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Genome-Wide SNP-Genotyping Array to Study the Evolution of the Human Pathogen Vibrio vulnificus Biotype 3

机译:全基因组SNP基因分型阵列来研究人类病原性弧菌弧菌生物型3的演变。

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摘要

Vibrio vulnificus is an aquatic bacterium and an important human pathogen. Strains of V. vulnificus are classified into three different biotypes. The newly emerged biotype 3 has been found to be clonal and restricted to Israel. In the family Vibrionaceae, horizontal gene transfer is the main mechanism responsible for the emergence of new pathogen groups. To better understand the evolution of the bacterium, and in particular to trace the evolution of biotype 3, we performed genome-wide SNP genotyping of 254 clinical and environmental V. vulnificus isolates with worldwide distribution recovered over a 30-year period, representing all phylogeny groups. A custom single-nucleotide polymorphism (SNP) array implemented on the Illumina GoldenGate platform was developed based on 570 SNPs randomly distributed throughout the genome. In general, the genotyping results divided the V. vulnificus species into three main phylogenetic lineages and an additional subgroup, clade B, consisting of environmental and clinical isolates from Israel. Data analysis suggested that 69% of biotype 3 SNPs are similar to SNPs from clade B, indicating that biotype 3 and clade B have a common ancestor. The rest of the biotype 3 SNPs were scattered along the biotype 3 genome, probably representing multiple chromosomal segments that may have been horizontally inserted into the clade B recipient core genome from other phylogroups or bacterial species sharing the same ecological niche. Results emphasize the continuous evolution of V. vulnificus and support the emergence of new pathogenic groups within this species as a recurrent phenomenon. Our findings contribute to a broader understanding of the evolution of this human pathogen.
机译:创伤弧菌是一种水生细菌,也是一种重要的人类病原体。创伤弧菌菌株被分为三种不同的生物型。已经发现新出现的生物型3是克隆的,并且仅限于以色列。在弧菌科中,水平基因转移是导致新病原体群出现的主要机制。为了更好地了解细菌的进化,尤其是追踪生物型3的进化,我们对254种临床和环境中的V. vulnificus分离株进行了全基因组SNP基因分型,这些分离株在30年的时间里在世界范围内得到了回收,代表了所有系统发育组。基于在整个基因组中随机分布的570个SNP,开发了在Illumina GoldenGate平台上实现的定制单核苷酸多态性(SNP)阵列。总的来说,基因分型结果将V. vulnificus物种分为三个主要的系统发育谱系,另一个亚类,进化枝B,由以色列的环境和临床分离株组成。数据分析表明69%的生物型3 SNP与进化枝B的SNP相似,表明生物型3和进化枝B具有相同的祖先。其余的3型生物SNPs沿3型生物基因组散布,可能代表了多个染色体片段,这些片段可能已从具有相同生态位的其他物种或细菌物种水平插入进化枝B受体核心基因组中。结果强调了V. vulnificus的持续进化,并支持该物种内新的致病基团的出现作为一种复发现象。我们的发现有助于更广泛地了解这种人类病原体的进化。

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