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首页> 外文期刊>Journal of applied microbiology >An investigation into the changed physiological state of Vibrio bacteria as a survival mechanism in response to cold temperatures and studies on their sensitivity to heating and freezing
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An investigation into the changed physiological state of Vibrio bacteria as a survival mechanism in response to cold temperatures and studies on their sensitivity to heating and freezing

机译:作为应对寒冷温度的生存机制的弧菌细菌的生理状态发生变化的研究,及其对加热和冷冻的敏感性的研究

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Aims: To induce pathogenic Vibrio bacteria into a changed physiological state, in response to cold temperatures in sea water, and assess their sensitivity to heating and freezing, as compared with normal cells. Methods and Results: Cells of exponential phase Vibrio vulnificus, V. cholerae and V. parahaemolyticus were washed and inoculated into flasks of sea water, which were stored at 20 and 4 ℃. Cells stored at 20 ℃ could be recovered after 60 d on non-selective agar (heart infusion agar; HIA) and on the selective agar (thiosulphate citrate bile salts agar) which is used in most Vibrio detection methodology. At 4 ℃ cells became non-culturable on both agars over time. The non-culturable cells appeared to be metabolically active and maintained their membrane integrity, whilst undergoing a change in morphology from rod-shaped to coccoid cells. Resuscitation was possible, in some cases, by an upshift in temperature before plating and the addition of catalase to HIA plates was found to increase recovery. Studies were carries out to assess the sensitivity of the non-culturable cells to heating and freezing compared with the normal cells. Vibrio organisms, whether culturable or in the non-culturable form, were not inactivated by freezing to -20 ℃. Heating studies showed that V. parahaemolyticus was very heat resistant at low temperatures. However, a pasteurization regime of 2 min at 70 ℃ was found to be effective against all three strains. Experiments showed that the non-culturable cells of all three strains were similar in their heat resistance or, in some cases, were more heat sensitive than cells in the normal form. Conclusions: Cells in the changed physiological form would not be detected in fish or seafood products by the current Vibrio detection methods. Freezing had no effect in reducing cell numbers. Vibrio parahaemolyticus was very heat resistant in the low temperature pasteurization studies. The higher pasteurization regime of 70 ℃ for 2 min was effective against all three pathogens. Non-culturable cells had similar heat sensitivity or were more heat sensitive than cells in the normal state. Significance and Impact of the Study; The study has highlighted a need for the development of better Vibrio detection methods. The low temperature pasteurization of oysters, which has been recommended in the USA, would not be adequate against the strain of V. parahaemolyticus used in this study. Heating regimes which were found to control cells in the normal form will also be effective for the control of the cells with changed physiology.
机译:目的:响应海水的低温,将致病性弧菌细菌转变为生理状态,并评估其与正常细胞相比对加热和冷冻的敏感性。方法与结果:将指数相的创伤弧菌,霍乱弧菌和副溶血弧菌的细胞洗净并接种到海水瓶中,分别于20和4℃下保存。在20℃储存的细胞可以在60 d后在非选择性琼脂(心浸琼脂; HIA)和选择性琼脂(柠檬酸硫代硫酸盐胆汁盐琼脂)上回收,这是大多数弧菌检测方法中使用的。随着时间的推移,在4℃下,两种琼脂上的细胞都变得不可培养。不可培养细胞似乎具有代谢活性,并保持其膜的完整性,同时形态发生了从杆状细胞到类球体细胞的变化。在某些情况下,可通过在铺板前升高温度来进行复苏,并发现在HIA板上添加过氧化氢酶可提高回收率。进行了研究以评估非培养细胞与正常细胞相比对加热和冷冻的敏感性。弧菌无论是可培养的还是不可培养的,都不会通过冷冻至-20℃而失活。加热研究表明,副溶血弧菌在低温下非常耐热。然而,发现在70℃下2分钟的巴氏杀菌对所有三种菌株都有效。实验表明,所有三种菌株的不可培养细胞的耐热性相似,或者在某些情况下比正常形式的细胞对热敏感。结论:目前的弧菌检测方法无法在鱼或海鲜产品中检测到生理形态改变的细胞。冷冻对减少细胞数量没有影响。在低温巴氏灭菌研究中,副溶血弧菌非常耐热。 70℃2分钟的较高巴氏灭菌法对所有三种病原体均有效。不可培养细胞比正常状态的细胞具有相似的热敏感性或对热的敏感性更高。研究的意义和影响;这项研究强调需要开发更好的弧菌检测方法。在美国,建议对牡蛎进行低温巴氏灭菌,但不足以抵抗本研究中使用的副溶血弧菌。发现以正常形式控制细胞的加热方案对于控制生理变化的细胞也将是有效的。

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