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Genetic Diversity of Tick-Borne Rickettsial Pathogens; Insights Gained from Distant Strains

机译:Tick-Borne立克次体病原菌的遗传多样性;遥远菌株的见解

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The ability to capture genetic variation with unprecedented resolution improves our understanding of bacterial populations and their ability to cause disease. The goal of the pathogenomics era is to define genetic diversity that results in disease. Despite the economic losses caused by vector-borne bacteria in the Order Rickettsiales, little is known about the genetic variants responsible for observed phenotypes. The tick-transmitted rickettsial pathogen Anaplasma marginale infects cattle in tropical and subtropical regions worldwide, including Australia. Genomic analysis of North American A. marginale strains reveals a closed core genome defined by high levels of Single Nucleotide Polymorphisms (SNPs). Here we report the first genome sequences and comparative analysis for Australian strains that differ in virulence and transmissibility. A list of genetic differences that segregate with phenotype was evaluated for the ability to distinguish the attenuated strain from virulent field strains. Phylogenetic analyses of the Australian strains revealed a marked evolutionary distance from all previously sequenced strains. SNP analysis showed a strikingly reduced genetic diversity between these strains, with the smallest number of SNPs detected between any two A. marginale strains. The low diversity between these phenotypically distinct bacteria presents a unique opportunity to identify the genetic determinants of virulence and transmission.
机译:以前所未有的分辨率捕获遗传变异的能力提高了我们对细菌种群及其致病能力的了解。致病基因组学时代的目标是定义导致疾病的遗传多样性。尽管在立克次体中由媒介传播的细菌造成了经济损失,但对导致观察到的表型的遗传变异知之甚少。 tick传播的立克次氏菌病原体无浆无核体(Anaplasma marginale)感染了包括澳大利亚在内的全球热带和亚热带地区的牛。北美A.aleale菌株的基因组分析揭示了一个封闭的核心基因组,该基因组由高水平的单核苷酸多态性(SNP)定义。在这里,我们报告了毒力和传播力不同的澳大利亚菌株的第一个基因组序列和比较分析。评估了与表型分离的遗传差异列表,以区分减毒株和强毒株。对澳大利亚菌株的系统进化分析显示,与所有先前测序的菌株相比,进化距离明显。 SNP分析显示这些菌株之间的遗传多样性显着降低,在任何两个边缘拟南芥菌株之间检测到的SNP数量最少。这些表型不同的细菌之间的低多样性为鉴定毒力和传播的遗传决定因素提供了独特的机会。

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