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[细菌群体运动性的表征:综述]

[Characterization of bacterial swarming motility: a review].

作者信息

Zhang Chenxi, Liu Dingkuo

机构信息

Key Laboratory of Systems Bioengineering of Ministry of Education, School of Chemical Engineering and Technology, Tianjin University, Tianjin 300350, China.

Tianjin Key Laboratory of Biological Feed Additives, Tianjin 300383, China.

出版信息

Sheng Wu Gong Cheng Xue Bao. 2023 Aug 25;39(8):3188-3203. doi: 10.13345/j.cjb.220892.

Abstract

Swarming motility is a typical synergistic motion, in which bacteria use flagella and Type Ⅳ Pili together to move collectively on semi-solid surfaces. Swarming motility is a hot topic of research in the field of microbiology because of its close relationship with biofilm formation, fruiting bodies formation, pathogen invasion and microbial dispersal and symbiosis. A large number of studies have been conducted on bacterial swarming motility, including changes in the expression of key proteins, changes in chemical communications between bacteria as well as mechanical changes. The expression of flagellin and the level of intracellular c-di-GMP complicatedly regulates the collective behavior of bacteria in colonies, which consequently impacts the swarming motility. The unique physical properties of swarmer cells are conducive to the expansion of the whole colony. Factors such as nutrient and water content in the surrounding growth environment of bacteria also affect the ability of bacteria to swarm to different degrees. It is challenging to construct a universal model of swarming motility based on the molecular mechanisms of swarming in the future.

摘要

群体运动是一种典型的协同运动,其中细菌共同利用鞭毛和Ⅳ型菌毛在半固体表面上集体移动。由于群体运动与生物膜形成、子实体形成、病原体入侵以及微生物扩散和共生密切相关,因此它是微生物学领域的一个热门研究课题。关于细菌群体运动已经进行了大量研究,包括关键蛋白表达的变化、细菌之间化学通讯的变化以及机械变化。鞭毛蛋白的表达和细胞内c-di-GMP的水平复杂地调节着菌落中细菌的集体行为,从而影响群体运动。游动细胞独特的物理特性有利于整个菌落的扩展。细菌周围生长环境中的营养物质和水分含量等因素也会不同程度地影响细菌群体运动的能力。未来基于群体运动分子机制构建通用模型具有挑战性。

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