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细菌泛基因组使基因必需性具有菌株依赖性和可进化性。

A bacterial pan-genome makes gene essentiality strain-dependent and evolvable.

机构信息

Biology Department, Boston College, Chestnut Hill, MA, USA.

Department of Infectious Diseases, St Jude Children's Research Hospital, Memphis, TN, USA.

出版信息

Nat Microbiol. 2022 Oct;7(10):1580-1592. doi: 10.1038/s41564-022-01208-7. Epub 2022 Sep 12.

Abstract

Many bacterial species are represented by a pan-genome, whose genetic repertoire far outstrips that of any single bacterial genome. Here we investigate how a bacterial pan-genome might influence gene essentiality and whether essential genes that are initially critical for the survival of an organism can evolve to become non-essential. By using Transposon insertion sequencing (Tn-seq), whole-genome sequencing and RNA-seq on a set of 36 clinical Streptococcus pneumoniae strains representative of >68% of the species' pan-genome, we identify a species-wide 'essentialome' that can be subdivided into universal, core strain-specific and accessory essential genes. By employing 'forced-evolution experiments', we show that specific genetic changes allow bacteria to bypass essentiality. Moreover, by untangling several genetic mechanisms, we show that gene essentiality can be highly influenced by and/or be dependent on: (1) the composition of the accessory genome, (2) the accumulation of toxic intermediates, (3) functional redundancy, (4) efficient recycling of critical metabolites and (5) pathway rewiring. While this functional characterization underscores the evolvability potential of many essential genes, we also show that genes with differential essentiality remain important antimicrobial drug target candidates, as their inactivation almost always has a severe fitness cost in vivo.

摘要

许多细菌物种都具有泛基因组,其遗传资源远远超过任何单个细菌基因组。在这里,我们研究了细菌泛基因组可能如何影响基因的必需性,以及最初对生物体生存至关重要的必需基因是否能够进化为非必需基因。通过使用转座子插入测序 (Tn-seq)、全基因组测序和 RNA-seq 对一组 36 株具有代表性的临床肺炎链球菌菌株进行研究,这些菌株代表了该物种泛基因组的>68%,我们确定了一个全物种的“必需基因组”,可细分为普遍、核心菌株特异性和辅助必需基因。通过采用“强制进化实验”,我们表明特定的遗传变化可以使细菌绕过必需性。此外,通过梳理几种遗传机制,我们表明基因必需性受以下因素影响很大,或者取决于:(1) 辅助基因组的组成,(2) 有毒中间产物的积累,(3) 功能冗余,(4) 关键代谢物的有效再循环,(5) 途径重排。虽然这种功能特征强调了许多必需基因的可进化潜力,但我们还表明,具有不同必需性的基因仍然是重要的抗菌药物靶标候选基因,因为它们的失活在体内几乎总是会产生严重的适应性代价。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbb1/9519441/b838cef21422/41564_2022_1208_Fig1_HTML.jpg

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