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Resilience of microbial communities in a simulated drinking water distribution system subjected to disturbances: role of conditionally rare taxa and potential implications for antibiotic-resistant bacteria

机译:受到干扰的模拟饮用水分配系统中微生物群落的复原力:有条件的稀有分类群的作用以及对耐药菌的潜在影响

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Many US water utilities using chloramine as their secondary disinfectant have experienced nitrification episodes that detrimentally impact water quality in their distribution systems. A semi-closed pipe-loop chloraminated drinking water distribution system (DWDS) simulator was used to evaluate the biological stability of the system and describe the response of microbial communities in the bulk water (BW) and biofilm (BF) phase to a disturbance caused by changes in the operational parameters. The DWDS simulator was operated through five successive operational schemes, including an episode of nitrification, followed by a 'chlorine burn' by switching the disinfectant from chloramine to free chlorine. Community comparisons showed significant differences in the structure based on disinfectant and phase (e.g., BW and BF). Both disturbances created changes in the relative abundances of the core microbiome and some members of the rare biosphere (i.e., conditionally rare taxa); however, the microbial community was resilient and returned to its stable state. Genes associated with multiple antibiotic resistance mechanisms were found to be a component of the core genomes of waterborne isolates. These results provide evidence of variations in the bulk water/biofilm microbial community structure during episodes of disturbance (e.g., disinfectant switching practices, nitrification) and its recovery after disturbance.
机译:许多使用氯胺作为辅助消毒剂的美国自来水公司都经历了硝化事件,这会严重影响其分配系统中的水质。使用半封闭的管道回路氯化饮用水分配系统(DWDS)模拟器来评估系统的生物稳定性,并描述散装水(BW)和生物膜(BF)相中微生物群落对引起的干扰的响应通过更改操作参数。 DWDS仿真器通过五个连续的操作方案进行操作,包括硝化过程,然后通过将消毒剂从氯胺转换为游离氯来进行“氯燃烧”。社区比较显示,根据消毒剂和阶段(例如BW和BF)的结构存在显着差异。两种干扰都使核心微生物组和稀有生物圈的某些成员(即有条件的稀有生物分类)的相对丰度发生了变化;但是,微生物群落恢复了活力并恢复了稳定状态。发现与多种抗生素抗性机制相关的基因是水性分离株核心基因组的组成部分。这些结果提供了扰动事件(例如消毒剂交换方法,硝化)期间扰动后水/生物膜微生物群落结构变化及其在扰动后恢复的证据。

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    U.S. Environmental Protection Agency, Office of Research and Development, Cincinnati, Ohio 45268, USA;

    U.S. Environmental Protection Agency, Office of Research and Development, Cincinnati, Ohio 45268, USA;

    U.S. Environmental Protection Agency, Office of Research and Development, Cincinnati, Ohio 45268, USA;

    U.S. Environmental Protection Agency, Office of Research and Development, Cincinnati, Ohio 45268, USA;

    U.S. Environmental Protection Agency, Office of Research and Development, Cincinnati, Ohio 45268, USA;

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