Ji Pan, Rhoads William J, Edwards Marc A, Pruden Amy
Via Department of Civil and Environmental Engineering, Virginia Tech, Blacksburg, VA, USA.
ISME J. 2017 Jun;11(6):1318-1330. doi: 10.1038/ismej.2017.14. Epub 2017 Mar 10.
Hot water plumbing is an important conduit of microbes into the indoor environment and can increase risk of opportunistic pathogens (for example, Legionella pneumophila). We examined the combined effects of water heater temperature (39, 42, 48, 51 and 58 °C), pipe orientation (upward/downward), and water use frequency (21, 3 and 1 flush per week) on the microbial composition at the tap using a pilot-scale pipe rig. 16S rRNA gene amplicon sequencing indicated that bulk water and corresponding biofilm typically had distinct taxonomic compositions (R=0.246, P=0.001), yet similar predicted functions based on PICRUSt analysis (R=0.087, P=0.001). Although a prior study had identified 51 °C under low water use frequency to enrich Legionella at the tap, here we reveal that 51 °C is also a threshold above which there are marked effects of the combined influences of temperature, pipe orientation, and use frequency on taxonomic and functional composition. A positive association was noted between relative abundances of Legionella and mitochondrial DNA of Vermamoeba, a genus of amoebae that can enhance virulence and facilitate replication of some pathogens. This study takes a step towards intentional control of the plumbing microbiome and highlights the importance of microbial ecology in governing pathogen proliferation.
热水管道系统是微生物进入室内环境的重要途径,会增加机会性病原体(例如嗜肺军团菌)的风险。我们使用中试规模的管道装置,研究了热水器温度(39、42、48、51和58°C)、管道方向(向上/向下)以及用水频率(每周21次、3次和1次冲洗)对水龙头处微生物组成的综合影响。16S rRNA基因扩增子测序表明,总体水和相应的生物膜通常具有不同的分类组成(R = 0.246,P = 0.001),但基于PICRUSt分析的预测功能相似(R = 0.087,P = 0.001)。尽管先前的一项研究已经确定在低用水频率下51°C会使水龙头处的军团菌富集,但我们在此揭示,51°C也是一个阈值,高于此温度,温度、管道方向和使用频率的综合影响会对分类和功能组成产生显著影响。军团菌的相对丰度与变形虫属的维氏变形虫的线粒体DNA之间存在正相关,变形虫属可以增强某些病原体的毒力并促进其复制。这项研究朝着有意控制管道微生物群落迈出了一步,并强调了微生物生态学在控制病原体增殖中的重要性。