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Comparative genomics of the genus Bifidobacterium

机译:双歧杆菌属的比较基因组学

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Whole-genome sequencing efforts have revolutionized the study of bifidobacterial genetics and physiology. Unfortunately, the sequence of a single genome does not provide information on bifidobacterial genetic diversity and on how genetic variability supports improved adaptation of these bacteria to the environment of the human gastrointestinal tract (GIT). Analysis of nine genomes from bifidobacterial species showed that such genomes display an open pan-genome structure. Mathematical extrapolation of the data indicates that the genome reservoir available to the bifidobacterial pan-genome consists of more than 5000 genes, many of which are uncharacterized, but which are probably important to provide adaptive abilities pertinent to the human GIT. We also define a core bifidobacterial gene set which will undoubtedly provide a new baseline from which one can examine the evolution of bifidobacteria. Phylogenetic investigation performed on a total of 506 orthologues that are common to nine complete bifidobacterial genomes allowed the construction of a Bifidobacterium supertree which is largely concordant with the phylogenetic tree obtained using 16S rRNA genes. Moreover, this supertree provided a more robust phylogenetic resolution than the 16S rRNA gene-based analysis. This comparative study of the genus Bifidobacterium thus presents a foundation for future functional analyses of this important group of GIT bacteria.
机译:全基因组测序努力彻底改变了双歧杆菌遗传学和生理学的研究。遗憾的是,单个基因组的序列不提供关于双歧杆菌遗传多样性的信息,以及如何遗传变异性如何改善对这些细菌的改善对人胃肠道(Git)的环境。来自双歧杆菌物种的九种基因组的分析表明,这种基因组显示出开放式泛基因组结构。数据的数学外推表明双歧杆菌泛基因组的基因组储存器由5000多种基因组成,其中许多是一种不表征的,但这可能是为人类Git提供有关的适应性能力可能是重要的。我们还定义了一种核心双歧杆菌基因集,无疑提供了一种新的基线,可以从中检验双歧杆菌的演变。对九个完全双歧杆菌基因组共常见的总共506个常见的系统发育研究允许构建双歧杆菌超强物,这主要是使用16S rRNA基因获得的系统发育树的合一性。此外,该Supertree提供了比16S rRNA基因的分析更强大的系统发育分辨率。因此,这种比例的比例研究因此为未来的Git细菌的未来功能分析提出了基础。

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