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生态位中性平衡机制可驱动微生物群落的组装。

Mechanisms of niche-neutrality balancing can drive the assembling of microbial community.

作者信息

Wang Lixiao, Han Maozhen, Li Xi, Yu Bingbing, Wang Huading, Ginawi Amjed, Ning Kang, Yan Yunjun

机构信息

Key Laboratory of Molecular Biophysics of the Ministry of Education, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, China.

出版信息

Mol Ecol. 2021 Mar;30(6):1492-1504. doi: 10.1111/mec.15825. Epub 2021 Feb 12.

Abstract

One hotspot of present community ecology is to uncover the mechanisms of community succession. In this study, two popular concepts, niche-neutrality dynamic balancing and co-occurrence network analysis, were integrated to investigate the dispersal dynamics of microbial communities in a freshwater river continuum in subtropical China. Results showed that when habitat conditions were mild and appropriate, such as in the clean upstream river, free of heavy pollution or long-lasting extreme disturbances, stochastic processes could increase species diversities, and organize communities into relatively loosely linked and stable networks with higher modularity and more modules. However, when conditions became degraded under heavy pollution, the influence of neutrality diminished, and niche-based selection imposed more constraints on communities and guided the assembling processes in certain directions: depleting species richness, strengthening interspecies connections and breaking boundaries of modules. Consequently, communities became more sensitive to fluctuations so as to deal with the harsh conditions efficiently. Another interesting finding was that, both as keystone taxa of communities, module hubs were mostly neutrally distributed generalists with high abundances, and were beneficial to many related operational taxonomic units. In contrast, connectors were less abundant and their distributions were more subjected to the environments. Therefore, connectors were probably responsible for the information transmission between microbial communities and environments, as well as between different modules, and thus could restrict the dispersal of microbes and guide the direction of community assembly.

摘要

当前群落生态学的一个热点是揭示群落演替的机制。在本研究中,整合了两个流行的概念,即生态位中性动态平衡和共现网络分析,以研究中国亚热带地区一条淡水河连续区域中微生物群落的扩散动态。结果表明,当栖息地条件温和适宜时,例如在未受重度污染或长期极端干扰的清洁上游河流中,随机过程可以增加物种多样性,并将群落组织成联系相对松散且稳定的网络,具有更高的模块性和更多的模块。然而,当条件在重度污染下恶化时,中性的影响减弱,基于生态位的选择对群落施加了更多限制,并在某些方向上引导组装过程:减少物种丰富度,加强种间联系并打破模块边界。因此,群落对波动变得更加敏感,以便有效地应对恶劣条件。另一个有趣的发现是,作为群落的关键类群,模块枢纽大多是中性分布的高丰度通才,对许多相关的操作分类单元有益。相比之下,连接者丰度较低,其分布更受环境影响。因此,连接者可能负责微生物群落与环境之间以及不同模块之间的信息传递,从而可以限制微生物的扩散并引导群落组装的方向。

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