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Pyrosequencing Demonstrated Complex Microbial Communities in a Membrane Filtration System for a Drinking Water Treatment Plant

机译:焦化测序技术在饮用水处理厂膜过滤系统中显示的复杂微生物群落

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Microbial community composition in a pilot-scale microfiltration plant for drinking water treatment was investigated using high-throughput pyrosequencing technology. Sequences of 16S rRNA gene fragments were recovered from raw water, membrane tank particulate matter, and membrane biofilm, and used for taxonomic assignments, estimations of diversity, and the identification of potential pathogens. Greater bacterial diversity was observed in each sample (1,133-1,731 operational taxonomic units) than studies using conventional methods, primarily due to the large number (8,164-22,275) of sequences available for analysis and the identification of rare species. Betaproteobacteria predominated in the raw water (61.1%), while Alphaproteobacteria were predominant in the membrane tank particulate matter (42.4%) and membrane biofilm (32.8%). The bacterial community structure clearly differed for each sample at both the genus and species levels, suggesting that different environmental and growth conditions were generated during membrane filtration. Moreover, signatures of potential pathogens including Legionella , Pseudomonas , Aeromonas , and Chromobacterium were identified, and the proportions of Legionella and Chromobacterium were elevated in the membrane tank particulate matter, suggesting a potential threat to drinking water treated by membrane filtration.
机译:使用高通量焦磷酸测序技术研究了中试规模的微滤厂中用于饮用水处理的微生物群落组成。从原水,膜罐颗粒物和膜生物膜中回收16S rRNA基因片段的序列,并将其用于分类分配,多样性估计和潜在病原体的鉴定。与使用常规方法进行的研究相比,每个样品(1,133-1,731个操作生物分类单位)中观察到的细菌多样性更高,这主要是由于可用于分析和鉴定稀有物种的序列数量众多(8,164-22,275个)。在原水中,β-变形杆菌占主导地位(61.1%),而在膜罐颗粒物(42.4%)和膜生物膜(32.8%)中占主导地位。每个样品在属和种水平上的细菌群落结构明显不同,这表明在膜过滤过程中产生了不同的环境和生长条件。此外,鉴定了潜在的病原体特征,包括军团菌,假单胞菌,气单胞菌和色杆菌,并且在膜罐颗粒物中军团菌和色杆菌的比例升高,表明对通过膜过滤处理的饮用水有潜在威胁。

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