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泛基因组分析空肠弯曲菌:对基因组多样性和毒力特征的洞察。

Pan-Genome Analysis of Campylobacter: Insights on the Genomic Diversity and Virulence Profile.

机构信息

College of Environmental and Life Sciences, Nanning Normal University, Nanning, Guangxi, China.

Key Laboratory of Molecular Biophysics of the Ministry of Education, Hubei Key Laboratory of Bioinformatics and Molecular-Imaging, Department of Bioinformatics and Systems Biology, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, Hubei, China.

出版信息

Microbiol Spectr. 2022 Oct 26;10(5):e0102922. doi: 10.1128/spectrum.01029-22. Epub 2022 Sep 7.

Abstract

The genus Campylobacter contains pathogens that cause bacterial gastroenteritis in humans and animals. Despite large-scale sequencing efforts to raise clinical awareness of Campylobacter, little is known about the diversity and functions of virulence factors. Here, we constructed the pan-genome of Campylobacter using 39 representative genomes, elucidating their genetic diversity, evolutionary characteristics, and virulence and resistance profiles. The Campylobacter pan-genome was open and showed extensive genome variability, with high levels of gene expansion and contraction as the organism evolved. These Campylobacter members had diverse virulence gene content, and six potential core virulence genes (, , , , , and ) have been identified. The conserved mechanisms for Campylobacter pathogenicity were related to adherence, motility, and immune modulation. We emphasized the relative importance of variable virulence genes. Many virulence genes have experienced expansion or contraction in specific lineages, which may be one of the factors causing differences in the content of virulence genes. Additionally, these Campylobacter genomes have a high prevalence of the and genes, which are linked to the CmeABC pump and contribute to multidrug resistance. The genomic variations, core and variable virulence factors, and resistance genes of Campylobacter characterized in this study would contribute to a better understanding of the virulence of Campylobacter and more effective use of candidates for drug development and prevention of Campylobacter infections. Pathogenic members of the genus Campylobacter are recognized as one of the major causative agents of human bacterial gastroenteritis. This study revealed the pan-genome of 39 Campylobacter species, provided the most updated reconstruction of the global virulence gene pool of 39 Campylobacter species, and identified species-related virulence differences. This study highlighted the basic conserved functionality and specificity of pathogenicity that are crucial to infection, which was critical for improving the diagnosis and prevention of Campylobacter infections.

摘要

弯曲菌属包含引起人类和动物细菌性胃肠炎的病原体。尽管进行了大规模的测序工作以提高对弯曲菌属的临床认识,但对毒力因子的多样性和功能知之甚少。在这里,我们使用 39 个代表性基因组构建了弯曲菌属的泛基因组,阐明了它们的遗传多样性、进化特征以及毒力和抗性特征。弯曲菌属的泛基因组是开放的,表现出广泛的基因组变异性,随着生物体的进化,基因的扩张和收缩水平很高。这些弯曲菌成员具有不同的毒力基因组成,并且已经确定了六个潜在的核心毒力基因(、、、、、和)。弯曲菌致病性的保守机制与粘附、运动和免疫调节有关。我们强调了可变毒力基因的相对重要性。许多毒力基因在特定谱系中经历了扩张或收缩,这可能是导致毒力基因含量差异的因素之一。此外,这些弯曲菌基因组中存在大量的和基因,这些基因与 CmeABC 泵有关,有助于多药耐药。本研究中弯曲菌的基因组变异、核心和可变毒力因子以及耐药基因的特征将有助于更好地理解弯曲菌的毒力,并更有效地利用候选药物开发和预防弯曲菌感染。弯曲菌属的致病性成员被认为是人类细菌性胃肠炎的主要病原体之一。本研究揭示了 39 种弯曲菌的泛基因组,提供了 39 种弯曲菌全球毒力基因库的最新重建,并确定了与物种相关的毒力差异。本研究强调了感染过程中基本保守的功能和特异性,这对于改善弯曲菌感染的诊断和预防至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e91c/9602946/adcf045e8d89/spectrum.01029-22-f001.jpg

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