Compaction shapes CO2 emission contrasts in sloping farmland: Erosion-deposition zones respond via soil structure and microbiome
文献类型: 外文期刊
作者: Huizhou Gao;Mengni Zhang;Xiaojun Song;Zixuan Han;Angyuan Jia;Qiqi Gao;Shanshan Nan;Shengping Li;Xueping Wu
作者机构:
关键词: Agricultural sustainability;Carbon mineralization;Microbial community dynamics;Soil degradation;Soil structure alteration
期刊名称: Applied Soil Ecology
ISSN: 0929-1393
年卷期: 2025 年 212 卷
页码:
收录情况: SCIE(2025版)
摘要: Mechanical compaction and water-induced soil erosion are critical factors influencing soil carbon cycling, particularly on sloped agricultural land. However, their combined effects on soil physicochemical properties, microbial community composition, and CO2 emissions remain insufficiently understood. This study examined the interactive effects of three levels of mechanical compaction—no pressure (NP), low pressure (LP), and high pressure (HP)—at both depositional and erosional sites. The results revealed that compaction and erosion significantly altered soil structure, microbial communities (assessed using the PLFA method), and CO2 influxes. HP reduced soil porosity and aggregate stability, intensifying soil degradation at erosional sites while leading to organic carbon accumulation at depositional sites. Changes in microbial communities were evident, with shift in bacterial-to-fungal ratios depending on site conditions. Increased CO2 emissions at erosional sites were associated with soil structure collapse, whereas enhanced specific surface area at depositional sites contributed to lower emissions. Given that erosional areas generally exceed depositional ones on slopes, compaction-induced erosion led to an overall increase in CO2 emissions, as emissions increased in eroded areas but decreased in depositional zones. This study elucidates the mechanisms by which compaction erosion zones and depositional zones induce different CO2 emissions. In conclusion, the findings highlight the critical role of compaction and erosion in driving carbon cycling on sloped agricultural land. To mitigate CO2 emissions and enhance soil carbon storage, targeted management strategies should focus on reducing soil compaction and preventing erosion, especially in areas prone to degradation.
分类号:
- 相关文献
作者其他论文 更多>>
-
Enhancing soil ecological stoichiometry and orchard yield through ground cover management: A meta-analysis across China
作者:Weiting Ding;Huizhou Gao;Zhidong Qi;Liangjie Sun;Chengwei Zheng;Jinsong Huang;Vilim Filipović;Hailong He
关键词:Ground cover management;Meta-analysis;Orchard yield;Soil stoichiometry
-
Conservation tillage enhances both organic and inorganic carbon in dryland: Insights from a 20-year field experiment and meta-analysis
作者:Weiting Ding;Liangjie Sun;Zhidong Qi;Shengping Li;Vilim Filipović;Xueping Wu;Hailong He
关键词:Carbon sequestration;Conservation agriculture;Dryland agriculture;Microbially induced carbonate precipitation;Soil inorganic carbon;Soil organic carbon
-
Conservation agriculture boosts topsoil organic matter by restoring free lipids and lignin phenols biomarkers in distinct fractions
作者:Qiqi Gao;Lihong Wang;Yunying Fang;Yue Gao;Lixiao Ma;Xiao Wang;Yuyi Li;Xueping Wu;Zhangliu Du
关键词:Conservation agriculture;Free lipids;Lignin phenols;Mineral-associated organic matter;Particulate organic matter
-
Long-Term Conservation Tillage Increases Soil Organic Carbon Stability by Modulating Microbial Nutrient Limitations and Aggregate Protection
作者:Zixuan Han;Xueping Wu;Huizhou Gao;Angyuan Jia;Qiqi Gao
关键词:aggregate stability;microbial nutrient limitation;priming effect;soil enzyme;soil organic carbon
-
Conservation farming prefers restoring plant lignin and microbial necromass in the particulate to mineral-associated organic matter
作者:Lixiao Ma;Yunying Fang;Lihong Wang;Ziwei Jiao;Xiao Wang;Xiaoying Jin;Qiqi Gao;Yuyi Li;Zhangliu Du
关键词:conservation tillage;free lipids;lignin phenols;microbial necromass;particulate organic matter
-
Conservation Tillage Increases Carbon Storage by Regulating Mineral-Mediated Aggregate Stability and Carbon Chemistry
作者:Zixuan Han;Aurore Degré;Shengping Li;Xiaojun Song;Huizhou Gao;Angyuan Jia;Qiqi Gao;Xueping Wu;Aizhen Liang
关键词:aggregates;carbon functional groups;conservation tillage;minerals;soil organic carbon
-
Investigation of the Migration of Antibiotic Resistance Genes in Soil–Millet System
作者:Zhiping Liu;Ziyuan Guo;Zongyi Wang;Jin Hua;Wenyan Xie;Zhenxing Yang;Liyan He;Xueping Wu;Deli Chen;Huaiping Zhou
关键词:ARGs;MGEs;migration;millet tissues;soil