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Rainbow darter (Etheostoma caeruleum) from a river impacted by municipal wastewater effluents have altered gut content microbiomes

机译:来自由市政废水污水影响的河流的彩虹·达尔鲁姆(Ethostoma caeruleum)改变了肠道含量微生物血症

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Municipal wastewater treatment plant (WWTP) effluent contains Pharmaceuticals and personal care products known to affect fish health and reproduction. The microbiome is a community of bacteria integral in maintaining host health and is influenced by species, diet, and environment. This study investigated changes in the diversity and composition of the gut content microbiome of rainbow darter (Etheostoma caeruleum) at ten sites on the Grand River, Ontario, Canada. Gut contents were collected in fall 2018 from these fish at sites upstream and downstream of two municipal wastewater treatment plants (WWTPs; Waterloo and Kitchener). 16S rRNA genes were sequenced to determine the composition and diversity (alpha and beta) of microbial taxa present. Gut content bacterial alpha diversity increased downstream of both WWTP outfalls; dominance of bacterial amplicon sequence variants decreased compared to upstream fish. Fish collected at different sites had distinct bacterial communities, with upstream samples dominant in Proteobacteria and Firmicutes, and downstream samples increasingly abundant in Proteobacteria and Cyanobacteria. In mammals, increased abundance of Proteobacteria is indicative of microbial dysbiosis and has been linked to altered health outcomes, but this is not yet known for fish. This research indicates that the fish gut content microbiome was altered downstream of WWTP effluent outfalls and could lead to negative health outcomes.
机译:市政废水处理厂(WWTP)污水含有药物和众所周知的药物和个人护理产品,以影响鱼类健康和繁殖。微生物组是在维持宿主健康方面的细菌群落,受物种,饮食和环境的影响。本研究研究了加拿大大河大河10位点的彩虹达特(Etheostoma Caeruleum)肠道达特(Ethostoma Caeruleum)的多样性和组成的变化。从两个城市污水处理厂(WWTPS; Waterloo和Kiceer)的地址,在2018年秋季从2018年秋季收集了肠道内容。测序16S rRNA基因以确定存在的微生物分类群的组成和多样性(α和β)。肠含量细菌α多样性增加了WWTP排出的下游;与上游鱼相比,细菌扩增子序列变体的优势降低。在不同部位收集的鱼有明显的细菌群落,上游样品在植物和常规中显着,下游样品在植物和蓝藻中越来越丰富。在哺乳动物中,增加丰富的植物体会表明微生物过敏并与改变的健康结果有关,但这尚未为鱼类而闻名。该研究表明,鱼肠含量微生物组在WWTP流出物的下游发生了改变,可能导致负健康结果。

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