首页> 外文会议>International Conference on Bioinformatics and Biomedical Technology >Survival and Physiological Responses of Vibrio Parahaemolyticus to Starvation in Warm Seawater
【24h】

Survival and Physiological Responses of Vibrio Parahaemolyticus to Starvation in Warm Seawater

机译:温暖海水中伞菌杀死饥饿的生存与生理反应

获取原文

摘要

Log-phase cells of pathogenic Vibrio parahaemolyticus were incubated in warm seawater for starvation studies. The results showed that: the number of total bacteria, viable bacteria and culturable bacteria of V. parahaemolyticus all increased remarkably at the initial starvation stage; after reaching theirs peak at 15 d, both total bacterial number and viable bacterial number of V. parahaemolyticus fell slowly, while the CFU number fell more quickly after reaching its peak at 10 d; starved cells shrunk their volumes and turned their shapes into ovals from short rods; starved cells showed more sensitivity to heat and UV; there was no significant difference in the lowest detection limit between starved cells and log-phase ones determined by ELISA; starved cells exhibited a sharply decline in the adherence to skin mucus of large yellow croaker and no specific adhesion was found after starved for 7 d and more; starved cells were less virulent to mouse; the cellular protein of V. parahaemolyticus decreased remarkably at the initial stage of starvation and increased a little at the latter stage. The results indicated that: pathogenic V. parahaemolyticus might survive starvation for a long time in the warm seawater profit from the morphological and physiological changes; the starved cells were less virulent and more sensitive to environmental stresses.
机译:致病型副磷酸溶血剂的数细胞在温热的海水中孵育饥饿研究。结果表明:近饥饿阶段的总细菌总体细菌,活细菌和培养细菌的数量显着增加;在15 d达到峰值后,总细菌数量和活性细菌数量慢慢升高,而CFU编号在10 d达到峰值后更快地下降;饥饿的细胞缩小了它们的体积并将它们的形状转化为从短杆的椭圆形;饥饿的细胞显示出对热和紫外线的更敏感性;饥饿细胞和由ELISA确定的对数阶段之间的最低检测限差异没有显着差异;饥饿的细胞表现出对大黄鱼粘膜的粘附性敏锐下降,并且在饥饿后没有发现特定的粘合性,并且更多;饥饿的细胞对小鼠的毒性较小; V.VarahaeMolyticus的细胞蛋白在饥饿的初始阶段显着降低,后期阶段略微增加。结果表明:致病性V.促杆菌溶解在温暖的海水中从形态和生理变化中获利,可能会存活饥饿;饥饿的细胞对环境胁迫较低,更敏感。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号