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在酸性矿山排水影响的河流生态系统中,原核共生网络和群落组装机制存在强烈的演替。

Strong succession in prokaryotic association networks and community assembly mechanisms in an acid mine drainage-impacted riverine ecosystem.

机构信息

Institute of Ecological Science and Guangdong Provincial Key Laboratory of Biotechnology for Plant Development, School of Life Sciences, South China Normal University, Guangzhou 510631, China.

Institute of Ecological Science and Guangdong Provincial Key Laboratory of Biotechnology for Plant Development, School of Life Sciences, South China Normal University, Guangzhou 510631, China.

出版信息

Water Res. 2023 Sep 1;243:120343. doi: 10.1016/j.watres.2023.120343. Epub 2023 Jul 12.

Abstract

Acid mine drainage (AMD) serves as an ideal model system for investigating microbial ecology, interaction, and assembly mechanism in natural environments. While previous studies have explored the structure and function of microbial communities in AMD, the succession patterns of microbial association networks and underlying assembly mechanisms during natural attenuation processes remain elusive. Here, we investigated prokaryotic microbial diversity and community assembly along an AMD-impacted river, from the extremely acidic, heavily polluted headwaters to the nearly neutral downstream sites. Microbial diversity was increased along the river, and microbial community composition shifted from acidophile-dominated to freshwater taxa-dominated communities. The complexity and relative modularity of the microbial networks were also increased, indicating greater network stability during succession. Deterministic processes, including abiotic selection of pH and high contents of sulfur and iron, governed community assembly in the headwaters. Although the stochasticity ratio was increased downstream, manganese content, microbial negative cohesion, and relative modularity played important roles in shaping microbial community structure. Overall, this study provides valuable insights into the ecological processes that govern microbial community succession in AMD-impacted riverine ecosystems. These findings have important implications for in-situ remediation of AMD contamination.

摘要

酸性矿山排水 (AMD) 是研究自然环境中微生物生态、相互作用和组装机制的理想模型系统。虽然先前的研究已经探索了 AMD 中微生物群落的结构和功能,但微生物关联网络的演替模式和自然衰减过程中的潜在组装机制仍不清楚。在这里,我们从极度酸性、污染严重的源头到近中性的下游地点,调查了 AMD 影响的河流中细菌微生物的多样性和群落组装。微生物多样性沿河流增加,微生物群落组成从嗜酸菌为主转变为淡水分类群为主。微生物网络的复杂性和相对模块性也增加了,表明在演替过程中网络稳定性更高。在源头,包括 pH 值和高含量硫和铁的非生物选择等确定性过程主导着群落组装。尽管下游的随机性比率增加,但锰含量、微生物负内聚性和相对模块性在塑造微生物群落结构方面发挥了重要作用。总的来说,这项研究为 AMD 影响的河流生态系统中微生物群落演替的生态过程提供了有价值的见解。这些发现对 AMD 污染的原位修复具有重要意义。

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