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Genomic Characterization of Burkholderia pseudomallei Isolates Selected for Medical Countermeasures Testing: Comparative Genomics Associated with Differential Virulence

机译:选择用于医学对策测试的伯克霍尔德菌假苹果毒株的基因组表征:与差异毒力相关的比较基因组学

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摘要

Burkholderia pseudomallei is the causative agent of melioidosis and a potential bioterrorism agent. In the development of medical countermeasures against B. pseudomallei infection, the US Food and Drug Administration (FDA) animal Rule recommends using well-characterized strains in animal challenge studies. In this study, whole genome sequence data were generated for 6 B. pseudomallei isolates previously identified as candidates for animal challenge studies; an additional 5 isolates were sequenced that were associated with human inhalational melioidosis. A core genome single nucleotide polymorphism (SNP) phylogeny inferred from a concatenated SNP alignment from the 11 isolates sequenced in this study and a diverse global collection of isolates demonstrated the diversity of the proposed Animal Rule isolates. To understand the genomic composition of each isolate, a large-scale blast score ratio (LS-BSR) analysis was performed on the entire pan-genome; this demonstrated the variable composition of genes across the panel and also helped to identify genes unique to individual isolates. In addition, a set of ~550 genes associated with pathogenesis in B. pseudomallei were screened against the 11 sequenced genomes with LS-BSR. Differential gene distribution for 54 virulence-associated genes was observed between genomes and three of these genes were correlated with differential virulence observed in animal challenge studies using BALB/c mice. Differentially conserved genes and SNPs associated with disease severity were identified and could be the basis for future studies investigating the pathogenesis of B. pseudomallei. Overall, the genetic characterization of the 11 proposed Animal Rule isolates provides context for future studies involving B. pseudomallei pathogenesis, differential virulence, and efficacy to therapeutics.
机译:假伯克霍尔德氏菌是类痔病的病原体,也是潜在的生物恐怖分子。在开发针对假苹果芽孢杆菌感染的医学对策中,美国食品药品监督管理局(FDA)动物法规建议在动物攻击研究中使用特征明确的菌株。在这项研究中,生成了6个B. pseudomallei分离株的全基因组序列数据,这些分离株以前被确定为动物攻毒研究的候选对象。测序了另外5个与人类吸入性类鼻oid病相关的分离株。从本研究中测序的11个分离株的串联SNP比对推断出核心基因组单核苷酸多态性(SNP)系统发育,分离株的全球多样性证明了拟议动物规则分离株的多样性。为了了解每个分离株的基因组组成,对整个泛基因组进行了大规模blast评分比(LS-BSR)分析。这证明了整个面板中基因的可变组成,还有助于鉴定各个分离株特有的基因。此外,用LS-BSR针对11个测序的基因组筛选了约550个与假疟原虫发病机理相关的基因。在基因组之间观察到54个毒力相关基因的差异基因分布,其中三个基因与使用BALB / c小鼠进行的动物攻击研究中观察到的毒力相关。鉴定了与疾病严重性相关的差异保守基因和SNP,它们可以作为今后研究假假芽胞杆菌发病机理的基础。总体而言,拟议的11种动物规则分离株的遗传学特征为今后涉及假苹果芽孢杆菌的发病机理,毒力和治疗功效的研究提供了背景。

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