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中国农学通报 ›› 2026, Vol. 42 ›› Issue (11): 202-210.doi: 10.11924/j.issn.1000-6850.casb2025-0756

• 水产/渔业 • 上一篇    下一篇

微生物介导的甲烷氧化研究进展及其在水产养殖中的展望

张宏飞1,2(), 徐慧敏2(), 李丹丹2, 陆尚明3, 方龙香2, 刘祝萍2, 杨振3, 高宇航2, 张莉3, 宋超2, 孟顺龙1,2()   

  1. 1 南京农业大学无锡渔业学院, 江苏无锡 214128
    2 中国水产科学研究院淡水渔业研究中心/农业部水产品质量安全环境因子风险评估实验室, 江苏无锡 214081
    3 江苏省渔业技术推广中心, 南京 210036
  • 收稿日期:2025-09-02 修回日期:2026-02-23 出版日期:2026-06-12 发布日期:2026-06-12
  • 通讯作者:
    徐慧敏,女,1993年出生,江苏兴化人,助理研究员,博士,研究方向:水域微生物生态学。通信地址:214128 江苏省无锡市滨湖区薛家里69号 南京农业大学无锡渔业学院,E-mail:
    孟顺龙,男,1982年出生,安徽颍上人,研究员,博士生导师,博士,研究方向:渔业环境保护、水产健康养殖等。通信地址:214128 江苏省无锡市滨湖区薛家里69号 南京农业大学无锡渔业学院,E-mail:
  • 作者简介:

    张宏飞,男,2001年出生,山西晋中人,研究生,研究方向:渔业环境保护。通信地址:214128 江苏省无锡市滨湖区薛家里69号 南京农业大学无锡渔业学院,E-mail:

  • 基金资助:
    国家自然科学基金项目“养殖池塘的反硝化厌氧甲烷氧化过程及其微生物机理研究”(32301342); 中国水产科学研究院中央级公益性科研院所基本科研业务费专项资金资助“长江渔业生态环境监测与修复创新团队项目”(2023TD18)

Research Progress on Microbial-Mediated Methane Oxidation and Its Prospects in Aquaculture

ZHANG Hongfei1,2(), XU Huimin2(), LI Dandan2, LU Shangming3, FANG Longxiang2, LIU Zhuping2, YANG Zhen3, GAO Yuhang2, ZHANG Li3, SONG Chao2, MENG Shunlong1,2()   

  1. 1 Wuxi Fisheries College, Nanjing Agricultural University, Wuxi, Jiangsu 214128
    2 Freshwater Fisheries Research Center, Chinese Academy of Fishery Sciences/Risk Assessment Laboratory for Environmental Factors of Aquatic Product Quality and Safety, Ministry of Agriculture and Rural Affairs, Wuxi, Jiangsu 214081
    3 Jiangsu Province Fisheries Technology Promotion Center, Nanjing 210036
  • Received:2025-09-02 Revised:2026-02-23 Published:2026-06-12 Online:2026-06-12

摘要:

甲烷(CH4)作为重要的温室气体,其大量排放是导致全球气候变暖的关键因素之一。因此,甲烷减排对缓解温室效应具有重要意义。养殖池塘作为典型的浅水生态系统,是易被忽视的甲烷排放源。池塘沉积物富含外源有机质,通过微生物介导的碳氮循环耦合作用,成为碳氮生物地球化学循环的关键区域。然而,目前关于养殖池塘中微生物驱动的甲烷氧化过程及其调控机制仍缺乏系统认知。本研究系统综述了好氧甲烷氧化及厌氧甲烷氧化的研究进展,重点阐述了甲烷氧化微生物的群落组成、代谢机制、生态分布特征及其环境影响因素,归纳了甲烷氧化潜在速率的测定方法。在此基础上,针对养殖池塘生态系统的特殊性,提出了该领域未来研究的重点方向,旨在为水产养殖业的甲烷减排和绿色可持续发展提供科学依据。

关键词: 好氧甲烷氧化, 厌氧甲烷氧化, 室内培养, 养殖池塘

Abstract:

As an important greenhouse gas, methane (CH4) emission contributes significantly to global warming, and methane emission reduction is important for mitigating the greenhouse effect. The aquaculture pond, as a typical shallow water ecosystem, is an easily overlooked source of methane emission. Pond sediments are rich in exogenous organic matter, which is the key area for carbon and nitrogen biogeochemical cycling through microbially mediated carbon and nitrogen cycle coupling. However, there is still a lack of systematic knowledge about microbially driven methane oxidation processes and their regulatory mechanisms in aquaculture ponds. This paper systematically reviewed the research progress of aerobic and anaerobic methane oxidation, focused on the community composition, metabolic mechanism, ecological distribution characteristics of methane-oxidizing microorganisms and their environmental influences, and summarized the methods for determining the potential rate of methane oxidation. On this basis, the key directions for future research in this field are proposed in view of the special characteristics of aquaculture pond ecosystems, aiming to provide scientific basis for methane emission reduction and green sustainable development in aquaculture.

Key words: aerobic methane oxidation, anaerobic methane oxidation, indoor incubation, aquaculture ponds

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