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生态学杂志 ›› 2025, Vol. 44 ›› Issue (7): 2383-2398.doi: 10.13292/j.1000-4890.202507.011

• 综合评述 • 上一篇    下一篇

苔藓植物共生微生物固氮作用及其生态效应研究进展

李伊1,向兴2,沈佳恒3,杨欢1,4*
  

  1. 1中国地质大学(武汉)地理与信息工程学院, 流域关键带演化湖北省重点实验室, 武汉 430078; 2上饶师范学院生命科学学院, 江西上饶 334001; 3北京大学地球与空间科学学院, 北京 100871; 4中国地质大学(武汉)地质微生物与环境全国重点实验室, 武汉 430078)

  • 出版日期:2025-07-10 发布日期:2025-07-15

A review on nitrogen fixation by symbiotic microorganisms in bryophytes and its ecological impacts.

LI Yi1, XIANG Xing2, SHEN Jiaheng3, YANG Huan1,4*   

  1. (1China University of Geosciences, School of Geography and Information Engineering, Hubei Key Laboratory of Critical Zone Evolution, Wuhan 430078, China; 2College of Science, Shangrao Normal University, Shangrao 334001, Jiangxi, China; 3School of Earth and Space Sciences, Peking University, Beijing 100871, China; 4State Key Laboratory of Geomicrobiology and Environmental Changes, China University of Geosciences, Wuhan 430078, China).

  • Online:2025-07-10 Published:2025-07-15

摘要: 苔藓植物是植物演化中的重要一环,也是参与陆地生态系统中碳、氮循环的重要角色,并对环境变化具有较为敏感的响应。苔藓-微生物共生体的固氮作用为陆地生态系统氮循环和碳循环均提供了新的研究视角,尤其在作为全球陆地重要碳库之一的泥炭地中,泥炭藓-微生物共生体的固氮功能对泥炭地生态系统的储碳、氮循环都具有重要的生态学意义。本文总结了与苔藓植物共生的主要微生物类别、示踪共生微生物固氮作用的手段方法以及苔藓-微生物共生体固氮作用的环境影响因素及生态功能,并重点介绍了泥炭藓-微生物固氮作用对泥炭地生态系统的作用和影响。未来的研究应更聚焦于深入了解苔藓植物及其共生固氮微生物之间的关系、相互影响、共同演化的机制,查明不同固氮微生物对苔藓植物固氮的贡献量,建立多指标体系示踪苔藓植物中占主导地位的固氮微生物及其固氮作用,并进一步深入认识苔藓-微生物共生体固氮功能与环境之间的相互作用。


关键词: 苔藓, 微生物固氮作用, 碳汇, 影响因素, 泥炭地

Abstract:

As a milestone in plant evolution, bryophytes play a crucial role in carbon and nitrogen cycling in terrestrial ecosystems, and are sensitive to environmental changes. Nitrogen fixation by bryophyte-microbial symbionts shed new light on nitrogen and carbon cycles in terrestrial ecosystems. The nitrogen fixation process by sphagnum-microbial symbionts is particularly important in peatland ecosystems, which are one of the largest terrestrial carbon pools. We summarized microbial taxa symbiotic with bryophytes and the methods tracing the nitrogen fixation of symbiotic microorganisms. We focused on sphagnum-microbial nitrogen fixation in peatland ecosystems and discussed factors affecting nitrogen fixation by bryophyte-microbial symbioses as well as their ecological functions. Future studies should investigate the relationships, interactions, and co-evolutionary mechanisms between bryophytes and their symbiotic nitrogen-fixing microorganisms. Developing multiple proxies is also necessary to identify the identity and function of microorganisms fixing nitrogen in bryophytes. Additionally, the interaction between environment and nitrogen-fixing functions of the bryophyte-microbial symbioses should be explored as well.


Key words: bryophyte, microbial nitrogen fixation, carbon sink, influencing factor, peatland