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A classification framework for Bacillus anthracis defined by global genomic structure

机译:全球基因组结构定义的炭疽芽孢杆菌分类框架

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摘要

, the causative agent of anthrax, is a considerable global health threat affecting wildlife, livestock, and the general public. In this study, whole‐genome sequence analysis of over 350 isolates was used to establish a new high‐resolution global genotyping framework that is both biogeographically informative and compatible with multiple genomic assays. The data presented in this study shed new light on the diverse global dissemination of this species and indicate that many lineages may be uniquely suited to the geographic regions in which they are found. In addition, we demonstrate that plasmid genomic structure for this species is largely consistent with chromosomal population structure, suggesting vertical inheritance in this bacterium has contributed to its evolutionary persistence. This classification methodology is the first based on population genomic structure for this species and has potential use for local and broader institutions seeking to understand both disease outbreak origins and recent introductions. In addition, we provide access to a newly developed genotyping script as well as the full whole‐genome sequence analyses output for this study, allowing future studies to rapidly employ and append their data in the context of this global collection. This framework may act as a powerful tool for public health agencies, wildlife disease laboratories, and researchers seeking to utilize and expand this classification scheme for further investigations into evolution.
机译:炭疽病的病原体是一种严重的全球健康威胁,影响野生动植物,牲畜和公众。在这项研究中,使用了超过350个分离株的全基因组序列分析来建立一个新的高分辨率全球基因分型框架,该框架既具有生物地理学信息,又可与多种基因组测定兼容。这项研究中提供的数据为该物种在全球的多元化传播提供了新的思路,并表明许多世系可能特别适合发现它们的地理区域。此外,我们证明该物种的质粒基因组结构与染色体种群结构基本一致,这表明该细菌的垂直遗传有助于其进化持久性。这种分类方法是第一个基于该物种种群基因组结构的方法,对于寻求了解疾病暴发的起源和最新介绍的地方和更广泛的机构具有潜在的用途。此外,我们还提供了对新开发的基因分型脚本以及本研究的完整全基因组序列分析输出的访问权限,从而使未来的研究可以在全球范围内快速使用并附加其数据。该框架可以作为公共卫生机构,野生动物疾病实验室以及寻求利用和扩展这种分类方案以进一步研究进化的研究人员的有力工具。

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