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Function prediction and network analysis to investigate the response of microbial communities to a single environmental factor

机译:功能预测和网络分析研究微生物群落对单一环境因子的响应

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As an important factor affecting the structure of microbial communities, salinity has traditionally been a focus of exploratory studies of microorganisms. Here, we defined a salinity gradient with reference to the degree of natural salinization in a lake and withdrew the influence of irrelevant factors to explore the impacts of changes in salinity on the biological community. With the gradual increase in salinity, we found that Firmicutes replaced Bacteroidetes as the dominant flora. Through a network diagram, we found that Bacteroidetes had a weaker taxonomic correlation with the bacterial community in the saline environment, which indicated that the increase of salinity did play a role in filtering the bacterial community. In addition, we also found the typical freshwater bacteria GKS98 in a higher salinity environment, which supports the idea proposed by previous researchers that salinity creates a wider niche. However, our functional prediction results show that salinity is not the main factor affecting the functional characteristics of bacterial communities. Moreover, through a network diagram, we found that the symbiotic relationship between GKS98 and other strains also changed with increasing salinity. This suggests that the effects of salinity on microorganisms may involve additional ecological mechanisms such as niche occupation and functional interdependence within the community.
机译:作为影响微生物社区结构的重要因素,盐度传统上是微生物探索性研究的重点。在这里,我们将盐度梯度参考湖泊中的天然盐渍化程度定义,并撤回了无关因素的影响探讨了生物群体盐度变化的影响。随着盐度的逐步增加,我们发现将替代的菌群更换为菌群。通过网络图,我们发现Bacteroidets与盐水环境中的细菌群体具有较弱的分类群,这表明盐度的增加确实在过滤细菌界中发挥作用。此外,我们还发现典型的淡水细菌GKS98在更高的盐度环境中,支持以前研究人员提出的盐度创造了更广泛的利基。然而,我们的功能预测结果表明,盐度不是影响细菌群落功能特征的主要因素。此外,通过网络图,我们发现GKS98和其他菌株之间的共生关系也随着盐度的增加而变化。这表明盐度对微生物的影响可能涉及额外的生态机制,例如社区内的利基职业和功能性相互依赖。

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