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在 的不同成员中,孢子形成基因集的保守性和进化。

Conservation and Evolution of the Sporulation Gene Set in Diverse Members of the .

机构信息

National Center for Biotechnology Information, National Library of Medicine, National Institutes of Healthgrid.94365.3d, Bethesda, Maryland, USA.

出版信息

J Bacteriol. 2022 Jun 21;204(6):e0007922. doi: 10.1128/jb.00079-22. Epub 2022 May 31.

Abstract

The current classification of the phylum (new name, ) features eight distinct classes, six of which include known spore-forming bacteria. In Bacillus subtilis, sporulation involves up to 500 genes, many of which do not have orthologs in other bacilli and/or clostridia. Previous studies identified about 60 sporulation genes of B. subtilis that were shared by all spore-forming members of the . These genes are referred to as the sporulation core or signature, although many of these are also found in genomes of nonsporeformers. Using an expanded set of 180 firmicute genomes from 160 genera, including 76 spore-forming species, we investigated the conservation of the sporulation genes, in particular seeking to identify lineages that lack some of the genes from the conserved sporulation core. The results of this analysis confirmed that many small acid-soluble spore proteins (SASPs), spore coat proteins, and germination proteins, which were previously characterized in bacilli, are missing in spore-forming members of and other classes of . A particularly dramatic loss of sporulation genes was observed in the spore-forming members of the families and . Fifteen species from diverse lineages were found to carry (-interrupting) elements of different sizes that all encoded SpoIVCA-like recombinases but did not share any other genes. Phylogenetic trees built from concatenated alignments of sporulation proteins and ribosomal proteins showed similar topology, indicating an early origin and subsequent vertical inheritance of the sporulation genes. Many members of the phylum () are capable of producing endospores, which enhance the survival of important Gram-positive pathogens that cause such diseases as anthrax, botulism, colitis, gas gangrene, and tetanus. We show that the core set of sporulation genes, defined previously through genome comparisons of several bacilli and clostridia, is conserved in a wide variety of sporeformers from several distinct lineages of . We also detected widespread loss of sporulation genes in many organisms, particularly within the families and Members of these families, such as Lysinibacillus sphaericus and Clostridium innocuum, could be excellent model organisms for studying sporulation mechanisms, such as engulfment, formation of the spore coat, and spore germination.

摘要

目前的 (新名称)门分类特征为 8 个不同的类群,其中 6 个类群包含已知的芽孢形成细菌。在枯草芽孢杆菌中,芽孢形成涉及多达 500 个基因,其中许多基因在其他芽孢杆菌和/或梭菌中没有同源基因。先前的研究鉴定了枯草芽孢杆菌中约 60 个芽孢形成基因,这些基因在 中的所有芽孢形成成员中共享。这些基因被称为芽孢形成核心或特征,尽管其中许多基因也存在于非芽孢形成体的基因组中。使用来自 160 个属的 180 个Firmicute 基因组的扩展集,包括 76 个芽孢形成物种,我们研究了芽孢形成基因的保守性,特别是试图确定缺乏保守芽孢形成核心某些基因的谱系。该分析的结果证实,许多先前在芽孢杆菌中表征的小酸溶性孢子蛋白(SASPs)、孢子衣蛋白和发芽蛋白在 和其他 类群的芽孢形成成员中缺失。在芽孢形成成员中观察到芽孢形成基因的特别显著丢失家族和 。从不同谱系中发现了 15 个物种携带不同大小的 (-中断)元件,所有这些元件都编码 SpoIVCA 样重组酶,但不共享任何其他基因。从芽孢形成蛋白和核糖体蛋白的串联比对构建的系统发育树显示出相似的拓扑结构,表明芽孢形成基因的早期起源和随后的垂直遗传。许多门()的成员能够产生内生孢子,这增强了炭疽、肉毒梭菌、结肠炎、气性坏疽和破伤风等疾病的重要革兰氏阳性病原体的生存能力。我们表明,以前通过对几种芽孢杆菌和梭菌的基因组比较定义的核心芽孢形成基因集在来自不同谱系的多种芽孢形成体中是保守的。我们还在许多生物体中检测到广泛的芽孢形成基因丢失,尤其是在家族和 中。这些家族的成员,如球形赖氨酸芽孢杆菌和 innocuum梭菌,可能是研究芽孢形成机制(如吞噬、孢子衣形成和孢子发芽)的极好模型生物。

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