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The seasonal changes of core bacterial community decide sewage purification in sub-plateau municipal sewage treatment plants

机译:核心细菌群落的季节变化决定次高高原市污水处理厂的污水净化

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The decline of sewage purification efficiency in winter is a frequent problem in sub-plateau municipal sewage treatment plants (MSTPs). Understanding the links between activated sludge (AS) bacterial community and sewage purification is crucial for exploring the cause of this problem. In this study, Illumina high-throughput sequencing technology was applied to investigate the seasonal changes of AS bacterial community in sub-plateau MSTPs. The sequencing result indicates that the bacterial community OTU number, diversity, and relative abundance in winter are significantly lower than that in summer samples. The discriminant linear effect size analysis (LEfSe) reveals that Proteobacteria and Chloroflexi members were enriched in summer AS, while Actinobacteria and Firmicutes were enriched in winter AS. The results indicate that different core bacterial community assembly was developed in summer and winter, respectively. The changes in bacterial community may be the reasons for the lower sewage purification efficiency in winter. Furthermore, redundancy analysis (RDA) shows that temperature and dissolved oxygen (DO) are the principal factors that drive the seasonal changes in the core bacterial community diversity, richness and structure in sub-plateau MSTPs. Thus, the sub-plateau AS selects for a unique community assembly pattern and shapes the particular AS ecosystem. These results expand previous understanding and provide insight into the relationship between bacterial community and performance of sub-plateau MSTPs.
机译:冬季污水净化效率的下降是次高高原市污水处理厂(MSTPS)的常见问题。了解活性污泥(AS)细菌群落和污水净化之间的链接对于探索这个问题的原因至关重要。在这项研究中,illumina高通量测序技术被应用于调查次高高原MSTP中细菌群落的季节变化。测序结果表明细菌群落OTU数,多样性和冬季的相对丰度显着低于夏季样本。判别线性效应尺寸分析(lefse)显示植物细菌和氯昔上成员在夏季富含植物,而冬季富含抗菌菌和富含抗体。结果表明,分别在夏季和冬季开发了不同的核心细菌群落。细菌群落的变化可能是冬季污水净化效率较低的原因。此外,冗余分析(RDA)显示温度和溶解氧(DO)是推动核心细菌群落多样性,副高原MSTP中核心细菌群落多样性,丰富性和结构的季节变化的主要因素。因此,子平台作为唯一社区装配模式的选择,以及特定作为生态系统的形状。这些结果扩大了以前的理解,并对细菌群落与亚平原MSTP的性能进行了深入了解。

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