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利用基于动力学建模的采样方案分离高度耐热李斯特菌变异株。

Isolation of highly heat-resistant Listeria monocytogenes variants by use of a kinetic modeling-based sampling scheme.

机构信息

Top Institute Food and Nutrition (TIFN), P.O. Box 557, 6700 AN Wageningen, Netherlands.

出版信息

Appl Environ Microbiol. 2011 Apr;77(8):2617-24. doi: 10.1128/AEM.02617-10. Epub 2011 Feb 25.

Abstract

Stable high-hydrostatic-pressure (HHP)-resistant Listeria monocytogenes LO28 variants were previously isolated and characterized. These HHP variants were also more resistant to heat. In addition, nonlinear heat inactivation kinetics pointed toward the existence of heat-resistant variants, although these could not be isolated so far. In this study, we used kinetic modeling of inactivation curves of two isolated HHP variants and their wild type, and this revealed that the probability of finding resistant variants should depend on the nature of the inactivation treatment and the time of exposure. At specific heat and HHP conditions, resistant LO28 and EGDe variants were indeed isolated. Resistant LO28 variants were even isolated after a heat inactivation at 72°C in milk, and these variants showed high resistance to standard pasteurization conditions. The increased resistance of part of the isolated LO28 and EGDe variants was due to mutations in their ctsR genes. For the variants whose ctsR genes and upstream regions were not altered, the mechanisms leading to increased resistance remain to be elucidated. This research showed the strength of kinetic modeling in unraveling the causes of nonlinear inactivation and facilitating the isolation of heat-resistant L. monocytogenes variants.

摘要

先前已经分离并鉴定出了能够稳定耐受高静压(HHP)的李斯特菌 LO28 变体。这些 HHP 变体也对热更具抗性。此外,非线性热失活动力学表明存在耐热变体,尽管迄今为止尚未能够分离出这些变体。在这项研究中,我们使用两种分离的 HHP 变体及其野生型的失活动力学曲线的动力学建模,这表明发现抗性变体的概率应该取决于失活处理的性质和暴露时间。在特定的热和 HHP 条件下,确实分离出了耐 LO28 和 EGDe 变体的抗性变体。甚至在牛奶中进行 72°C 的热失活后也分离出了耐 LO28 变体,这些变体对标准巴氏杀菌条件表现出高抗性。部分分离的 LO28 和 EGDe 变体的抗性增加是由于其 ctsR 基因发生了突变。对于 ctsR 基因及其上游区域未发生改变的变体,导致其抗性增加的机制仍有待阐明。这项研究表明了动力学建模在揭示非线性失活动力学的原因和促进耐热李斯特菌变体的分离方面的强大作用。

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