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Deciphering the Assembly Processes of the Key Ecological Assemblages of Microbial Communities in Thirteen Full-Scale Wastewater Treatment Plants

机译:在十三个全尺寸废水处理厂中解读微生物群体的关键生态组合的组装过程

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Limited information is currently available on the assembly processes (deterministic vs. stochastic) shaping the compositions of key microbial communities in activated sludge (AS). The relative importance of deterministic and stochastic processes for key bacterial and archaeal assemblages (i.e., core-satellite and habitat generalist-specialist) in AS from 13 wastewater treatment plants in China was investigated using 16S rDNA amplicon sequencing. The results obtained indicated 1,388 and 369 core operational taxonomic units (OTUs), 1,038 and 1,683 satellite OTUs, 255 and 48 habitat generalist OTUs, and 192 and 111 habitat specialist OTUs for Bacteria and Archaea, respectively. The proportions of shared OTUs between core and habitat specialist communities were similar to or higher than those between core and habitat generalist communities, suggesting a stronger inter-linkage between the former two groups. Deterministic processes, indicated by abundance-based beta-null models, were responsible for shaping core communities, in which NH4-N, OrgC/OrgN, Cr, and Ni were the main controlling factors. In contrast, satellite communities were predominantly influenced by stochastic processes. Moreover, we found that deterministic and stochastic processes were mainly responsible for shaping the assembly of habitat specialists and generalists, respectively. However, the influence of deterministic factors on habitat specialists remains unclear. The present study provides novel insights into the assembly mechanisms of AS microbial communities.
机译:目前有限的信息目前可以在装配过程(确定性Vs.随机)上塑造活性污泥中关键微生物群落的组成(AS)。使用16S rdNA扩增子测序研究了来自中国的13个废水处理厂的关键细菌和古代组合(即核心卫星和栖息地 - 专家)的确定性和随机过程的相对重要性。得到的结果表明了1,388和369个核心运作分类单位(Otus),1,038和1,683颗卫星Otus,255和48人栖息地Otus,以及192和111个栖息地专家对细菌和archaea的栖息地专家Otus。核心和栖息地专家社区之间的共享OTU的比例与核心和栖息地通用社区之间的共同OTU相似,建议前两组之间的互联互联互联互联。由基于丰富的β-NULL模型表示的确定性过程负责塑造核心社区,其中NH4-N,ORGC / ORGN,CR和NI是主要控制因素。相比之下,卫星社区主要受到随机过程的影响。此外,我们发现确定性和随机过程主要负责分别塑造栖息地专家和通用学家的组装。然而,确定性因素对栖息地专家的影响尚不清楚。本研究为作为微生物群落的装配机制提供了新的洞察力。

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