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Chinese Agricultural Science Bulletin ›› 2026, Vol. 42 ›› Issue (18): 77-85.doi: 10.11924/j.issn.1000-6850.casb2025-0646

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Research Progress on Carbon Sequestration Pathway of Paddy Soil Microorganisms

ZHANG Zongyang(), LIU Chunguang()   

  1. Engineering Research Center of Agricultural Microbiology Technology, Ministry of Education/ Heilongjiang Provincial Key Laboratory of Ecological Restoration and Resource Utilization for Cold Region/ Key Laboratory of Microbiology, College of Heilongjiang Province/ School of Life Sciences, Heilongjiang University, Harbin 150080
  • Received:2025-08-05 Revised:2025-12-11 Online:2026-09-25 Published:2026-09-24

Abstract:

Global warming is intensifying, and the concentrations of greenhouse gases released from soils into the atmosphere, such as methane (CH4), carbon dioxide (CO2), and nitrous oxide (N2O), are increasing, making the control of greenhouse gas emissions more important. Paddy soil, as a significant source and sink of greenhouse gases, plays a crucial role in the global carbon and nitrogen cycles; consequently, research on carbon sequestration and emission reduction in paddy soils has attracted widespread attention. To address the demand for greenhouse gas emission control under global warming and to clarify the key role of paddy-field soil in carbon and nitrogen cycling while providing references for its carbon sequestration and emission reduction, this review summarizes the classifications, mechanisms, and hazards of greenhouse gases associated with global warming, outlines the current status of research on carbon sequestration-related microbiology in paddy soils (including microbial fixation of CO2, oxidation of CH4, methane-oxidizing microorganisms, and their coupling with denitrification metabolism), and analyzes the achievements and gaps in the field. The main issues in current research are identified: (1) investigations into the community characteristics, sequestration potential, and driving factors of carbon-sequestering microorganisms in paddy soil are not sufficiently in-depth; (2) under new contexts such as climate change, the mechanisms by which soil microbiota respond to carbon sequestration remain unclear; (3) the effects of human agricultural practices on soil carbon-sequestering microorganisms require further investigation.

Key words: paddy soil, global warming, carbon sequestration, carbon-nitrogen coupling, soil microorganism

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