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Gliding Motility Revisited: How Do the Myxobacteria Move without Flagella?

机译:重新研究滑翔运动:粘膜细菌如何运动而没有鞭毛?

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Summary: In bacteria, motility is important for a wide variety of biological functions such as virulence, fruiting body formation, and biofilm formation. While most bacteria move by using specialized appendages, usually external or periplasmic flagella, some bacteria use other mechanisms for their movements that are less well characterized. These mechanisms do not always exhibit obvious motility structures. Myxococcus xanthus is a motile bacterium that does not produce flagella but glides slowly over solid surfaces. How M. xanthus moves has remained a puzzle that has challenged microbiologists for over 50 years. Fortunately, recent advances in the analysis of motility mutants, bioinformatics, and protein localization have revealed likely mechanisms for the two M. xanthus motility systems. These results are summarized in this review.
机译:简介:在细菌中,运动力对于多种生物学功能(如毒力,子实体形成和生物膜形成)很重要。尽管大多数细菌通过使用专门的附肢(通常是外部或周质鞭毛)进行移动,但某些细菌的移动机制还缺乏其他特征。这些机制并不总是表现出明显的运动结构。黄腐粘球菌是一种能移动的细菌,不会产生鞭毛,但会在固体表面缓慢滑动。过去50多年来,黄腐杆菌的移动方式一直是困扰微生物学家的难题。幸运的是,在运动性突变体,生物信息学和蛋白质定位分析方面的最新进展已经揭示了两个黄腐分支线虫运动系统的可能机制。这些结果总结在这篇评论中。

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