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Comparative analysis of probiotic bacteria based on a new definition of core genome

机译:基于核心基因组新定义的益生菌比较分析

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摘要

The commensal genus Bifidobacterium has probiotic properties. We prepared a public library of the gene functions of the genus Bifidobacterium for its online annotation. Orthologous gene cluster analysis showed that the pan genomes of Bifidobacterium and Lactobacillus exhibit striking similarities when mapped to the Clusters of Orthologous Group (COG) database of proteins. When the core genes in each genus were selected based on our statistical definition of "core genome", core genes were present in at least 92% of 52 Bifidobacterium and in 97% of 178 Lactobacillus genomes. Functional comparison of the core genes of the two genera revealed a significant difference in the categories "amino acid transport and metabolism" representing their difference in niche specificity. Over-represented Bifidobacterium protein families were primarily involved in host interactions, the complex compound metabolism, and in stress responses. These findings coincide with the published information and validate our bias-resilient definition of the core genome.
机译:共生双歧杆菌属具有益生菌特性。我们准备了一个双歧杆菌属基因功能的公共文库,用于在线注释。同源基因聚类分析表明,双歧杆菌和乳酸杆菌的泛基因组在映射到蛋白质同源群(COG)数据库的聚类时表现出惊人的相似性。当根据我们对“核心基因组”的统计定义选择每个属的核心基因时,至少92%的双歧杆菌和97%的178个乳酸杆菌基因组中存在核心基因。对这两个属的核心基因进行功能比较,发现“氨基酸运输和代谢”类别存在显著差异,代表了它们在生态位特异性上的差异。过度表达的双歧杆菌蛋白家族主要参与宿主相互作用、复杂化合物代谢和应激反应。这些发现与已发表的信息一致,并验证了我们对核心基因组的偏见弹性定义。

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