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生态学杂志 ›› 2026, Vol. 45 ›› Issue (3): 803-812.doi: 10.13292/j.1000-4890.202603.013

• 研究报告 • 上一篇    下一篇

汾河湿地土壤细菌群落多样性及其构建机制

郭敏1,李晓慧1,李琪1,祝大伟1,杨惠婷2,栗丽1,谢钧宇1,李丽娜1*   

  1. 1山西农业大学资源环境学院, 山西太谷 030801; 2中煤财产保险股份有限公司, 太原 030006)

  • 出版日期:2026-03-10 发布日期:2026-09-01

Diversity and assembly mechanisms of bacterial community in the wetland soil of Fenhe River.

GUO Min1, LI Xiaohui1, LI Qi1, ZHU Dawei1, YANG Huiting2, LI Li1, XIE Junyu1, LI Lina1*   

  1. (1College of Resource and Environment, Shanxi Agricultural University, Taigu 030801, Shanxi, China; 2China Coal Insurance Co., Ltd., Taiyuan 030006, China).

  • Online:2026-03-10 Published:2026-09-01

摘要: 河流生态系统中细菌群落演替具有明显的生境依赖性。本文以汾河干流湿地土壤为研究对象,解析了汾河不同区域内湿地土壤细菌群落的演替特征、潜在生态功能、共发生网络及群落构建机制。结果表明:汾河中上游湿地土壤的细菌丰度和α-多样性指数明显高于下游(P<0.05)。细菌群落主要由变形菌门(Proteobacteria)、厚壁菌门(Firmicutes)和放线菌门(Actinobacteria)等类群组成,可广泛参与湿地土壤中碳、氮、硫以及变价金属铁锰等元素的生物地球化学循环过程。不同区域湿地土壤细菌的群落组成及潜在功能呈明显的距离衰减特征(P<0.01)。汾河湿地土壤中细菌群落的演替主要受随机过程的调控,尤其是中游区域;中游湿地土壤各细菌类群间的联系较为松散,而上游和下游湿地土壤细菌群落共发生网络的复杂性和稳定性随着确定性过程的增强而提高。整体上,汾河湿地土壤中细菌群落多样性及共发生网络存在明显的空间异质性,且其群落构建过程主要受随机过程调控。


关键词: 河流生态系统, 细菌群落, 潜在功能, 共发生网络, 演替特征

Abstract: Bacterial community succession in river ecosystems exhibits obvious habitat dependence. In this study, we examined the succession characteristics, potential ecological function, co-occurrence network, and assembly mechanisms of bacterial community in different reaches of the Fenhe River main stream. The results showed that bacterial abundance and  α-diversity in the upper and middle reaches were significantly higher than those in the lower reaches (P<0.05). Phyla of Proteobacteria, Firmicutes and Actinobacteria were dominant, which could be widely involved in the biogeochemical cycles of diverse elements in the wetland soil, such as carbon, nitrogen, sulfur and variable-valence metals (iron and manganese). Bacterial community composition and potential functions exhibited significant distance-decay patterns across different regions (P<0.01). Stochastic processes dominated bacterial community assembly, particularly in the middle reaches. Connections among bacterial taxa in the middle reaches were relatively weak, whereas the complexity and stability of co-occurrence networks in the upper and lower reaches increased with the enhancement of deterministic processes. In general, the diversity and co-occurrence network of bacterial community showed obvious spatial heterogeneity in the wetland soil of Fenhe River, which was mainly regulated by stochastic processes.


Key words: river ecosystem, bacterial community, potential function, co-occurrence network, succession characteristics