Journal article

Resource Conservation Strategies For Rice-Wheat Cropping Systems On Partially Reclaimed Sodic Soils Of The Indo-Gangetic Region, And Their Effects On Soil Carbon

Abstract

The Indo¬タミGangetic plain is characterized by intensive agriculture, largely by resource¬タミpoor small and marginal farmers. Vast swathes of salt¬タミaffected areas in the region provide both challenges and opportunities to bolster food security and sequester carbon after reclamation. Sustainable management of reclaimed soils via resource conservation strategies, such as residue retention, is key to the prosperity of the farmer, as well as increases the efficiency of expensive initiatives to further reclaim sodic land areas, which currently lay barren. After five years of experimentation on resource conservation strategies for rice¬タミwheat systems on partially reclaimed sodic soils of the Indo¬タミGangetic region, we evaluated changes in different soil carbon pools and crop yield. Out of all resource conservation techniques which were tested, rice¬タミwheat crop residue addition (30% of total production) was most effective in increasing soil organic carbon (SOC). In rice, without crop residue addition (WCR), soils under zero¬タミtillage with transplanting, summer ploughing with transplanting and direct seeding with brown manuring showed a significant increase in SOC over the control (puddling in rice, conventional tillage in wheat). In these treatments relatively higher levels of carbon were attained in all aggregate fractions compared to the control. Soil aggregate sizes in meso (0.25¬タミ2.0¬タノmm) and macro (2¬タミ8¬タノmm) ranges increased, whereas micro (< 0.25¬タノmm) fractions decreased in soils under zero¬タミtill practices, both with and without crop residue addition. Direct seeding with brown manuring and zero tillage with transplanting also showed an increase of 135% and 95%, respectively, over the control in microbial biomass carbon, without crop residue incorporation. In zero tillage with transplanting treatment, both with and without crop residue showed significant increase in soil carbon sequestration potential. Though the changes in accrued soil carbon did not bring about significant differences in terms of grain yield, overall synthesis in terms of balance between yield and carbon sequestration indicated that summer ploughing with transplanting and zero tillage with transplanting sequestered significantly higher rates of carbon, yet yielded on par with conventional practices. These could be appropriate alternatives to immediately replace conventional tillage and planting practices for rice¬タミwheat cropping systems in the sodic soils of the Indo¬タミGangetic region.

Temporal

Created: 2015-08-19
Updated: 2026-07-13T16:20:25Z
Temporal extent: date

License: Closed Access

Language: Unknown
Updated: 2026-07-13