Soil carbon dynamics response to first-year reduced-till cover cropping: insight into heterotrophic respiration and net biome production

Cover cropping combined with reduced tillage is increasingly being adopted to enhance carbon sequestration. A better understanding of the short-term response and carbon dynamics associated with cover cropping is essential for reducing uncertainties during its initial adoption. This study quantified net biome production under reduced-tillage cover cropping system and compared it with conventional tillage, tillage without fertilizer, and no-till without fertilizer in Hokkaido, Japan. Heterotrophic respiration, labile carbon fractions, and their linkages with residue inputs were also assessed during the fallow (in the presence of cover crop) and the subsequent soybean phase in the first-year adoption. Our results revealed that cumulative heterotrophic respiration was higher under reduced-tillage cover cropping than under treatments with bare fallow during the fallow phase, whereas no treatment differences were observed during the soybean phase. Although cover cropping increased water-extractable organic carbon at seeding time, neither microbial biomass carbon nor labile carbon fractions differed among treatments. Heterotrophic respiration was negatively associated with labile organic carbon in deeper soil layers during the fallow phase, whereas no linkage was detected among residue inputs, labile carbon fractions, and heterotrophic respiration during soybean phase. Nevertheless, reduced-tillage cover cropping resulted in moderate soil temperature sensitivity of heterotrophic respiration and basal respiration, falling between those of conventional tillage and reduced-tillage without cover cropping. Overall, the implementation of reduced-tillage cover cropping increased net biome production to 0.85 Mg C ha−1 in the first-year, shifting the system from a carbon source to a carbon sink by replacing the bare fallow phase with an additional period of carbon assimilation.

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Publication Details

Journal
Soil Science & Plant Nutrition
Published
2026-09-01
DOI
https://doi.org/10.1080/00380768.2026.2718070
Primary Topic
Soil Carbon and Nitrogen Dynamics
Type
article
Field-Weighted Citation Impact
0.00

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article

Soil carbon dynamics response to first-year reduced-till cover cropping: insight into heterotrophic respiration and net biome production

Wen-Yu Tseng, Yo Toma, Toshiyuki Hirata, Bishal Subedi
Soil Science & Plant Nutrition
Soil Carbon and Nitrogen Dynamics
article

Soil carbon dynamics response to first-year reduced-till cover cropping: insight into heterotrophic respiration and net biome production

Wen-Yu Tseng, Yo Toma, Toshiyuki Hirata, Bishal Subedi
article en

Abstract

Cover cropping combined with reduced tillage is increasingly being adopted to enhance carbon sequestration. A better understanding of the short-term response and carbon dynamics associated with cover cropping is essential for reducing uncertainties during its initial adoption. This study quantified net biome production under reduced-tillage cover cropping system and compared it with conventional tillage, tillage without fertilizer, and no-till without fertilizer in Hokkaido, Japan. Heterotrophic respiration, labile carbon fractions, and their linkages with residue inputs were also assessed during the fallow (in the presence of cover crop) and the subsequent soybean phase in the first-year adoption. Our results revealed that cumulative heterotrophic respiration was higher under reduced-tillage cover cropping than under treatments with bare fallow during the fallow phase, whereas no treatment differences were observed during the soybean phase. Although cover cropping increased water-extractable organic carbon at seeding time, neither microbial biomass carbon nor labile carbon fractions differed among treatments. Heterotrophic respiration was negatively associated with labile organic carbon in deeper soil layers during the fallow phase, whereas no linkage was detected among residue inputs, labile carbon fractions, and heterotrophic respiration during soybean phase. Nevertheless, reduced-tillage cover cropping resulted in moderate soil temperature sensitivity of heterotrophic respiration and basal respiration, falling between those of conventional tillage and reduced-tillage without cover cropping. Overall, the implementation of reduced-tillage cover cropping increased net biome production to 0.85 Mg C ha−1 in the first-year, shifting the system from a carbon source to a carbon sink by replacing the bare fallow phase with an additional period of carbon assimilation.

Soil Science & Plant Nutrition
Hokkaido University (JP)
Bio-oriented Technology Research Advancement Institution
Openalex Percentile: Top 13%
Soil Carbon and Nitrogen Dynamics
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