<rdf:RDF xmlns:dc="http://purl.org/dc/elements/1.1/" xmlns:dct="http://purl.org/dc/terms/" xmlns:rdf="http://www.w3.org/1999/02/22-rdf-syntax-ns#">
  <rdf:Description rdf:about="https://doi.org/10.1016/j.envpol.2005.08.017">
    <dct:isReferencedBy>IMPACT4SOIL</dct:isReferencedBy>
    <dct:isReferencedBy>OpenAire</dct:isReferencedBy>
    <dct:isReferencedBy>Crossref</dct:isReferencedBy>
    <dct:isReferencedBy>Microsoft Academic Graph</dct:isReferencedBy>
    <dct:isReferencedBy>Europe PubMed Central</dct:isReferencedBy>
    <dct:isPartOf>Environmental Pollution</dct:isPartOf>
    <dct:license>Closed Access</dct:license>
    <dct:created>2005-10-03</dct:created>
    <dc:description>Separate effects of ammonium (NH4+) and nitrate (NO3-) on boreal forest understorey vegetation were investigated in an experiment where 12.5 and 50.0 kg nitrogen (N) ha(-1) year(-1) was added to 2 m2 sized plots during 4 years. The dwarf-shrubs dominating the plant community, Vaccinium myrtillus and V. vitis-idaea, took up little of the added N independent of the chemical form, and their growth did not respond to the N treatments. The grass Deschampsia flexuosa increased from the N additions and most so in response to NO3-. Bryophytes took up predominately NH4+ and there was a negative correlation between moss N concentration and abundance. Plant pathogenic fungi increased from the N additions, but showed no differences in response to the two N forms. Because the relative contribution of NH4+ and NO3- to the total N deposition on a regional scale can vary substantially, the N load a habitat can sustain without substantial changes in the biota should be set considering specific vegetation responses to the predominant N form in deposition.</dc:description>
    <dc:subject>Sweden</dc:subject>
    <dc:subject>0106 biological sciences</dc:subject>
    <dc:subject>Air Pollutants</dc:subject>
    <dc:subject>Nitrogen</dc:subject>
    <dc:subject>Fungi</dc:subject>
    <dc:subject>Plant Development</dc:subject>
    <dc:subject>Bryophyta</dc:subject>
    <dc:subject>Plants</dc:subject>
    <dc:subject>15. Life on land</dc:subject>
    <dc:subject>01 natural sciences</dc:subject>
    <dc:subject>Trees</dc:subject>
    <dc:subject>Quaternary Ammonium Compounds</dc:subject>
    <dc:subject>Biomass</dc:subject>
    <dc:subject>Ecosystem</dc:subject>
    <dc:subject>Environmental Monitoring</dc:subject>
    <dc:subject>0105 earth and related environmental sciences</dc:subject>
    <dc:creator>Joachim Strengbom, Annika Nordin, Lars Ericson, </dc:creator>
    <dc:date>2006-05-01</dc:date>
    <dc:type>journalpaper</dc:type>
    <dct:abstract>Separate effects of ammonium (NH4+) and nitrate (NO3-) on boreal forest understorey vegetation were investigated in an experiment where 12.5 and 50.0 kg nitrogen (N) ha(-1) year(-1) was added to 2 m2 sized plots during 4 years. The dwarf-shrubs dominating the plant community, Vaccinium myrtillus and V. vitis-idaea, took up little of the added N independent of the chemical form, and their growth did not respond to the N treatments. The grass Deschampsia flexuosa increased from the N additions and most so in response to NO3-. Bryophytes took up predominately NH4+ and there was a negative correlation between moss N concentration and abundance. Plant pathogenic fungi increased from the N additions, but showed no differences in response to the two N forms. Because the relative contribution of NH4+ and NO3- to the total N deposition on a regional scale can vary substantially, the N load a habitat can sustain without substantial changes in the biota should be set considering specific vegetation responses to the predominant N form in deposition.</dct:abstract>
    <dc:title>Responses To Ammonium And Nitrate Additions By Boreal Plants And Their Natural Enemies</dc:title>
    <dc:identifier>10.1016/j.envpol.2005.08.017</dc:identifier>
    <dct:references>https://doi.org/10.1016/j.envpol.2005.08.017</dct:references>
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