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生态学杂志 ›› 2026, Vol. 45 ›› Issue (2): 627-635.doi: 10.13292/j.1000-4890.202602.036

• 综合评述 • 上一篇    下一篇

关于微生物残体来源碳转化过程和机制的思考

李向祎1,3,郑甜甜2,3*,王星源2,周莺2,3,任梓旭2,鲍雪莲3,张阳2,梁超1,3   

  1. 1辽宁大学生命科学院, 沈阳 110036; 2沈阳师范大学生命科学院, 沈阳 110034; 3中国科学院沈阳应用生态研究所, 沈阳 110016)
  • 出版日期:2026-02-10 发布日期:2026-08-01

Reflections on the process and mechanism of microbial derived carbon turnover.

LI Xiangyi1,3, ZHENG Tiantian2,3*, WANG Xingyuan2, ZHOU Ying2,3, REN Zixu2, BAO Xuelian3, ZHANG Yang2, LIANG Chao1,3   

  1. (1College of Life Sciences, Liaoning University, Shenyang 110036, China; 2College of Life Sciences, Shenyang Normal University, Shenyang 110034, China; 3Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang 110016, China).

  • Online:2026-02-10 Published:2026-08-01

摘要: 微生物残体是土壤有机碳库的重要组分。土壤“微生物碳泵”概念的提出强调了微生物残体在土壤中的周转及在土壤碳积累过程中的重要作用。因此,深入探究微生物残体来源碳的周转过程及其内在机制有助于理解土壤有机碳的形成和转化机制。本文综述了近年来关于细菌与真菌残体来源碳周转的研究进展,并探讨细菌和真菌自身的化学特性、细胞大小(内部因素)及土壤的生物、非生物因素(外部因素)对微生物残体来源碳在土壤中周转过程的影响。细菌和真菌残体因自身组成成分差异的内部因素以及气候等外部因素可能会通过调控微生物的活性和代谢能力而影响微生物残体的周转过程。本文分析了未来潜在的研究方向与可能面临的挑战,强调了在深入研究微生物来源碳周转过程机制的基础上,结合气候因子和实际应用需求导向,在关联微生物生长效率及化学组成对微生物残体来源碳周转影响的同时,关注土壤矿物保护作用,进一步揭示微生物残体碳对土壤碳的贡献与稳定机制,促进土壤的绿色可持续发展。


关键词: 土壤有机碳, 微生物碳泵, 微生物残体碳, 土壤微生物, 矿物保护

Abstract: Microbial necromass is an important component of the stable organic carbon pool in soil. The proposal of the soil “microbial carbon pump” concept has further emphasized the significance of microbial necromass turnover in soils and its critical role in soil carbon accumulation. Therefore, the exploration of the turnover process and underlying mechanism of carbon derived from microbial necromass is helpful to understanding the formation and transformation mechanism of soil organic carbon. Here, we review the research progress on the turnover of carbon derived from bacterial and fungal necromass, and discuss the influence of the chemical characteristics and cell size of bacteria and fungi and the biological and abiotic factors of the soil on the turnover of microbial necromass derived carbon. We proposed that the internal factors such as differences in the composition of bacterial and fungal necromass and the external factors such as climatic factors may affect the turnover process of microbial necromass carbon by regulating the activity and metabolic capacity of microorganisms. Furthermore, we identify the potential research directions and challenges in the future, emphasizing that the importance of studying of the mechanism of the microbial derived carbon turnover process, integrating climate factors and practical application requirements, while correlating the growth efficiency and chemical composition of microorganisms with the impact on the turnover of microbial necromass carbon. It is crucial to pay attention to the protection function of soil minerals, further elucidate the contribution and stabilization mechanism of microbial necromass carbon to soil carbon, promoting the green and sustainable development of soil health.


Key words: soil organic carbon, microbial carbon pump, microbial necromass carbon, soil microorganism, mineral protection