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首页> 外文期刊>FEMS Microbiology Ecology >Microbial diversities (16S and 18S rRNA gene pyrosequencing) and environmental pathogens within drinking water biofilms grown on the common premise plumbing materials unplasticized polyvinylchloride and copper
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Microbial diversities (16S and 18S rRNA gene pyrosequencing) and environmental pathogens within drinking water biofilms grown on the common premise plumbing materials unplasticized polyvinylchloride and copper

机译:饮用水生物膜上的微生物多样性(16S和18S rRNA基因焦磷酸测序)和环境病原体生长在常见前提下的管道材料(未增塑的聚氯乙烯和铜)上

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摘要

Drinking water (DW) biofilm communities influence the survival of opportunistic pathogens, yet knowledge about the microbial composition of DW biofilms developed on common in-premise plumbing material is limited. Utilizing 16S and 18S rRNA gene pyrosequencing, this study characterized the microbial community structure within DW biofilms established on unplasticized polyvinyl chloride (uPVC) and copper (Cu) surfaces and the impact of introducing Legionella pneumophila (Lp) and Acanthamoeba polyphaga. Mature (> 1 year old) biofilms were developed before inoculation with sterilized DW (control, Con), Lp, or Lp and A. polyphaga (LpAp). Comparison of uPVC and Cu biofilms indicated significant differences between bacterial (P = 0.001) and eukaryotic (P < 0.01) members attributable to the unique presence of several family taxa: Burkholderiaceae, Characeae, Epistylidae, Goniomonadaceae, Paramoebidae, Plasmodiophoridae, Plectidae, Sphenomonadidae, and Toxariaceae within uPVC biofilms; and Enterobacteriaceae, Erythrobacteraceae, Methylophilaceae, Acanthamoebidae, and Chlamydomonadaceae within Cu biofilms. Introduction of Lp alone or with A. polyphaga had no effect on bacterial community profiles (P > 0.05) but did affect eukaryotic members (uPVC, P < 0.01; Cu, P = 0.001). Thus, established DW biofilms host complex communities that may vary based on substratum matrix and maintain consistent bacterial communities despite introduction of Lp, an environmental pathogen.
机译:饮用水(DW)生物膜群落会影响机会性病原体的生存,但是关于在常见的室内管道材料上开发的DW生物膜的微生物组成的知识是有限的。这项研究利用16S和18S rRNA基因焦磷酸测序技术,研究了在未增塑的聚氯乙烯(uPVC)和铜(Cu)表面上建立的DW生物膜内的微生物群落结构,以及引入嗜肺军团菌(Lp)和棘阿米巴多噬菌体的影响。在接种无菌DW(对照,Con),Lp或Lp和多食曲霉(LpAp)之前,先形成成熟的(> 1岁)生物膜。 uPVC和Cu生物膜的比较表明,细菌(P = 0.001)和真核生物(P <0.01)成员之间存在显着差异,这归因于几种家族类群的独特存在:伯克霍尔德科,Char科,Epi科,角线虫科,副Para科,疟原虫、,科、,科, uPVC生物膜中的弓形虫科;铜生物膜中的肠杆菌科,红细菌科,甲基嗜菊科,棘阿米巴科和衣藻科。 Lp单独或与A. polyphaga一起引入对细菌群落特征没有影响(P> 0.05),但确实影响了真核生物成员(uPVC,P <0.01; Cu,P = 0.001)。因此,尽管引入了环境病原体Lp,已建立的DW生物膜拥有复杂的群落,这些群落可能根据基质基质而变化,并保持一致的细菌群落。

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