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全面的弯曲菌属基因组特征分析揭示了其基因组多样化的一些潜在机制。

Comprehensive genomic characterization of campylobacter genus reveals some underlying mechanisms for its genomic diversification.

机构信息

BGI-Shenzhen, Shenzhen, Guangdong Province, China.

出版信息

PLoS One. 2013 Aug 5;8(8):e70241. doi: 10.1371/journal.pone.0070241. Print 2013.

Abstract

Campylobacter species.are phenotypically diverse in many aspects including host habitats and pathogenicities, which demands comprehensive characterization of the entire Campylobacter genus to study their underlying genetic diversification. Up to now, 34 Campylobacter strains have been sequenced and published in public databases, providing good opportunity to systemically analyze their genomic diversities. In this study, we first conducted genomic characterization, which includes genome-wide alignments, pan-genome analysis, and phylogenetic identification, to depict the genetic diversity of Campylobacter genus. Afterward, we improved the tetranucleotide usage pattern-based naïve Bayesian classifier to identify the abnormal composition fragments (ACFs, fragments with significantly different tetranucleotide frequency profiles from its genomic tetranucleotide frequency profiles) including horizontal gene transfers (HGTs) to explore the mechanisms for the genetic diversity of this organism. Finally, we analyzed the HGTs transferred via bacteriophage transductions. To our knowledge, this study is the first to use single nucleotide polymorphism information to construct liable microevolution phylogeny of 21 Campylobacter jejuni strains. Combined with the phylogeny of all the collected Campylobacter species based on genome-wide core gene information, comprehensive phylogenetic inference of all 34 Campylobacter organisms was determined. It was found that C. jejuni harbors a high fraction of ACFs possibly through intraspecies recombination, whereas other Campylobacter members possess numerous ACFs possibly via intragenus recombination. Furthermore, some Campylobacter strains have undergone significant ancient viral integration during their evolution process. The improved method is a powerful tool for bacterial genomic analysis. Moreover, the findings would provide useful information for future research on Campylobacter genus.

摘要

弯曲菌属。在许多方面表现出表型多样性,包括宿主栖息地和致病性,这要求对整个弯曲菌属进行全面表征,以研究其潜在的遗传多样性。迄今为止,已有 34 株弯曲菌菌株在公共数据库中测序并发表,为系统分析其基因组多样性提供了良好的机会。在这项研究中,我们首先进行了基因组特征分析,包括全基因组比对、泛基因组分析和系统发育鉴定,以描绘弯曲菌属的遗传多样性。此后,我们改进了基于四核苷酸使用模式的朴素贝叶斯分类器,以识别异常组成片段(ACFs,片段的四核苷酸频率分布与其基因组的四核苷酸频率分布显著不同),包括水平基因转移(HGTs),以探索该生物体遗传多样性的机制。最后,我们分析了通过噬菌体转导转移的 HGTs。据我们所知,这项研究首次使用单核苷酸多态性信息构建了 21 株空肠弯曲菌的可靠微进化系统发育。结合基于全基因组核心基因信息收集的所有弯曲菌种的系统发育,确定了所有 34 种弯曲菌的综合系统发育推断。结果发现,空肠弯曲菌可能通过种内重组而含有大量的 ACFs,而其他弯曲菌成员可能通过种间重组而具有大量的 ACFs。此外,一些弯曲菌菌株在其进化过程中经历了显著的古老病毒整合。改进的方法是细菌基因组分析的有力工具。此外,这些发现将为弯曲菌属的未来研究提供有用的信息。

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