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Network Analysis Reveals Seasonal Patterns of Bacterial Community Networks in Lake Taihu under Aquaculture Conditions

机译:网络分析显示水产养殖条件下太湖中的细菌群落网络季节性模式

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摘要

Bacterial communities play essential roles in multiple ecological processes, such as primary production and nutrient recycling in aquatic systems. However, although the composition, diversity and function of bacterial communities have been well studied, little is known about the interactions and co-occurrence characteristics of these communities, let alone their seasonal patterns. To investigate the seasonal variations of bacterial community interactions, we collected water samples from four seasons in Lake Taihu and applied network analysis to reveal bacterial community interactions. Bacterial community networks were non-random in structure, and interactions among bacterial taxa in the networks varied markedly in different seasons. The autumnal bacterial network was the largest and most complex among obtained networks, whereas the spring correlation network was the simplest, having no module hubs or connectors. The important species of the networks were the dominant bacterial phyla/classes (e.g., Alphaproteobacteria and Bacteroidetes), although their relative abundance varied among seasons. The relationships between species and measured environmental variables changed over seasons; fewer environmental factors were correlated with bacterial species in the spring bacterial network, while we observed a greater number of species-environment correlations in the winter network. Our study highlights the seasonal differences in bacterial community interactions and expands our understanding of freshwater microbial ecology in systems affected by aquaculture.
机译:细菌社区在多种生态过程中起主要作用,例如水产系统中的主要生产和营养回收。然而,虽然细菌社区的组成,多样性和功能已经很好地研究,但对这些社区的相互作用和共同发生特征很少,更不用说他们的季节性模式。为了研究细菌群落相互作用的季节性变化,我们从太湖湖中的四季收集了水样,应用了网络分析,揭示了细菌群落的相互作用。细菌群落网络在结构中是非随机的,并且网络中的细菌分类群之间的相互作用在不同的季节中显着变化。秋季细菌网络是所获得的网络中最大,最复杂的网络,而弹簧相关网络是最简单的,没有模块集线器或连接器。虽然它们的相对丰度在季节之间变化,但网络的重要性是主要的细菌植物/类(例如,α,α,α,α,αα)。物种与测量环境变量之间的关系改变了季节;较少的环境因子与春季细菌网络中的细菌种类相关,而我们观察到冬季网络中的更多物种环境相关性。我们的研究突出了细菌群落相互作用的季节性差异,并扩大了我们对受水产养殖影响的系统中淡水微生物生态的理解。

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