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Nutrient-dependent rapid transition of Vibrio cholerae to coccoid morphology and expression of the toxin co-regulated pilus in this form

机译:霍乱弧菌向营养体的快速转化为类球菌形态和这种形式的毒素共同调控菌毛的表达

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摘要

The acute diarrhoeal disease cholera is caused by the aquatic pathogen Vibrio cholerae upon ingestion of contaminated food or water by the human host. The mechanisms by which V. cholerae is able to persist and survive in the host and aquatic environments have been studied for years; however, little is known about the factors involved in the adaptation or response of V. cholerae transitioning between these two environments. The transition from bacillary to coccoid morphology is thought to be one mechanism of survival that V. cholerae uses in response to environmental stress. Coccoid morphology has been observed for V. cholerae while in a viable but non-culturable (VBNC) state, during times of nutrient limitation, and in the water-diluted stool of cholera-infected patients. In this study we sought conditions to study the coccoid morphology of V. cholerae, and found that coccoid-shaped cells can express and produce the virulence factor toxin co-regulated pilus (TCP) and are able to colonize the infant mouse to the same extent as bacillus-shaped cells. This study suggests that TCP may be one factor that V. cholerae utilizes for adaptation and survival during the transition between the host and the aquatic environment.
机译:急性腹泻性霍乱是由人类宿主摄入受污染的食物或水引起的水生病原性霍乱弧菌引起的。霍乱弧菌能够在寄主和水生环境中持续生存的机制已经研究了很多年。然而,关于霍乱弧菌在这两种环境之间过渡的适应或反应所涉及的因素知之甚少。从细菌形态到球状形态的转变被认为是霍乱弧菌响应环境压力而使用的生存机制之一。霍乱弧菌在活体但不可培养(VBNC)的状态下,在营养限制期间,以及在霍乱感染患者的水稀释粪便中都观察到了球状形态。在这项研究中,我们寻求条件来研究霍乱弧菌的球状形态,并发现球状细胞可以表达并产生毒力因子毒素共调节菌毛(TCP),并且能够在相同程度上定居婴儿小鼠如杆菌形细胞。这项研究表明,TCP可能是霍乱弧菌在寄主和水生环境之间过渡期间用于适应和生存的一个因素。

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