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自然环境中与啮齿动物相关的巴尔通体的基因组结构可塑性。

Genomic structural plasticity of rodent-associated Bartonella in nature.

机构信息

Koret School of Veterinary Medicine, The Hebrew University of Jerusalem, Rehovot, Israel.

The Mantoux Bioinformatics Institute of the Nancy and Stephen Grand Israel National Center for Personalized Medicine, Weizmann Institute of Science, Rehovot, Israel.

出版信息

Mol Ecol. 2022 Jul;31(14):3784-3797. doi: 10.1111/mec.16547. Epub 2022 Jun 10.

Abstract

Rodent-associated Bartonella species have shown a remarkable genetic diversity and pathogenic potential. To further explore the extent of the natural intraspecific genomic variation and its potential role as an evolutionary driver, we focused on a single genetically diverse Bartonella species, Bartonella krasnovii, which circulates among gerbils and their associated fleas. Twenty genomes from 16 different B. krasnovii genotypes were fully characterized through a genome sequencing assay (using short and long read sequencing), pulse field gel electrophoresis (PFGE), and PCR validation. Genomic analyses were performed in comparison to the B. krasnovii strain OE 1-1. While, single nucleotide polymorphism represented only a 0.3% of the genome variation, structural diversity was identified in these genomes, with an average of 51 ± 24 structural variation (SV) events per genome. Interestingly, a large proportion of the SVs (>40%) was associated with prophages. Further analyses revealed that most of the SVs, and prophage insertions were found at the chromosome replication termination site (ter), suggesting this site as a plastic zone of the B. krasnovii chromosome. Accordingly, six genomes were found to be unbalanced, and essential genes near the ter showed a shift between the leading and lagging strands, revealing the SV effect on these genomes. In summary, our findings demonstrate the extensive genomic diversity harbored by wild B. krasnovii strains and suggests that its diversification is initially promoted by structural changes, probably driven by phages. These events may constantly feed the system with novel genotypes that ultimately lead to inter- and intraspecies competition and adaptation.

摘要

啮齿动物相关的巴尔通体物种表现出显著的遗传多样性和致病潜力。为了进一步探索种内基因组自然变异的程度及其作为进化驱动力的潜在作用,我们专注于单一遗传上多样化的巴尔通体物种,即巴尔通体 krasnovii,它在沙鼠及其相关跳蚤中传播。通过全基因组测序分析(使用短读长和长读长测序)、脉冲场凝胶电泳(PFGE)和 PCR 验证,对来自 16 种不同 B. krasnovii 基因型的 20 个基因组进行了全面表征。基因组分析与 B. krasnovii 菌株 OE 1-1 进行了比较。虽然单核苷酸多态性仅占基因组变异的 0.3%,但这些基因组中存在结构多样性,平均每个基因组有 51±24 个结构变异(SV)事件。有趣的是,大量的 SV(>40%)与前噬菌体有关。进一步的分析表明,大多数 SV 和前噬菌体插入位于染色体复制终止位点(ter),表明该位点是 B. krasnovii 染色体的可塑性区域。因此,发现有 6 个基因组是不平衡的,ter 附近的必需基因在先导链和滞后链之间发生了移位,揭示了 SV 对这些基因组的影响。总之,我们的研究结果表明,野生 B. krasnovii 菌株具有广泛的基因组多样性,并表明其多样化最初是由结构变化推动的,可能是由噬菌体驱动的。这些事件可能不断为新的基因型提供新的基因型,最终导致种间和种内竞争和适应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62c2/9540758/3bb9e987e531/MEC-31-3784-g001.jpg

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