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April 15, 20260 citationsOpen Access

Mechanism of soil microbial mediated carbon sequestration in rice-crayfish co-culture systems

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姜L姜璐(Jiang Lu)

Key Points

  • To explore the microbial mechanisms involved in carbon sequestration within rice-crayfish co-culture systems compared to traditional monoculture.
  • Conducted paired soil sampling from long-term rice-crayfish co-culture and rice monoculture plots.
  • Analyzed microorganisms focusing on specialists and generalists with distinct carbon metabolic traits.
  • Assembled microbial genomes through metagenomic analysis.
  • Rice-crayfish co-culture significantly increased soil organic carbon storage compared to monoculture.
  • Identified key microbial species that contribute to enhanced carbon sequestration.
  • Uncovered distinct metabolic traits among microbial communities in co-culture systems.

Abstract

Against the backdrop of global climate change and carbon neutrality goals, agricultural soil carbon sequestration has become a critical pathway to mitigate greenhouse gas emissions. Rice-crayfish co-culture (RC), a core model of integrated rice-aquaculture, significantly enhances soil organic carbon (SOC) storage compared to traditional rice monoculture (RM), yet the underlying microbial mechanisms remain elusive. We conducted paired soil sampling across large-scale representative regions from long-term RC and RM plots, focusing on specialists and generalists with distinct niche breadths and carbon metabolic traits to decipher the key drivers of targeted carbon sequestration.By assembling genome through metagenome, we have obtained microorganisms that may play an important role.

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Cite This Study

姜璐(Jiang Lu) (2026) studied this question.

synapsesocial.com/papers/69df2b65e4eeef8a2a6b04eehttps://doi.org/10.26036/cnp0009316
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