地球细菌:重新定义细菌包膜的多样性、生物发生和进化

IF 69.2 1区 生物学 Q1 MICROBIOLOGY
Basile Beaud Benyahia, Najwa Taib, Christophe Beloin, Simonetta Gribaldo
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引用次数: 0

摘要

细菌包膜是最古老、最基本的细胞成分之一,传统上被分为革兰氏阳性(单膜)和革兰氏阴性(双膜)。最近具有里程碑意义的研究挑战了微生物学中的一个重要范式,推断出细菌的最后一个共同祖先具有单膜包膜,而外膜(OM)在进化过程中一再丧失,从而产生了单膜细菌。耐人寻味的是,外膜丧失似乎只发生在两大细菌支系之一的地球细菌中。在这篇综述中,我们介绍了目前关于 Terrabacteria 的知识。我们描述了它们的多样性和系统发育,然后重点介绍了 Terrabacteria 细胞包膜的巨大表型多样性,这些表型与教科书上的双膜和单膜示例有很大偏差,对经典的革兰氏阳性-革兰氏阴性划分提出了挑战。我们强调了地球细菌中涉及 OM 生物发生的系统与经典的双球菌实验模型的显著差异,以及它们如何为细菌细胞包膜的多样性和生物发生提供了新的见解。我们还讨论了可能导致 OM 多次丧失的潜在进化步骤,并推测了最早的 OM 可能是如何在最后一个细菌共同祖先之前出现的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Terrabacteria: redefining bacterial envelope diversity, biogenesis and evolution

Terrabacteria: redefining bacterial envelope diversity, biogenesis and evolution

The bacterial envelope is one of the oldest and most essential cellular components and has been traditionally divided into Gram-positive (monoderm) and Gram-negative (diderm). Recent landmark studies have challenged a major paradigm in microbiology by inferring that the last bacterial common ancestor had a diderm envelope and that the outer membrane (OM) was lost repeatedly in evolution to give rise to monoderms. Intriguingly, OM losses appear to have occurred exclusively in the Terrabacteria, one of the two major clades of bacteria. In this Review, we present current knowledge about the Terrabacteria. We describe their diversity and phylogeny and then highlight the vast phenotypic diversity of the Terrabacteria cell envelopes, which display large deviations from the textbook examples of diderms and monoderms, challenging the classical Gram-positive–Gram-negative divide. We highlight the striking differences in the systems involved in OM biogenesis in Terrabacteria with respect to the classical diderm experimental models and how they provide novel insights into the diversity and biogenesis of the bacterial cell envelope. We also discuss the potential evolutionary steps that might have led to the multiple losses of the OM and speculate on how the very first OM might have emerged before the last bacterial common ancestor.

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来源期刊
Nature Reviews Microbiology
Nature Reviews Microbiology 生物-微生物学
CiteScore
74.00
自引率
0.50%
发文量
149
审稿时长
6-12 weeks
期刊介绍: At Nature Reviews Microbiology, our goal is to become the leading source of reviews and commentaries for the scientific community we cater to. We are dedicated to publishing articles that are not only authoritative but also easily accessible, supplementing them with clear and concise figures, tables, and other visual aids. Our objective is to offer an unparalleled service to authors, referees, and readers, and we continuously strive to maximize the usefulness and impact of each article we publish. With a focus on Reviews, Perspectives, and Comments spanning the entire field of microbiology, our wide scope ensures that the work we feature reaches the widest possible audience.
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