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Investigation of the Evolutionary Development of the Genus Bifidobacterium by Comparative Genomics

机译:比较基因组学研究双歧杆菌属的进化发育

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The Bifidobacterium genus currently encompasses 48 recognized taxa, which have been isolated from different ecosystems. However, the current phylogeny of bifidobacteria is hampered by the relative paucity of genotypic data. Here, we reassessed the taxonomy of this bacterial genus using genome-based approaches, which demonstrated that the previous taxonomic view of bifidobacteria contained several inconsistencies. In particular, high levels of genetic relatedness were shown to exist between particular Bifidobacterium taxa which would not justify their status as separate species. The results presented are here based on average nucleotide identity analysis involving the genome sequences for each type strain of the 48 bifidobacterial taxa, as well as phylogenetic comparative analysis of the predicted core genome of the Bifidobacterium genus. The results of this study demonstrate that the availability of complete genome sequences allows the reconstruction of a more robust bifidobacterial phylogeny than that obtained from a single gene-based sequence comparison, thus discouraging the assignment of a new or separate bifidobacterial taxon without such a genome-based validation.
机译:双歧杆菌属目前包括48种公认的分类单元,这些分类单元是从不同的生态系统中分离出来的。但是,目前双歧杆菌的系统发育受到基因型数据相对缺乏的阻碍。在这里,我们使用基于基因组的方法重新评估了该细菌属的分类学,这证明了以前双歧杆菌的分类学观点包含几个不一致之处。特别是,特定双歧杆菌类​​群之间存在高水平的遗传相关性,这不能证明其作为单独物种的地位。这里给出的结果基于平均核苷酸同一性分析,该分析涉及48个双歧杆菌类​​群的每种类型菌株的基因组序列,以及双歧杆菌属的预测核心基因组的系统发育比较分析。这项研究的结果表明,与从基于单个基因的序列比较中获得的序列相比,完整的基因组序列的可利用性使得重建双歧杆菌的系统发育更为牢固,因此不鼓励在没有此类基因组的情况下分配新的或单独的双歧杆菌分类单元,基于验证。

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