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军团菌在医院热水系统中的局部适应会增加其对铜的耐受性。

Local Adaptation of Legionella pneumophila within a Hospital Hot Water System Increases Tolerance to Copper.

机构信息

Department of Civil Engineering, Polytechnique Montréal, Montréal, Quebec, Canada

Department of Natural Resource Sciences, Faculty of Agricultural and Environmental Sciences, McGill University, Sainte-Anne-de-Bellevue, Quebec, Canada.

出版信息

Appl Environ Microbiol. 2021 Apr 27;87(10). doi: 10.1128/AEM.00242-21.

Abstract

In large-building water systems, is exposed to common environmental stressors such as copper. The aim of this study was to evaluate the susceptibility to copper of isolates recovered from various sites: two clinical and seven environmental isolates from hot water system biofilm and water and from cooling tower water. After a 1-week acclimation in simulated drinking water, strains were exposed to various copper concentrations (0.8 to 5 mg/liter) for over 672 h. Complete loss of culturability was observed for three isolates following copper exposure to 5 mg/liter for 672 h. Two sequence type 1427 (ST1427)-like isolates were highly sensitive to copper, while the other two, isolated from biofilm samples, maintained higher culturability. The expression of the copper resistance gene evaluated by reverse transcription-quantitative PCR (RT-qPCR) was significantly higher for the biofilm isolates. All four ST1427-like isolates were recovered from the same water system during an outbreak. Whole-genome sequencing results confirmed that the four isolates are very close phylogenetically, differing by only 29 single nucleotide polymorphisms, suggesting adaptation to microenvironmental conditions, possibly due to epigenetic regulation. These results indicate that the immediate environment within a building water distribution system influences the tolerance of to copper. Increased contact of biofilm strains with copper piping or copper alloys in the heat exchanger might lead to local adaptation. The phenotypic differences observed between water and biofilm isolates from the hot water system of a health care facility warrants further investigation to assess the relevance of evaluating disinfection performances based on water sampling alone. is a pathogen indigenous to natural and large building water systems in the bulk and the biofilm phases. The immediate environment within a system can impact the tolerance of to environmental stressors, including copper. In health care facilities, copper levels in water can vary, depending on water quality, plumbing materials, and age. This study evaluated the impact of the isolation site (water versus biofilm, hot water system versus cooling tower) within building water systems. Closely related strains isolated from a health care facility hot water system exhibited variable tolerance to copper stress, shown by differential expression of , with biofilm isolates displaying highest expression and tolerance. Relying on the detection of in water samples following exposure to environmental stressors such as copper may underestimate the prevalence of , leading to inappropriate risk management strategies and increasing the risk of exposure for vulnerable patients.

摘要

在大型建筑物供水系统中,会暴露于铜等常见环境应激源中。本研究旨在评估从不同地点(来自热水系统生物膜和水以及冷却塔水的两个临床和七个环境分离株)回收的 分离株对铜的敏感性。在模拟饮用水中适应 1 周后,将菌株暴露于 0.8 至 5mg/L 的各种铜浓度下超过 672 小时。在暴露于 5mg/L 铜 672 小时后,有三个分离株完全丧失了可培养性。两个序列型 1427(ST1427)样分离株对铜非常敏感,而另外两个从生物膜样本中分离的分离株保持了更高的可培养性。通过反转录定量 PCR(RT-qPCR)评估的铜抗性基因 的表达对于生物膜分离株显著更高。在暴发期间,从同一水系统中回收了所有四个 ST1427 样分离株。全基因组测序结果证实,四个分离株在系统发育上非常接近,仅相差 29 个单核苷酸多态性,表明对微环境条件的适应,可能是由于表观遗传调控。这些结果表明,建筑物供水分配系统内的局部环境会影响 对铜的耐受性。与换热器中的铜管或铜合金的更多接触可能会导致局部适应。从医疗机构热水系统的水和生物膜分离株中观察到的表型差异需要进一步研究,以评估仅基于水样评估消毒性能的相关性。 是一种天然存在于大型建筑物供水系统的病原体,包括本体和生物膜阶段。系统内的局部环境会影响 对包括铜在内的环境应激源的耐受性。在医疗机构中,水的铜含量可能因水质、管道材料和年龄而异。本研究评估了建筑物供水系统内的分离部位(水与生物膜、热水系统与冷却塔)对 的影响。从医疗机构热水系统分离出的密切相关的菌株对铜应激的耐受性不同,表现为 表达的差异,生物膜分离株的表达和耐受性最高。在暴露于铜等环境应激源后仅依赖于水中 的检测可能会低估 的流行率,导致不适当的风险管理策略并增加脆弱患者暴露的风险。

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