Changes in bacterial diversity and community structure in drinking water distribution system revealed by high throughput sequencing.

Yoshihiko Koizumi, Tomoaki Ichijo, Kimiko Uchii, Masao Nasu
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Abstract

For microbiological management of water quality, it is important to identify bacteria and to understand the community structure. To analyze the community structure during water purification and distribution, we selected a distribution system in which water from other water treatment facilities was not mixed with the target water. Changes in the bacterial community structure during treatment and distribution processes in a slow filtration water treatment facility were analyzed using 16S rRNA gene amplicon sequencing with a portable sequencer MinION. The microbial diversity was reduced by chlorination. The genus level diversity increased during distribution and this diversity was maintained through to the terminal tap water. Yersinia and Aeromonas were dominant in the intake water, and Legionella was dominant in the slow sand filtered water. Chlorination greatly reduced the relative abundance of Yersinia, Aeromonas, and Legionella, and these bacteria were not detected in the terminal tap water. Sphingomonas, Starkeya and Methylobacterium became dominant in the water after chlorination. These bacteria could be used as important indicator bacteria to provide useful information for microbiological control in drinking water distribution systems.

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高通量测序揭示饮用水配水系统细菌多样性和群落结构变化。
在水质微生物管理中,细菌的鉴定和群落结构的了解是非常重要的。为了分析净水和分配过程中的社区结构,我们选择了一个分配系统,其中其他水处理设施的水不与目标水混合。采用便携式测序仪MinION对慢速过滤水处理设施处理过程中细菌群落结构和分布过程的变化进行分析。氯化作用降低了微生物多样性。在分布过程中,属级多样性增加,这种多样性一直保持到终端自来水。采食水中以耶尔森菌和气单胞菌为主,慢砂滤水中以军团菌为主。氯化大大降低了耶尔森菌、气单胞菌和军团菌的相对丰度,这些细菌在终端自来水中未被检测到。经氯化处理后,鞘单胞菌、Starkeya菌和甲基菌在水体中占主导地位。这些细菌可以作为重要的指示菌,为饮用水配水系统的微生物控制提供有用的信息。
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