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首页> 外文期刊>The Science of the Total Environment >Microbial community shifts in streams receiving treated wastewater effluent
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Microbial community shifts in streams receiving treated wastewater effluent

机译:接受处理后废水的河流中微生物群落的变化

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摘要

Wastewater treatment plant (WWTP) effluents release not only chemical constituents in watersheds, but also contain microorganisms. Thus, an understanding of what microorganisms are released and how they change microbial communities within natural streams is needed. To characterize the community shifts in streams receiving WWTP effluent, we sampled water-column microorganisms from upstream, downstream, and the effluent of WWTPs located on 23 headwater streams in which no other effluent was released upstream. We characterized the bacterial community by sequencing the V3-V4 region of the 16S rRNA gene. We hypothesized that the downstream community profile would be a hydraulic mixture between the two sources (i.e., upstream and effluent). In ordination analyses, the downstream bacterial community profile was a mixture between the upstream and effluent. For 14 of the sites, the main contribution (>50%) to the downstream community originated from bacteria in the WWTP effluent and significant shifts in relative abundance of specific sequence variants were detected. These shifts in sequence variants may serve as general bioindicators of wastewater-effluent influenced streams, with a human-gut related Ruminococcus genus displaying the highest shift (30-fold higher abundances downstream). However, not all taxa composition changes were predicted based on hydraulic mixing alone. Specifically, the decrease of Cyanobacteria/Chloroplast reads was not adequately described by hydraulic mixing. The potential alteration of stream microbial communities via a high inflow of human-gut related bacteria and a decrease in autotrophic functional groups resulting from WWTP effluent creates the potential for general shifts in stream ecosystem function.
机译:废水处理厂(WWTP)废水不仅释放流域中的化学成分,而且还包含微生物。因此,需要了解释放了哪些微生物以及它们如何改变自然流中的微生物群落。为了表征接收污水处理厂废水的社区迁移特征,我们从上游,下游和位于23个上游水源中的污水处理厂废水中取样了水柱微生物,而上游没有其他污水排放。我们通过对16S rRNA基因的V3-V4区域进行测序来表征细菌群落。我们假设下游社区的概况将是两种来源(即上游和污水)之间的水力混合物。在排序分析中,下游细菌群落特征是上游和流出物之间的混合物。对于其中的14个位点,对下游社区的主要贡献(> 50%)来自WWTP废水中的细菌,并且检测到特定序列变体的相对丰度有明显变化。这些序列变异的变化可以用作废水影响流的一般生物指示剂,与人肠道相关的Ruminococcus属显示最高的变化(下游丰度高30倍)。但是,并非仅基于液压混合就可以预测所有的分类单元组成的变化。具体而言,通过水力混合不能充分描述蓝细菌/叶绿体读数的减少。由于人类肠道相关细菌的大量流入和污水处理厂污水导致的自养功能基团的减少,河流微生物群落的潜在变化为河流生态系统功能的普遍转变创造了可能。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第20期|135727.1-135727.12|共12页
  • 作者单位

    EEawag: Swiss Federal Institute of Aquatic Science and Technology Duebendorf Switzerland;

    EEawag: Swiss Federal Institute of Aquatic Science and Technology Duebendorf Switzerland Natural History Museum London London UK;

    EEawag: Swiss Federal Institute of Aquatic Science and Technology Duebendorf Switzerland Department of Evolutionary Biology and Environmental Studies University of Zuerich Zuerich Switzerland;

    EEawag: Swiss Federal Institute of Aquatic Science and Technology Duebendorf Switzerland Department of Environmental Systems Science ETH Zuerich Switzerland Chemistry Department University of Zurich Zurich Switzerland;

    EEawag: Swiss Federal Institute of Aquatic Science and Technology Duebendorf Switzerland Department of Environmental Systems Science ETH Zuerich Switzerland;

    Department of Environmental Systems Science ETH Zuerich Switzerland;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Headwater streams; Wastewater treatment plant effluent; Ruminococcus; Cyanobacteria;

    机译:上游水流;废水处理厂废水;瘤球菌;蓝细菌;

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