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Different Biocides Elicit Differential Responses in Bacteria

机译:不同的杀菌剂在细菌中引出差分反应

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Planetary and sample return missions require surface cleaning procedures using biocides. However, a deep understanding of how microorganisms respond to biocides is needed. The response of different Salmonella serovars to defined concentrations of chlorine, chlorine dioxide, and cetylpyridinium chloride (CPC) was studied. Microbial responses in terms of culturability, and virulence gene expression were also evaluated. Inactivation when exposed to chlorine and CPC was extremely rapid. Inactivation due to chlorine dioxide was, however, gradual. Exposure to these biocides caused a number of physiological states in Salmonella cells including dormancy, injury, and a viable but non-culturable state. Based on real-time PCR assays, all virulence-related genes were down-regulated in the presence of chlorine, chlorine dioxide and CPC. These studies highlight the importance of understanding the possible responses of organisms to biocides before they are used in mission critical applications such as pre-flight cleaning and laboratory protocols involved in sample return missions.
机译:行星和样品返回任务需要使用杀生物剂的表面清洁程序。然而,深刻了解需要微生物如何响应杀生物剂。研究了不同沙门氏菌血管浓度为定义浓度的氯,二氧化碳和十六烷吡啶(CPC)的响应。还评估了培养性和毒力基因表达方面的微生物反应。暴露于氯和CPC时的灭活非常迅速。然而,由于二氧化氯由于二氧化氯而逐渐淘汰。暴露于这些生物剂导致沙门氏菌细胞中的许多生理状态,包括休眠,伤害和可行但不培养的状态。基于实时PCR测定,所有毒力相关基因在氯,二氧化氯和CPC存在下进行下调。这些研究突出了了解有机体对杀生物剂的可能反应的重要性,然后在任务关键效果,如采用样品回报任务的飞行前清洁和实验室协议等。

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