrrolizidine alkaloids, PAs) of the focal plants  to disentangle the potential mechanisms causing the diversity effects. 3.  Two years after planting, the abundance of arthropods on focal plants that  were still in the vegetative stage decreased with increasing plant  diversity, while the abundance of arthropods on reproductive focal plants  was not significantly affected by the diversity of the neighbouring  community. The size of both vegetative and reproductive focal plants was  not significantly affected by the diversity of the neighbouring community,  but the levels of PAs and the foliar N concentration of vegetative focal  plants decreased with increasing plant diversity. Structural equation  modelling revealed that the effects of plant diversity on the arthropod  communities on focal plants were not mediated by changes in plant quality.  4. Synthesis. Plant quality can greatly influence insect preference and  performance. However, under natural conditions the effects of the  neighbouring plant community can overrule the plant quality effects of  individual plants growing in those communities on the abundance of insects  associated to this plant.", "keywords": ["Phytochemistry", "Jacobaea vulgaris", "plant\u2013herbivore interactions", "plant quality", "insect community", "plant species richness", "Verwerkte data", "phytochemistry", "Processed data", "15. Life on land", "plant-herbivore interactions", "biodiversity"], "contacts": [{"organization": "Kostenko, O., Mulder, P.P.J., Courbois, Matthijs, Bezemer, T.M.,", "roles": ["creator"]}]}, "links": [{"href": "https://doi.org/10.5061/dryad.54ht3"}, {"rel": "self", "type": "application/geo+json", "title": "10.5061/dryad.54ht3", "name": "item", "description": "10.5061/dryad.54ht3", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.5061/dryad.54ht3"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2016-01-01T00:00:00Z"}}, {"id": "10.5061/dryad.cjsxksncn", "type": "Feature", "geometry": null, "properties": {"license": "unspecified", "updated": "2026-09-20T16:19:29Z", "type": "Dataset", "created": "2023-10-13", "title": "Tillage agriculture and afforestation threaten tropical savanna plant communities across a broad rainfall gradient in India", "description": "unspecifiedThe consequences of land-use change for savanna biodiversity remain  undocumented in most regions of tropical Asia. One such region is western  Maharashtra, India, where old-growth savannas occupy a broad rainfall  gradient and are increasingly rare due to agricultural conversion and  afforestation. To understand the consequences of land-use change, we  sampled herbaceous plant communities of old-growth savannas and three  alternative land-use types: tree plantations, tillage agriculture, and  agricultural fallows (n=15 sites per type). Study sites spanned 457 to  1954 mm of mean annual precipitation\u2014corresponding to the typical rainfall  range of mesic savannas globally. Across the rainfall gradient, we found  consistent declines in old-growth savanna plant communities due to  land-use change. Local-scale native species richness dropped from a mean  of 12 species/m2 in old-growth savannas to 8, 6, and 3 species/m2 in tree  plantations, fallows, and tillage agriculture, respectively. Cover of  native plants declined from a mean of 49% in old-growth savannas to 27% in  both tree plantations and fallows, and 4% in tillage agriculture.  Reductions in native cover coincided with increased cover of invasive  species in tree plantations (18%), fallows (18%), and tillage agriculture  (3%). In analyses of community composition, tillage agriculture was most  dissimilar to old-growth savannas, while tree plantations and fallows  showed intermediate dissimilarity. These compositional changes were driven  partly by the loss of characteristic savanna species: 65 species recorded  in old-growth savannas were absent in other land uses. Indicator analysis  revealed 21 old-growth species, comprised mostly of native savanna  specialists. Indicators of tree plantations (9 species) and fallows (13  species) were both invasive and native species, while the 2 indicators of  tillage agriculture were invasive. As reflective of declines in savanna  communities, mean native perennial graminoid cover of 27% in old-growth  savannas dropped to 9%, 7%, and 0.1% in tree plantations, fallows, and  tillage agriculture, respectively. Synthesis: Agricultural conversion and  afforestation of old-growth savannas in India destroys and degrades  herbaceous plant communities that do not spontaneously recover on fallowed  land. Efforts to conserve India\u2019s native biodiversity should encompass the  country\u2019s widespread savanna biome and seek to limit conversion of  irreplaceable old-growth savannas.", "keywords": ["2. Zero hunger", "land use change", "13. Climate action", "plant species richness", "India", "Biodiversity", "15. Life on land", "grassland", "herbivores", "fire", "FOS: Natural sciences"], "contacts": [{"organization": "Nerlekar, Ashish, Munje, Avishkar, Mhaisalkar, Pranav, Hiremath, Ankila, Veldman, Joseph,", "roles": ["creator"]}]}, "links": [{"href": "https://doi.org/10.5061/dryad.cjsxksncn"}, {"rel": "self", "type": "application/geo+json", "title": "10.5061/dryad.cjsxksncn", "name": "item", "description": "10.5061/dryad.cjsxksncn", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.5061/dryad.cjsxksncn"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2023-10-17T00:00:00Z"}}, {"id": "10.5061/dryad.s4mw6m9bc", "type": "Feature", "geometry": null, "properties": {"license": "unspecified", "updated": "2026-09-20T16:19:32Z", "type": "Dataset", "title": "Divergent responses of grassland productivity and plant diversity to intra-annual precipitation variability across climate regions: A global synthesis", "description": "Global warming intensifies the hydrological cycle and may result in  changes in the frequency and intensity of precipitation events. Although  the effects of changes in precipitation amount and inter-annual  precipitation variability on terrestrial plant productivity and carbon  sequestration have been well studied, how intra-annual precipitation  variability affects terrestrial ecosystem function remains unclear. Here,  we synthesized field manipulative experiments from 71 publications to  quantify the effects of intra-annual precipitation variability increases  (IPVI) on community biomass and plant diversity in grasslands worldwide.  \u00a0At the global scale, we found that IPVI generally increased  grassland community aboveground biomass (AGB) by 6%, and decreased grass  biomass and soil ammonium nitrogen by 12% and 31%, respectively. IPVI  stimulated AGB, belowground biomass, and plant species richness in arid  regions, but not changed them in humid regions. Changes in AGB under IPVI  were related to changes in the biomass of plant functional groups, species  richness, and soil moisture. Structural equation modelling demonstrated  that that climate conditions (mean annual temperature and mean annual  precipitation) and background soil properties (soil sand content and soil  organic carbon content) jointly regulated grassland AGB responses to IPVI  across climate types. Synthesis: Overall, our study shows that grassland  productivity and diversity may increase under IPVI in arid climates, and  that humid grasslands may be highly resistant to the effects of IPVI.  These findings have important implications for understanding ecosystem  carbon cycling under global precipitation change scenarios.", "keywords": ["2. Zero hunger", "meta-analysis", "13. Climate action", "soil properties", "intra-annual precipitation variability increase", "15. Life on land", "grassland", "species richness", "aboveground biomass", "Soil water availability", "FOS: Natural sciences"], "contacts": [{"organization": "Su, Jishuai, Zhang, Yi, Xu, Fengwei,", "roles": ["creator"]}]}, "links": [{"href": "https://doi.org/10.5061/dryad.s4mw6m9bc"}, {"rel": "self", "type": "application/geo+json", "title": "10.5061/dryad.s4mw6m9bc", "name": "item", "description": "10.5061/dryad.s4mw6m9bc", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.5061/dryad.s4mw6m9bc"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2023-05-16T00:00:00Z"}}, {"id": "10.60692/aqpen-xja81", "type": "Feature", "geometry": null, "properties": {"license": "Open Access", "updated": "2026-09-20T16:21:23Z", "type": "Journal Article", "created": "2022-12-22", "title": "Litter chemistry of common European tree species drives the feeding preference and consumption rate of soil invertebrates, and shapes the diversity and structure of gut and faecal microbiomes", "description": "Open AccessTerrestrial isopods and millipedes are key drivers of a litter decomposition in terrestrial ecosystems but the effects of litter chemistry on feeding preference and litter consumption rate as well as on the diversity and composition of gut and faecal microbiome still entails several challenges. We established a mesocosm experiment with terrestrial isopods (Oniscus asellus) and millipedes (Glomeris marginata) fed by leaf litter from six common European tree species (ash, maple, lime, beech, oak and Norway spruce) to reveal the effect of litter chemistry on consumption rate and feeding preference as well as on the compositions of gut and faecal microbiomes. The total percentage of consumed litter showed that O. asellus preferred nutrient-rich and labile-C litter of ash over more recalcitrant litter of oak, beech, and Norway spruce, while G. marginata preferred calcium-rich ash, maple and lime litter over beech and Norway spruce. Consumption of litter by O. asellus and G. marginata increased with concentrations of magnesium, sulphur and potassium but decreased with concentrations of iron, phosphorus, lignin, cellulose and TOC. The millipede G. marginata harboured higher bacterial OTU richness (73.5 \u00b1 12.5) than the isopod O. asellus (49.1 \u00b1 15.9), but fungal OTU richness was similar with 25.8 \u00b1 6.7 in O. asellus and 25.7 \u00b1 2.7 in G. marginata. In total, faeces of both animals hosted higher diversity than gut. In gut and faeces of O. asellus, the fungal OTU richness was highest for individuals fed by litter of Norway spruce, while lowest OTU richness was recorded for individuals fed by litter of more palatable ash. In contrast, the highest diversity of the fungal community in gut and faeces of G. marginata was recorded for individuals fed by palatable lime litter, while the lowest OTUs richness was recorded when millipedes were fed by maple and spruce. The structures of bacterial and fungal communities generally separated between O. asellus and G. marginata. The fungal community structure in gut and faeces differed between animals fed by different foliar litters, while the bacterial community structure mainly differed between gut and faeces regardless of the offered type of litter. The fungal community structure in gut and faeces of O. asellus and G. marginata were shaped by concentrations of magnesium, sulphur, lignin and cellulose. The bacterial communities in gut and faeces of both O. asellus and G. marginata were dominated by copiotrophic bacteria, while fungal communities were dominated by unspecified saprotrophs. Our study suggest that litter quality is a strong driver of feeding preference and consumption rates as well as composition of bacterial and fungal communities in gut and faeces of two species representing the main groups of litter feeding soil fauna in European forests.", "keywords": ["0301 basic medicine", "Genomic Insights into Social Insects and Symbiosis", "Plant Science", "Plant litter", "Agricultural and Biological Sciences", "03 medical and health sciences", "Biochemistry", " Genetics and Molecular Biology", "Litter", "Genetics", "Ecological Niche", "Biology", "Ecosystem", "Beech", "0303 health sciences", "Species Distribution Modeling and Climate Change Impacts", "Ecology", "Ecological Modeling", "Botany", "Life Sciences", "15. Life on land", "Plant-Parasitic Nematodes in Molecular Plant Pathology", "Detritus", "FOS: Biological sciences", "Detritivore", "Environmental Science", "Physical Sciences", "Species richness"]}, "links": [{"href": "https://doi.org/10.60692/aqpen-xja81"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Soil%20Biology%20and%20Biochemistry", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10.60692/aqpen-xja81", "name": "item", "description": "10.60692/aqpen-xja81", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10.60692/aqpen-xja81"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2023-02-01T00:00:00Z"}}, {"id": "20.500.14352/94922", "type": "Feature", "geometry": null, "properties": {"license": "Open Access", "updated": "2026-09-20T16:22:18Z", "type": "Journal Article", "created": "2018-09-22", "title": "Cascading effects from plants to soil microorganisms explain how plant species richness and simulated climate change affect soil multifunctionality", "description": "Abstract<p>Despite their importance, how plant communities and soil microorganisms interact to determine the capacity of ecosystems to provide multiple functions simultaneously (multifunctionality) under climate change is poorly known. We conducted a common garden experiment using grassland species to evaluate how plant functional structure and soil microbial (bacteria and protists) diversity and abundance regulate soil multifunctionality responses to joint changes in plant species richness (one, three and six species) and simulated climate change (3\uffc2\uffb0C warming and 35% rainfall reduction). The effects of species richness and climate on soil multifunctionality were indirectly driven via changes in plant functional structure and their relationships with the abundance and diversity of soil bacteria and protists. More specifically, warming selected for the larger and most productive plant species, increasing the average size within communities and leading to reductions in functional plant diversity. These changes increased the total abundance of bacteria that, in turn, increased that of protists, ultimately promoting soil multifunctionality. Our work suggests that cascading effects between plant functional traits and the abundance of multitrophic soil organisms largely regulate the response of soil multifunctionality to simulated climate change, and ultimately provides novel experimental insights into the mechanisms underlying the effects of biodiversity and climate change on ecosystem functioning.</p", "keywords": ["[SDE] Environmental Sciences", "0106 biological sciences", "570", "[SDV]Life Sciences [q-bio]", "Nutrientcycles", "Climate Change", "Edafolog\u00eda (Biolog\u00eda)", "Bacterial Physiological Phenomena", "biotic communities", "01 natural sciences", "631.4", "climatic changes", "Soil", "XXXXXX - Unknown", "Climate change", "14. Life underwater", "species richness", "bacteria", "Ecosystem", "Plant Physiological Phenomena", "Soil Microbiology", "biodiversity", "580", "2. Zero hunger", "species diversity", "Bacteria", "Protist", "2417.13 Ecolog\u00eda Vegetal", "nutrient cycles", "environmental filtering", "Biodiversity", "15. Life on land", "[SDV] Life Sciences [q-bio]", "climate change", "13. Climate action", "ecosystem functioning", "[SDE]Environmental Sciences", "Ecosystem functioning", "2511.02 Biolog\u00eda de Suelos", "protist", "Environmental filtering", "Species richness"]}, "links": [{"href": "https://onlinelibrary.wiley.com/doi/pdf/10.1111/gcb.14440"}, {"href": "https://doi.org/20.500.14352/94922"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Global%20Change%20Biology", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "20.500.14352/94922", "name": "item", "description": "20.500.14352/94922", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/20.500.14352/94922"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2018-10-09T00:00:00Z"}}, {"id": "10568/131386", "type": "Feature", "geometry": null, "properties": {"updated": "2026-09-20T16:21:49Z", "type": "Journal Article", "created": "2023-06-15", "title": "Bioinoculants and organic soil amendments affect nematode diversity in apple orchards", "description": "Open AccessNematodes with their versatile lifestyles provide a suitable lens to decipher the conditions of agroecosystems, but less is known about how they are affected by bioinoculants and organic soil amendments. To test if treatments modify the nematode community, we studied nematode communities in two different apple orchards under organic and integrated farming. Soil was treated with products containing arbuscular mycorrhizal fungi, bioeffectors, and organic amendments. The comparison between baseline and control samples indicated an overall higher nematode richness in organic than the integrated orchard. Sampling time more than treatment had a significant effect, and higher community richness was observed during spring as compared to autumn. The variation in nematode community composition was mainly explained by sampling time followed by treatment, and orchard type. Although all treatments reduced nematode richness, their effect generally varied across treatments. In both orchards, season-dependent effects of treatment on nematode families and trophic guilds were observed, with a higher percentage of bacterivorous and lower percentage of herbivorous nematodes during spring. The effect was driven by a few families, i.e. Rhabditidae and Tylenchidae. Our study provides insights about the effect of soil treatment on nematodes with implications for the development and modification of bioinoculants.", "keywords": ["330", "Organic farming", "Agroecosystem", "organic soils", "Orchard", "Plant Science", "630", "Trophic level", "Agricultural and Biological Sciences", "Bacterivore", "Soil biology", "Soil food web", "Mycorrhizal Fungi and Plant Interactions", "Soil water", "soils", "Plant Interactions", "Biology", "Ecology", " Evolution", " Behavior and Systematics", "biodiversity", "Nematode", "2. Zero hunger", "Ecology", "arbuscular mycorrhiza", "Life Sciences", "Agriculture", "15. Life on land", "Agronomy", "Plant-Parasitic Nematodes in Molecular Plant Pathology", "FOS: Biological sciences", "nematodes", "Impact of Pollinator Decline on Ecosystems and Agriculture", "Species richness"]}, "links": [{"href": "https://eprints.soton.ac.uk/495621/1/1-s2.0-S0929139323002020-main.pdf"}, {"href": "https://doi.org/10568/131386"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Applied%20Soil%20Ecology", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "10568/131386", "name": "item", "description": "10568/131386", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/10568/131386"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2023-10-01T00:00:00Z"}}, {"id": "11380/1307595", "type": "Feature", "geometry": null, "properties": {"updated": "2026-09-20T16:21:55Z", "type": "Journal Article", "created": "2018-02-12", "title": "Phytophagous hoverflies (Diptera: Syrphidae) as indicators of changing landscapes", "description": "Spatial and temporal differences in landscape patterns are of considerable interest for understanding ecological processes. In this study, we assessed habitat quality by using the Syrph The Net database and data on decreasing species richness over a 25-year period for the two largest phytophagous hoverfly genera (Merodon and Cheilosia). Furthermore, within this time frame, we explored congruence between ecological responses (species richness and Biodiversity Maintenance Function for these two genera) and landscape structural changes through correlation analysis. Our results indicate that landscapes have experienced changes in aggregation, isolation/connectivity and landscape diversity, with these parameters being significantly correlated with Cheilosia species richness loss and habitat quality. We conclude that the genus Cheilosia is a good bioindicator that can highlight not only the current quality of an area but also temporal changes in landscape patterns.", "keywords": ["0106 biological sciences", "MODELS", "INSECTS", "DIVERSITY", "LAND COVER CHANGE", "Cheilosia", "Land cover change", "01 natural sciences", "BIOINDICATORS", "CONNECTIVITY", "RICHNESS", "FORESTS", "14. Life underwater", "Merodon", "Connectivity", "LAND-USE", "Landscape structure", "Bioindicators; Cheilosia; Connectivity; Insects; Land cover change; Landscape structure; Merodon; Species richness", "15. Life on land", "EXTINCTION RISK", "Insects", "Ecology", " evolutionary biology", "QH540 Ecology / \u00f6kol\u00f3gia", "Bioindicators", "BIODIVERSITY", "ABUNDANCE", "Species richness", "RESPONSES"]}, "links": [{"href": "https://akademiai.com/doi/pdf/10.1556/168.2017.18.3.7"}, {"href": "https://doi.org/11380/1307595"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Community%20Ecology", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "11380/1307595", "name": "item", "description": "11380/1307595", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/11380/1307595"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2017-12-01T00:00:00Z"}}, {"id": "1959.7/uws:64348", "type": "Feature", "geometry": null, "properties": {"license": "Open Access", "updated": "2026-09-20T16:22:08Z", "type": "Journal Article", "created": "2019-03-29", "title": "Multifunctionality debt in global drylands linked to past biome and climate", "description": "Abstract<p>Past vegetation and climatic conditions are known to influence current biodiversity patterns. However, whether their legacy effects affect the provision of multiple ecosystem functions, that is, multifunctionality, remains largely unknown. Here we analyzed soil nutrient stocks and their transformation rates in 236 drylands from six continents to evaluate the associations between current levels of multifunctionality and legacy effects of the\uffc2\uffa0Last Glacial Maximum (LGM) desert biome distribution and climate. We found that past desert distribution and temperature legacy, defined as increasing temperature from LGM, were negatively correlated with contemporary multifunctionality even after accounting for predictors such as current climate, soil texture, plant species richness, and site topography. Ecosystems that have been deserts since the LGM had up to 30% lower contemporary multifunctionality compared with those that were nondeserts during the LGM. In addition, ecosystems that experienced higher warming rates since the LGM had lower contemporary multifunctionality than those suffering lower warming rates, with a ~9% reduction per extra degree Celsius. Past desert distribution and temperature legacies had direct negative effects, while temperature legacy also had indirect (via soil sand content) negative effects on multifunctionality. Our results indicate that past biome and climatic conditions have left a strong \uffe2\uff80\uff9cfunctionality debt\uffe2\uff80\uff9d in global drylands. They also suggest that ongoing warming and expansion of desert areas may leave a strong fingerprint in the future functioning of dryland ecosystems worldwide that needs to be considered when establishing management actions aiming to combat land degradation and desertification.</p", "keywords": ["0301 basic medicine", "2. Zero hunger", "Nutrient transformation rates", "Conservation of Natural Resources", "0303 health sciences", "Last Glacial Maximum", "Paleoclimate", "Climate", "Temperature", "Precipitation", "Biodiversity", "Ecolog\u00eda", "Plants", "15. Life on land", "Arid climate", "Soil", "03 medical and health sciences", "13. Climate action", "XXXXXX - Unknown", "Nutrient stocks", "Plant productivity", "Plant species richness", "Ecosystem"]}, "links": [{"href": "https://onlinelibrary.wiley.com/doi/pdf/10.1111/gcb.14631"}, {"href": "https://doi.org/1959.7/uws:64348"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Global%20Change%20Biology", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "1959.7/uws:64348", "name": "item", "description": "1959.7/uws:64348", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/1959.7/uws:64348"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2019-04-21T00:00:00Z"}}, {"id": "2164/23373", "type": "Feature", "geometry": null, "properties": {"updated": "2026-09-20T16:22:24Z", "type": "Journal Article", "created": "2023-11-29", "title": "Connecting the multiple dimensions of global soil fungal diversity", "description": "<?xml version='1.0' encoding='UTF-8'?><article><p>How the multiple facets of soil fungal diversity vary worldwide remains virtually unknown, hindering the management of this essential species-rich group. By sequencing high-resolution DNA markers in over 4000 topsoil samples from natural and human-altered ecosystems across all continents, we illustrate the distributions and drivers of different levels of taxonomic and phylogenetic diversity of fungi and their ecological groups. We show the impact of precipitation and temperature interactions on local fungal species richness (alpha diversity) across different climates. Our findings reveal how temperature drives fungal compositional turnover (beta diversity) and phylogenetic diversity, linking them with regional species richness (gamma diversity). We integrate fungi into the principles of global biodiversity distribution and present detailed maps for biodiversity conservation and modeling of global ecological processes.</p></article>", "keywords": ["Supplementary Data", "QH301 Biology", "Diversity (politics)", "Plant Science", "Biodiversity conservation", "Fungal Diversity", "Agricultural and Biological Sciences", "Soil", "Life", "Sociology", "WATER", "Global biodiversity distribution", "Fungal diversity", "Phylogeny", "Soil Microbiology", "2. Zero hunger", "Multidisciplinary", "Earth", " Environmental", " Ecological", " and Space Sciences", "Geography", "Ecology", "soil fungal diversity", "4. Education", "SPECIES RICHNESS", "Life Sciences", "https://www.science.org/doi/suppl/10.1126/sciadv.adj8016/suppl_file/sciadv.adj8016_sm.pdf", "Biodiversity", "FOS: Sociology", "global biodiversity distribution", "sienet", "https://www.science.org/doi/suppl/10.1126/sciadv.adj8016/suppl_file/sciadv.adj8016_tables_s1_to_s13.zip", "Diversity and Evolution of Fungal Pathogens", "570", "Supplementary Information", "DNA markers", "QH301", "Sequencing high-resolution DNA", "Biochemistry", " Genetics and Molecular Biology", "monimuotoisuus", "Mycorrhizal Fungi and Plant Interactions", "Life Science", "Humans", "14. Life underwater", "General", "Global ecological processes", "Biology", "Ecosystem", "Ecology", " Evolution", " Behavior and Systematics", "global ecological processes", "Soil fungal diversity", "microbiology", "Fungi", "Water", "Cell Biology", "15. Life on land", "luonnon monimuotoisuus", "Agronomy", "biodiversiteetti", "LIFE", "ekosysteemit (ekologia)", "Evolution and Ecology of Endophyte-Grass Symbiosis", "13. Climate action", "Ecology", " evolutionary biology", "Earth and Environmental Sciences", "FOS: Biological sciences", "Anthropology", "ta1181", "biodiversity conservation", "CBCE", "Species richness"]}, "links": [{"href": "https://www.science.org/doi/epdf/10.1126/sciadv.adj8016"}, {"href": "https://iris.unica.it/bitstream/11584/447894/1/Mikryukov%20et%20al_Science%20Advances%202023.pdf"}, {"href": "https://www.science.org/doi/pdf/10.1126/sciadv.adj8016"}, {"href": "https://doi.org/2164/23373"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Science%20Advances", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "2164/23373", "name": "item", "description": "2164/23373", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/2164/23373"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2023-12-01T00:00:00Z"}}, {"id": "2893251307", "type": "Feature", "geometry": null, "properties": {"license": "Open Access", "updated": "2026-09-20T16:22:34Z", "type": "Journal Article", "created": "2018-09-22", "title": "Cascading effects from plants to soil microorganisms explain how plant species richness and simulated climate change affect soil multifunctionality", "description": "Abstract<p>Despite their importance, how plant communities and soil microorganisms interact to determine the capacity of ecosystems to provide multiple functions simultaneously (multifunctionality) under climate change is poorly known. We conducted a common garden experiment using grassland species to evaluate how plant functional structure and soil microbial (bacteria and protists) diversity and abundance regulate soil multifunctionality responses to joint changes in plant species richness (one, three and six species) and simulated climate change (3\uffc2\uffb0C warming and 35% rainfall reduction). The effects of species richness and climate on soil multifunctionality were indirectly driven via changes in plant functional structure and their relationships with the abundance and diversity of soil bacteria and protists. More specifically, warming selected for the larger and most productive plant species, increasing the average size within communities and leading to reductions in functional plant diversity. These changes increased the total abundance of bacteria that, in turn, increased that of protists, ultimately promoting soil multifunctionality. Our work suggests that cascading effects between plant functional traits and the abundance of multitrophic soil organisms largely regulate the response of soil multifunctionality to simulated climate change, and ultimately provides novel experimental insights into the mechanisms underlying the effects of biodiversity and climate change on ecosystem functioning.</p", "keywords": ["[SDE] Environmental Sciences", "0106 biological sciences", "570", "[SDV]Life Sciences [q-bio]", "Nutrientcycles", "Climate Change", "Edafolog\u00eda (Biolog\u00eda)", "Bacterial Physiological Phenomena", "biotic communities", "01 natural sciences", "631.4", "climatic changes", "Soil", "XXXXXX - Unknown", "Climate change", "14. Life underwater", "species richness", "bacteria", "Ecosystem", "Plant Physiological Phenomena", "Soil Microbiology", "biodiversity", "580", "2. Zero hunger", "species diversity", "Bacteria", "Protist", "2417.13 Ecolog\u00eda Vegetal", "nutrient cycles", "environmental filtering", "Biodiversity", "15. Life on land", "[SDV] Life Sciences [q-bio]", "climate change", "13. Climate action", "ecosystem functioning", "[SDE]Environmental Sciences", "Ecosystem functioning", "2511.02 Biolog\u00eda de Suelos", "protist", "Environmental filtering", "Species richness"]}, "links": [{"href": "https://onlinelibrary.wiley.com/doi/pdf/10.1111/gcb.14440"}, {"href": "https://doi.org/2893251307"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Global%20Change%20Biology", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "2893251307", "name": "item", "description": "2893251307", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/2893251307"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2018-10-09T00:00:00Z"}}, {"id": "PMC11877630", "type": "Feature", "geometry": null, "properties": {"license": "Open Access", "updated": "2026-09-20T16:24:21Z", "type": "Journal Article", "created": "2025-03-11", "title": "Higher Plant Diversity Does Not Moderate the Influence of Changing Rainfall Regimes on Plant\u2013Soil Feedback of a Semi\u2010Arid Grassland", "description": "ABSTRACT<p>Climate change is expected to increase the frequency of severe droughts, but it remains unclear whether soil biotic conditioning by plant communities with varying species richness or functional group diversity moderate plant\uffe2\uff80\uff93soil feedback (PSF)\uffe2\uff80\uff94an important ecosystem process driving plant community dynamics\uffe2\uff80\uff94under altered rainfall regimes. We conducted a two\uffe2\uff80\uff90phase PSF experiment to test how plant diversity affects biotic PSF under different rainfall regimes. In Phase 1, we set up mesocosms with 15 plant assemblages composed of two grasses, two forbs and two nitrogen\uffe2\uff80\uff90fixing legumes [one, two, three, or six species from one, two, or three functional group(s)] common to the semi\uffe2\uff80\uff90arid eastern Eurasian Steppe. Mesocosms were subjected to two rainfall amounts (ambient, 50% reduction) crossed with two frequencies (ambient, 50% reduction) for a growing season (~3\uffe2\uff80\uff89months). Conditioned soil from each mesocosm was then used in Phase 2 to inoculate (7% v/v) sterilised mesocosms planted with the same species as in Phase 1 and grown for 8\uffe2\uff80\uff89weeks. Simultaneously, the same plant assemblages were grown in sterilised soil to calculate PSF based on plant biomass measured at the end of Phase 2. Feedback effects differed amongst plant assemblages, but were not significantly altered by reduced rainfall treatments within any plant assemblage. This suggests that the examined interactions between plant and soil microbial communities were resistant to simulated rainfall reductions and that increasing plant diversity did not moderate PSF under altered rainfall regimes. Moreover, increasing plant species richness or functional group diversity did not lessen the magnitude of PSF differences between ambient and reduced rainfall treatments. Collectively, these findings advance our understanding of plant diversity's potential to mitigate climate change effects on PSF, showing that in semi\uffe2\uff80\uff90arid grasslands, higher plant diversity may not moderate PSF responses to altered rainfall regimes and highlighting the importance of considering species\uffe2\uff80\uff90specific traits and interaction stability.</p", "keywords": ["580", "570", "plant-soil feedback", "Rain", "Climate Change", "Soil Science", "drought", "Biodiversity", "Plants", "Markvetenskap", "plant functional groups", "Grassland", "plant\u2013soil feedback", "Soil", "climate change", "plant\u2013soil (below-ground) interactions", "Biomass", "species richness", "Research Article"]}, "links": [{"href": "https://doi.org/PMC11877630"}, {"rel": "related", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/Global%20Change%20Biology", "name": "related record", "description": "related record", "type": "application/json"}, {"rel": "self", "type": "application/geo+json", "title": "PMC11877630", "name": "item", "description": "PMC11877630", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/PMC11877630"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"date": "2025-03-01T00:00:00Z"}}, {"id": "761b42e3-7c12-492e-a5d0-d6fff07dd8b7", "type": "Feature", "geometry": {"type": "Polygon", "coordinates": [[[-17.3, -34.6], [-17.3, 38.2], [51.1, 38.2], [51.1, -34.6], [-17.3, -34.6]]]}, "properties": {"themes": [{"concepts": [{"id": "climatologyMeteorologyAtmosphere"}], "scheme": "https://standards.iso.org/iso/19139/resources/gmxCodelists.xml#MD_TopicCategoryCode"}], "updated": "2023-01-31T09:03:32", "created": "2014-06-01T00:00:00", "language": "eng", "title": "Biophysical Field Collected Data - ClimAfrica WP6", "description": "The database includes a set of field collected biophysical parameters in a wide range of Sub-Saharan African agroecosystems. The main parameters include:\n\n\u00b7 Current and past land use category, with approximate date of change (if any);\n\n\u00b7 Main climatic parameters, obtained from the closest weather station;\n\n\u00b7 Type of underlying bedrock;\n\n\u00b7 A set of topographical variables: altitude, slope, aspect, macrotopography and microtopography;\n\n\u00b7 General fertilization information (if any);\n\n\u00b7 General grazing management (if any);\n\n\u00b7 General crop management (sown species, rotation, irrigation, etc.);\n\n\u00b7 Soil data (including texture, bulk density, C, N, P, pH, CEC, etc);\n\n\u00b7 Vegetation biomass;\n\n\u00b7 Vascular species richness.\n\nSampling plots and boundaries of study areas are available as digital maps in the \"Distribution\" section of this metadata.\n\nThis set of data has been produced in the framework of the \"Climate change predictions in Sub-Saharan Africa: impacts  and adaptations  (ClimAfrica)\" project, Work Package 6 (WP6). For more information on the following work packages produced, please contact the data originator indicated in the Point of contacts section of this metadata.\n\n\u2022\tProject Deliverable D6.1 - Catalogue of selected watersheds for the case studies. \n\n\u2022\tProject Deliverable D6.2 - Reports on site characteristics of the model areas using a standardized format.\n\n\u2022\tProject Deliverable D6.3 - Database of relevant eddy covariance measurements from the available CarboAfrica (FP6 project) flux sites to be delivered to WP1 and WP2 for model development.\n\n\u2022\tProject Deliverable D6.4 - High spatial and temporal resolution time series combining high and medium spatial resolution satellite data for assimilation and phenological modelling.", "formats": [{"name": "WWW:DOWNLOAD-1.0-http--download"}, {"name": "WWW:LINK-1.0-http--link"}], "keywords": ["field data", "biophysical data", "soil", "plant species richness", "vegetation biomass", "carbon", "WP6", "ClimAfrica", "Tag_climafrica", "Africa", "Burkina Faso", "Congo", "Ghana", "Kenya", "Malawi", "Sudan", "Togo"], "contacts": [{"name": "Teresa Sebastia", "organization": "Centre Tecnologic Forestal de Catalunya (CTFC)", "position": "ClimAfrica WP6 Coordinator", "roles": ["originator"], "phones": [{"value": null}], "emails": [{"value": "teresa.sebastia@ctfc.es"}], "addresses": [{"deliveryPoint": [null], "city": null, "administrativeArea": null, "postalCode": null, "country": "Spain"}], "links": [{"href": null}]}, {"name": "Xavier de Lamo", "organization": "Centro Euro-Mediterraneo per i Cambiamenti Climatici (CMCC)", "position": null, "roles": ["pointOfContact"], "phones": [{"value": null}], "emails": [{"value": "xavier.delamon@cmcc.it"}], "addresses": [{"deliveryPoint": [null], "city": null, "administrativeArea": null, "postalCode": null, "country": null}], "links": [{"href": null}]}, {"organization": "Centre Tecnologic Forestal de Catalunya (CTFC)", "roles": ["creator"]}]}, "links": [{"href": "https://storage.googleapis.com/fao-maps-catalog-data/uuid/761b42e3-7c12-492e-a5d0-d6fff07dd8b7/resources/Sampling_Plots.zip", "description": "Sampling plots", "protocol": "WWW:DOWNLOAD-1.0-http--download", "rel": null}, {"href": "https://storage.googleapis.com/fao-maps-catalog-data/uuid/761b42e3-7c12-492e-a5d0-d6fff07dd8b7/resources/Study_Areas.zip", "description": "Boundaries of study areas", "protocol": "WWW:DOWNLOAD-1.0-http--download", "rel": null}, {"href": "https://storage.googleapis.com/fao-maps-catalog-data/uuid/761b42e3-7c12-492e-a5d0-d6fff07dd8b7/resources/WP6_Biophysical_Parameters_Description.xlsx", "description": "Biophysical Parameters Description", "protocol": "WWW:DOWNLOAD-1.0-http--download", "rel": null}, {"href": "https://www.fao.org/3/i7040e/i7040e.pdf", "name": "Scenarios of major production systems in Africa", "protocol": "WWW:LINK-1.0-http--link", "rel": null}, {"href": "https://www.cmcc.it/projects/climafrica-climate-change-predictions-in-sub-saharian-africa-impacts-and-adaptations", "name": "CLIMAFRICA \u2013 Climate change predictions in Sub-Saharan Africa: impacts and adaptations", "protocol": "WWW:LINK-1.0-http--link", "rel": null}, {"href": "https://storage.googleapis.com/fao-maps-catalog-data/uuid/761b42e3-7c12-492e-a5d0-d6fff07dd8b7/thumbnail/table_s.png", "name": "preview", "description": "Web image thumbnail (URL)", "protocol": "WWW:LINK-1.0-http--image-thumbnail", "rel": "preview"}, {"rel": "self", "type": "application/geo+json", "title": "761b42e3-7c12-492e-a5d0-d6fff07dd8b7", "name": "item", "description": "761b42e3-7c12-492e-a5d0-d6fff07dd8b7", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main/items/761b42e3-7c12-492e-a5d0-d6fff07dd8b7"}, {"rel": "collection", "type": "application/json", "title": "Collection", "name": "collection", "description": "Collection", "href": "https://repository.soilwise-he.eu/cat/collections/metadata:main"}], "time": {"interval": ["2011-01-01T00:00:00Z", "2014-12-31T00:00:00Z"]}}, {"id": "ca8720f4-4e36-43d6-a504-449a7a9e236d", "type": "Feature", "geometry": {"type": "Polygon", "coordinates": [[[-17.3, -34.6], [-17.3, 38.2], [51.1, 38.2], [51.1, -34.6], [-17.3, -34.6]]]}, "properties": {"themes": [{"concepts": [{"id": "economy"}], "scheme": "https://standards.iso.org/iso/19139/resources/gmxCodelists.xml#MD_TopicCategoryCode"}], "updated": "2023-01-31T09:04:32", "created": "2014-06-01T00:00:00", "language": "eng", "title": "Socio-Economic Field Collected Data - ClimAfrica WP6", "description": "The dataset includes a set of socio-economic field collected data in a wide range of Sub-Saharan African communities. The main parameters include:\n\n\u00b7 Historical climate events (description of main climatic events described by the surveyed communities);\n\n\u00b7 Mental models (conceptual understanding of climate change as perceived by local communities);\n\n\u00b7 Participatory risk mapping (main risks/hazards to livelihood perceived by local communities);\n\n\u00b7 Stakeholders analysis (identification of institutional structures that come into force under environmental stress);\n\n\u00b7 Household demographics;\n\n\u00b7 General household livelihood portfolio;\n\n\u00b7 Household vulnerability mapping (identification of main stressors at household level);\n\nThis set of data has been produced in the framework of the \"Climate change predictions in Sub-Saharan Africa: impacts  and adaptations  (ClimAfrica)\" project, Work Package 6 (WP6). For more information on the following work packages produced, please contact the data originator indicated in the Point of contacts section of this metadata.\n\n\u2022\tProject Deliverable D6.1 - Catalogue of selected watersheds for the case studies.\n \n\u2022\tProject Deliverable D6.2 - Reports on site characteristics of the model areas using a standardized format.\n\n\u2022\tProject Deliverable D6.3 - Database of relevant eddy covariance measurements from the available CarboAfrica (FP6 project) flux sites to be delivered to WP1 and WP2 for model development.\n\n\u2022\tProject Deliverable D6.4 - High spatial and temporal resolution time series combining high and medium spatial resolution satellite data for assimilation and phenological modelling.", "formats": [{"name": "GeoTiff"}, {"name": "WWW:DOWNLOAD-1.0-http--download"}, {"name": "WWW:LINK-1.0-http--link"}], "keywords": ["field data", "socio-economic data", "soil", "plant species richness", "vegetation biomass", "carbon", "WP6", "ClimAfrica", "Tag_climafrica", "Africa", "Burkina Faso", "Congo", "Ghana", "Kenya", "Malawi", "Sudan", "Togo"], "contacts": [{"name": "Teresa Sebastia", "organization": "Centre Tecnologic Forestal de Catalunya (CTFC)", "position": "ClimAfrica WP6 Coordinator", "roles": ["originator"], "phones": [{"value": null}], "emails": [{"value": "teresa.sebastia@ctfc.es"}], "addresses": [{"deliveryPoint": [null], "city": null, "administrativeArea": null, "postalCode": null, "country": "Spain"}], "links": [{"href": null}]}, {"name": "Xavier de Lamo", "organization": "Centro Euro-Mediterraneo per i Cambiamenti Climatici (CMCC)", "position": null, "roles": ["pointOfContact"], "phones": [{"value": null}], "emails": [{"value": "xavier.delamon@cmcc.it"}], "addresses": [{"deliveryPoint": [null], "city": null, "administrativeArea": null, "postalCode": null, "country": null}], "links": [{"href": null}]}, {"organization": "Centre Tecnologic Forestal de Catalunya (CTFC)", "roles": ["creator"]}]}, "links": [{"href": "https://storage.googleapis.com/fao-maps-catalog-data/uuid/ca8720f4-4e36-43d6-a504-449a7a9e236d/resources/Sampling_Plots.zip", "description": "Sampling plots", "protocol": "WWW:DOWNLOAD-1.0-http--download", "rel": null}, {"href": "https://storage.googleapis.com/fao-maps-catalog-data/uuid/ca8720f4-4e36-43d6-a504-449a7a9e236d/resources/Study_Areas.zip", "description": "Boundaries of study areas", "protocol": "WWW:DOWNLOAD-1.0-http--download", "rel": null}, {"href": "https://storage.googleapis.com/fao-maps-catalog-data/uuid/ca8720f4-4e36-43d6-a504-449a7a9e236d/resources/WP6_Biophysical_Parameters_Description.xlsx", "description": "Biophysical Parameters Description", "protocol": "WWW:DOWNLOAD-1.0-http--download", "rel": null}, {"href": "https://www.fao.org/3/i7040e/i7040e.pdf", "name": "Scenarios of major production systems in Africa", "protocol": "WWW:LINK-1.0-http--link", "rel": null}, {"href": "https://www.cmcc.it/projects/climafrica-climate-change-predictions-in-sub-saharian-africa-impacts-and-adaptations", "name": "CLIMAFRICA - 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