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粪肠球菌JH2-2对冷休克的生理反应:低温生长及冻融挑战

Physiological response of Enterococcus faecalis JH2-2 to cold shock: growth at low temperatures and freezing/thawing challenge.

作者信息

Thammavongs B, Corroler D, Panoff J M, Auffray Y, Boutibonnes P

机构信息

Laboratoire de Microbiologie de Environnement, Université de Caen, France.

出版信息

Lett Appl Microbiol. 1996 Dec;23(6):398-402. doi: 10.1111/j.1472-765x.1996.tb01345.x.

Abstract

Growth at low positive temperatures and induced phenotypic resistance to extreme cold temperature (freezing/thawing cycles) of Enterococcus faecalis were investigated. The effect of low temperatures on the specific growth rates was studied; use of Arrhenius profile and Ratkovsky 'square-root' model allowed determination of the 'temperature characteristic' (mu approximately equal to 13,800 cal mol-1), the critical temperature (Tcrit approximately equal to 17.9 degrees C) and the notional minimum growth temperature (T0 approximately equal to 3.6 degrees C). Preincubation of Ent. faecalis cells at low temperatures (8-16 degrees C) during periods corresponding to their generation time resulted in an increased ability of the bacterial cells to withstand short periods of freezing/thawing (-20 degrees C/+37 degrees C) challenge. Moreover, the increase of the incubation period at low positive temperature led to a higher degree of adaptation.

摘要

研究了粪肠球菌在低正温度下的生长以及对极端低温(冻融循环)诱导的表型抗性。研究了低温对特定生长速率的影响;使用阿伦尼乌斯曲线和拉特科夫斯基“平方根”模型确定了“温度特征”(μ约等于13,800卡摩尔-1)、临界温度(Tcrit约等于17.9摄氏度)和理论最低生长温度(T0约等于3.6摄氏度)。在与粪肠球菌细胞世代时间相对应的时间段内,将其在低温(8-16摄氏度)下预培养,导致细菌细胞耐受短时间冻融(-20摄氏度/+37摄氏度)挑战的能力增强。此外,在低正温度下培养时间的延长导致更高程度的适应性。

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