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差异表达分析揭示了高抗性 sp. HRI 中可能的新季铵化合物抗性基因。

Differential Expression Analysis Reveals Possible New Quaternary Ammonium Compound Resistance Gene in Highly Resistant sp. HRI.

作者信息

McCarlie Samantha, Boucher-van Jaarsveld Charlotte, Bragg Robert

机构信息

Department of Microbiology and Biochemistry, University of the Free State, Bloemfontein 9301, South Africa.

出版信息

Microorganisms. 2024 Sep 13;12(9):1891. doi: 10.3390/microorganisms12091891.

Abstract

During the COVID-19 pandemic, the surge in disinfectant use emphasised their pivotal role in infection control. While the majority of antimicrobial resistance research focuses on antibiotics, resistance to biocides, which are present in disinfectants and sanitisers, is escalating. sp. HRI is a highly resistant isolate, and through the study of this organism, the molecular mechanisms of resistance may be uncovered. sp. HRI was treated with the disinfectant benzalkonium chloride in preparation for RNA sequencing. Through mining of the RNA-Seq differential expression data, an uncharacterised Major Facilitator Superfamily (MFS) efflux pump gene was found to be up-regulated at least four-fold at four different time points of exposure. Real-time PCR revealed this uncharacterised MFS efflux gene was up-regulated after exposure to benzalkonium chloride and two additional disinfectants, didecyldimethylammonium chloride (DDAC) and Virukill. Additionally, expression of this gene was found to be higher at 20 min versus 90 min of exposure, indicating that the up-regulation of this gene is an initial response to biocide treatment that decreases over time. This suggests that MFS efflux pumps may be an initial survival mechanism for microorganisms, allowing time for longer-term resistance mechanisms. This work puts forward a novel biocide resistance gene that could have a major impact on biocide susceptibility and resistance.

摘要

在新冠疫情期间,消毒剂使用量的激增凸显了它们在感染控制中的关键作用。虽然大多数抗微生物耐药性研究聚焦于抗生素,但对消毒剂和洗手液中所含杀生剂的耐药性正在不断上升。嗜麦芽窄食单胞菌HRI菌株是一种高度耐药的分离株,通过对该菌株的研究,可能会揭示耐药的分子机制。为进行RNA测序,用消毒剂苯扎氯铵处理嗜麦芽窄食单胞菌HRI菌株。通过挖掘RNA测序差异表达数据,发现一个未鉴定的主要易化子超家族(MFS)外排泵基因在四个不同暴露时间点至少上调了四倍。实时定量聚合酶链反应显示,该未鉴定的MFS外排基因在暴露于苯扎氯铵以及另外两种消毒剂——双癸基二甲基氯化铵(DDAC)和Virukill后上调。此外,发现该基因在暴露20分钟时的表达高于90分钟时,这表明该基因的上调是对杀生剂处理的一种初始反应,会随时间下降。这表明MFS外排泵可能是微生物的一种初始生存机制,为长期耐药机制争取时间。这项研究提出了一个新的杀生剂耐药基因,可能会对杀生剂的敏感性和耐药性产生重大影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d862/11433835/a686f9f1be97/microorganisms-12-01891-g001.jpg

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