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来自[具体来源1]和[具体来源2]的“多面手”鞭毛是从一种祖先β-变形菌水平获得的。

The "Jack-of-all-Trades" Flagellum From and Was Horizontally Acquired From an Ancestral β-Proteobacterium.

作者信息

Ferreira Josie L, Coleman Izaak, Addison Max L, Zachs Tobias, Quigley Bonnie L, Wuichet Kristin, Beeby Morgan

机构信息

Department of Life Sciences, Imperial College London, London, United Kingdom.

Department of Biomedical Informatics, Vanderbilt University Medical Center, Nashville, TN, United States.

出版信息

Front Microbiol. 2021 Mar 30;12:643180. doi: 10.3389/fmicb.2021.643180. eCollection 2021.

Abstract

The γ-proteobacteria are a group of diverse bacteria including pathogenic , and species. The majority swim in liquids with polar, sodium-driven flagella and swarm on surfaces with lateral, non-chemotactic flagella. Notable exceptions are the enteric Enterobacteriaceae such as and . Many of the well-studied Enterobacteriaceae are gut bacteria that both swim and swarm with the same proton-driven peritrichous flagella. How different flagella evolved in closely related lineages, however, has remained unclear. Here, we describe our phylogenetic finding that Enterobacteriaceae flagella are not native polar or lateral γ-proteobacterial flagella but were horizontally acquired from an ancestral β-proteobacterium. Using electron cryo-tomography and subtomogram averaging, we confirmed that Enterobacteriaceae flagellar motors resemble contemporary β-proteobacterial motors and are distinct to the polar and lateral motors of other γ-proteobacteria. Structural comparisons support a model in which γ-proteobacterial motors have specialized, suggesting that acquisition of a β-proteobacterial flagellum may have been beneficial as a general-purpose motor suitable for adjusting to diverse conditions. This acquisition may have played a role in the development of the enteric lifestyle.

摘要

γ-变形菌是一类多样的细菌,包括致病性细菌和其他种类。大多数γ-变形菌在液体中靠极性的、由钠驱动的鞭毛游动,在表面靠侧向的、非趋化性鞭毛群体游动。值得注意的例外是肠道肠杆菌科,如大肠杆菌和沙门氏菌。许多经过充分研究的肠杆菌科细菌是肠道细菌,它们靠相同的质子驱动的周生鞭毛游动和群体游动。然而,在密切相关的谱系中不同的鞭毛是如何进化的,仍然不清楚。在这里,我们描述了我们的系统发育研究结果,即肠杆菌科的鞭毛不是原生的极性或侧向γ-变形菌鞭毛,而是从一个祖先β-变形菌水平获得的。使用电子冷冻断层扫描和亚断层图平均技术,我们证实肠杆菌科的鞭毛马达类似于当代β-变形菌的马达,与其他γ-变形菌的极性和侧向马达不同。结构比较支持一种γ-变形菌马达已经特化的模型,这表明获得β-变形菌鞭毛可能作为一种适合适应多种条件的通用马达是有益的。这种获得可能在肠道生活方式的发展中起到了作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/98c3/8042155/64f0d5494844/fmicb-12-643180-g001.jpg

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