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应激反应基因对不同相对湿度水平下空气中大肠杆菌存活的重要性。

Importance of stress-response genes to the survival of airborne Escherichia coli under different levels of relative humidity.

作者信息

Ng Tsz Wai, Chan Wing Lam, Lai Ka Man

机构信息

Department of Biology, Hong Kong Baptist University, Kowloon Tong, Hong Kong, SAR.

出版信息

AMB Express. 2017 Dec;7(1):71. doi: 10.1186/s13568-017-0376-3. Epub 2017 Mar 24.

Abstract

Other than the needs for infection control to investigate the survival and inactivation of airborne bacterial pathogens, there has been a growing interest in exploring bacterial communities in the air and the effect of environmental variables on them. However, the innate biological mechanism influencing the bacterial viability is still unclear. In this study, a mutant-based approach, using Escherichia coli as a model, was used to prove the concept that common stress-response genes are important for airborne survival of bacteria. Mutants with a single gene knockout that are known to respond to general stress (rpoS) and oxidative stress (oxyR, soxR) were selected in the study. Low relative humidity (RH), 30-40% was more detrimental to the bacteria than high RH, >90%. The log reduction of ∆rpoS was always higher than that of the parental strain at all RH levels but the ∆oxyR had a higher log reduction than the parental strain at intermediate RH only. ∆soxR had the same viability compared to the parental strain at all RH levels. The results hint that although different types and levels of stress are produced under different RH conditions, stress-response genes always play a role in the bacterial viability. This study is the first reporting the association between stress-response genes and viability of airborne bacteria.

摘要

除了出于感染控制目的来研究空气传播细菌病原体的存活和失活情况外,人们对探索空气中的细菌群落以及环境变量对它们的影响也越来越感兴趣。然而,影响细菌生存能力的内在生物学机制仍不清楚。在本研究中,采用以大肠杆菌为模型的基于突变体的方法来证明常见应激反应基因对细菌空气传播生存至关重要这一概念。研究中选择了已知对一般应激(rpoS)和氧化应激(oxyR、soxR)有反应的单基因敲除突变体。低相对湿度(RH),30 - 40%,比高相对湿度,>90%,对细菌更有害。在所有RH水平下,∆rpoS的对数减少量总是高于亲本菌株,但∆oxyR仅在中等RH水平下的对数减少量高于亲本菌株。在所有RH水平下,∆soxR与亲本菌株具有相同的生存能力。结果表明,尽管在不同的RH条件下会产生不同类型和水平的应激,但应激反应基因总是在细菌生存能力中发挥作用。本研究首次报道了应激反应基因与空气传播细菌生存能力之间的关联。

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