首页> 外文期刊>Antonie van Leeuwenhoek: Journal of Microbiology and serology >Pan-genome analysis of Aeromonas hydrophila, Aeromonas veronii and Aeromonas caviae indicates phylogenomic diversity and greater pathogenic potential for Aeromonas hydrophila
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Pan-genome analysis of Aeromonas hydrophila, Aeromonas veronii and Aeromonas caviae indicates phylogenomic diversity and greater pathogenic potential for Aeromonas hydrophila

机译:嗜水气单胞菌,Veronii气单胞菌和豚鼠气单胞菌的全基因组分析表明,嗜水气单胞菌的植物学多样性和更大的致病潜力

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摘要

Aeromonas species are important pathogens of fishes and aquatic animals capable of infecting humans and other animals via food. Due to the paucity of pan-genomic studies on aeromonads, the present study was undertaken to analyse the pan-genome of three clinically important Aeromonas species (A. hydrophila, A. veronii, A. caviae). Results of pan-genome analysis revealed an open pan-genome for all three species with pan-genome sizes of 9181, 7214 and 6884 genes for A. hydrophila, A. veronii and A. caviae, respectively. Core-genome: pan-genome ratio (R-CP) indicated greater genomic diversity for A. hydrophila and interestingly R-CP emerged as an effective indicator to gauge genomic diversity which could possibly be extended to other organisms too. Phylogenomic network analysis highlighted the influence of homologous recombination and lateral gene transfer in the evolution of Aeromonas spp. Prediction of virulence factors indicated no significant difference among the three species though analysis of pathogenic potential and acquired antimicrobial resistance genes revealed greater hazards from A. hydrophila. In conclusion, the present study highlighted the usefulness of whole genome analyses to infer evolutionary cues for Aeromonas species which indicated considerable phylogenomic diversity for A. hydrophila and hitherto unknown genomic evidence for pathogenic potential of A. hydrophila compared to A. veronii and A. caviae.
机译:气单胞菌是鱼类和水生动物的重要病原体,能够通过食物感染人类和其他动物。由于对气单胞菌的泛基因组研究很少,因此进行本研究以分析三种临床上重要的气单胞菌物种(嗜水气单胞菌,ver。a。veronii,ca。caviae)的全基因组。泛基因组分析结果显示,这三个物种均具有开放的泛基因组,其全基因组大小分别为嗜水链球菌,ver。a。veronii和ca. caviae的9181、7214和6884个基因。核心基因组:泛基因组比率(R-CP)表明嗜水链球菌具有更大的基因组多样性,有趣的是,R-CP成为衡量基因组多样性的有效指标,可能也扩展到其他生物。系统进化网络分析突出了同源重组和侧向基因转移对气单胞菌进化的影响。尽管对致病性潜力和获得的抗菌素耐药基因的分析显示,嗜水链球菌的危害更大,但毒力因子的预测表明这三个物种之间没有显着差异。总而言之,本研究强调了全基因组分析对推断气单胞菌物种进化线索的有用性,这表明嗜水气单胞菌具有相当的植物学多样性,而迄今为止,与嗜水气单胞菌和ca. avia相比,嗜水气单胞菌的致病潜能的迄今未知的基因组证据。 。

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