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Phylogenetic Clustering of Genes Reveals Shared Evolutionary Trajectories and Putative Gene Functions

机译:基因的系统发生聚类揭示了共享的进化轨迹和假定的基因功能。

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Homologous genes in prokaryotes can be described using phylogenetic profiles which summarize their patterns of presence or absence across a set of genomes. Phylogenetic profiles have been used for nearly twenty years to cluster genes based on measures such as the Euclidean distance between profile vectors. However, most approaches do not take into account the phylogenetic relationships amongst the profiled genomes, and overrepresentation of certain taxonomic groups (i.e., pathogenic species with many sequenced representatives) can skew the interpretation of profiles. We propose a new approach that uses a coevolutionary method defined by Pagel to account for the phylogenetic relationships amongst target organisms, and a hierarchical-clustering approach to define sets of genes with common distributions across the organisms. The clusters we obtain using our method show greater evidence of phylogenetic and functional clustering than a recently published approach based on hidden Markov models. Our clustering method identifies sets of amino-acid biosynthesis genes that constitute cohesive pathways, and motility/chemotaxis genes with common histories of descent and lateral gene transfer.
机译:可以使用系统发育概况描述原核生物中的同源基因,系统概况概述了它们在一组基因组中存在或不存在的模式。系统发育概况已经被使用了近二十年,以基于诸​​如概况向量之间的欧几里德距离之类的度量来聚类基因。但是,大多数方法都没有考虑到特定基因组之间的系统发育关系,某些分类组(即具有许多序列代表的病原体)的过分表达可能会影响轮廓的解释。我们提出了一种新方法,该方法使用Pagel定义的协同进化方法来说明目标生物之间的系统发生关系,并提出一种层次聚类方法来定义在整个生物中具有共同分布的基因集。与最近发布的基于隐马尔可夫模型的方法相比,使用我们的方法获得的聚类显示出更大的系统发育和功能聚类证据。我们的聚类方法确定了构成内聚途径的氨基酸生物合成基因集,以及具有下降和侧向基因转移的共同历史的运动/趋化性基因。

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