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A phylogenomic approach to microbial evolution.

机译:微生物进化的植物学方法。

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To study the origin and evolution of biochemical pathways in microorganisms, we have developed methods and software for automatic, large-scale reconstructions of phylogenetic relationships. We define the complete set of phylogenetic trees derived from the proteome of an organism as the phylome and introduce the term phylogenetic connection as a concept that describes the relative relationships between taxa in a tree. A query system has been incorporated into the system so as to allow searches for defined categories of trees within the phylome. As a complement, we have developed the pyphy system for visualising the results of complex queries on phylogenetic connections, genomic locations and functional assignments in a graphical format. Our phylogenomics approach, which links phylogenetic information to the flow of biochemical pathways within and among microbial species, has been used to examine more than 8000 phylogenetic trees from seven microbial genomes. The results have revealed a rich web of phylogenetic connections. However, the separation of Bacteria and Archaea into two separate domains remains robust.
机译:为了研究微生物中生物化学途径的起源和进化,我们开发了自动,大规模重建系统发生关系的方法和软件。我们将衍生自生物体蛋白质组的完整系统发育树的集合定义为系统树,并引入术语系统发生连接作为描述树木中类群之间相对关系的概念。查询系统已经被并入系统中,以允许搜索系统内的树木的定义类别。作为补充,我们开发了pyphy系统,用于以图形格式显示有关系统发育联系,基因组位置和功能分配的复杂查询的结果。我们的系统组学方法将系统发育信息与微生物物种内部和之间的生化途径联系起来,已被用于检查来自七个微生物基因组的8000多个系统发育树。结果显示了丰富的系统发育联系网。但是,将细菌和古细菌分离为两个独立的域仍然很可靠。

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