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家用管道材料对早期生物膜形成和抗氯性的影响:同一微生物生物膜在不同管道材料中表现出的各种种间相互作用。

Effect of household pipe materials on formation and chlorine resistance of the early-stage biofilm: various interspecific interactions exhibited by the same microbial biofilm in different pipe materials.

机构信息

School of Civil Engineering and Architecture, East China Jiao Tong University, Nanchang, 330013, PR China.

Department of Transportation of Jiangxi Province, Comprehensive Transportation Development Research Center of Jiangxi Provincial, Nanchang, PR China.

出版信息

Arch Microbiol. 2024 Jun 10;206(7):295. doi: 10.1007/s00203-024-04013-4.

Abstract

Microbial community biofilm exists in the household drinking water system and would pose threat to water quality. This paper explored biofilm formation and chlorination resistance of ten dual-species biofilms in three typical household pipes (stainless steel (SS), polypropylene random (PPR), and copper), and investigated the role of interspecific interaction. Biofilm biomass was lowest in copper pipes and highest in PPR pipes. A synergistic or neutralistic relationship between bacteria was evident in most biofilms formed in SS pipes, whereas four groups displayed a competitive relationship in biofilms formed in copper pipe. Chlorine resistance of biofilms was better in SS pipes and worse in copper pipes. It may be helped by interspecific relationships, but was more dependent on bacteria and resistance mechanisms such as more stable extracellular polymeric substance. The corrosion sites may also protect bacteria from chlorination. The findings provide useful insights for microbial control strategies in household drinking water systems.

摘要

微生物群落生物膜存在于家庭饮用水系统中,会对水质构成威胁。本文探讨了十种双种生物膜在三种典型家用管道(不锈钢 (SS)、随机聚丙烯 (PPR) 和铜)中的生物膜形成和氯化抵抗性,并研究了种间相互作用的作用。生物膜生物量在铜管中最低,在 PPR 管中最高。在 SS 管中形成的大多数生物膜中,细菌之间存在协同或中性关系,而在铜管中形成的四个生物膜中则存在竞争关系。SS 管中生物膜的氯抗性较好,而铜管中生物膜的氯抗性较差。这可能得益于种间关系,但更依赖于细菌和抵抗机制,如更稳定的胞外聚合物。腐蚀部位也可能使细菌免受氯化作用。研究结果为家庭饮用水系统中的微生物控制策略提供了有用的见解。

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