白喉棒状杆菌复合体潜在毒力菌种胭脂红棒状杆菌的首个庞基因组

Bacteria Pub Date : 2024-05-16 DOI:10.3390/bacteria3020007
Fernanda Diniz Prates, Max Roberto Batista Araújo, Eduarda Guimarães Sousa, Juliana Nunes Ramos, M. Viana, S. Soares, L. S. dos Santos, V. Azevedo
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引用次数: 0

摘要

胭脂红棒状杆菌(Corynebacterium rouxii)是最近描述的白喉棒状杆菌(Corynebacterium diphtheriae)复合菌种之一。由于该菌可能感染不同的宿主,并携带产生白喉毒素的毒素基因,我们在这项工作中首次对其进行了泛基因组分析。我们共纳入了在线数据库中的 15 个基因组。在通过基因组分类确认分离物的分类位置后,我们对这些基因组进行了基因组可塑性、基因同源性和泛基因组预测分析。此外,还对毒力基因和抗菌药耐药性基因进行了研究。最后,通过分子分型、聚类和系统发育分析获得了流行病学数据。我们的数据表明,该物种内部存在遗传多样性,但同源性较低。然而,基因内容是广泛保守的,鲮鱼基因组由 2606 个基因家族组成,其中 1916 个在核心基因组中,80 个与独特基因有关。发现了噬菌体、插入序列和基因组岛。此外,还发现了 I-E 型 CRISPR-Cas 系统。除了毒素基因外,还预测出了参与粘附和铁获取的决定因子以及两个假定的抗菌药耐药性基因。这些发现为了解该物种的致病性、进化和多样性提供了宝贵的信息。未来,我们的数据将有助于疫苗学和流行病学等不同领域的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
First Pangenome of Corynebacterium rouxii, a Potentially Toxigenic Species of Corynebacterium diphtheriae Complex
Corynebacterium rouxii is one of the recently described species of the Corynebacterium diphtheriae complex. As this species can potentially infect different hosts and harbor the tox gene, producing diphtheria toxin, we present its first pangenomic analysis in this work. A total of fifteen genomes deposited in online databases were included. After confirming the taxonomic position of the isolates by genomic taxonomy, the genomes were submitted to genomic plasticity, gene synteny, and pangenome prediction analyses. In addition, virulence and antimicrobial resistance genes were investigated. Finally, epidemiological data were obtained through molecular typing, clustering, and phylogenetic analysis. Our data demonstrated genetic diversity within the species with low synteny. However, the gene content is extensively conserved, and the pangenome is composed of 2606 gene families, of which 1916 are in the core genome and 80 are related to unique genes. Prophages, insertion sequences, and genomic islands were found. A type I-E CRISPR-Cas system was also detected. Besides the tox gene, determinants involved in adhesion and iron acquisition and two putative antimicrobial resistance genes were predicted. These findings provide valuable insight about this species’ pathogenicity, evolution, and diversity. In the future, our data can contribute to different areas, including vaccinology and epidemiology.
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