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Phylogenetic construction of 17 bacterial phyla by new method and carefully selected orthologs

机译:用新方法和精心选择的直系同源物构建17种细菌门的系统发育

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摘要

Here, we constructed a phylogenetic tree of 17 bacterial phyla covering eubacteria and archaea by using a new method and 102 carefully selected orthologs from their genomes. One of the serious disturbing factors in phylogeny construction is the existence of out-paralogs that cannot easily be found out and discarded. In our method, out-paralogs are detected and removed by constructing a phylogenetic tree of the genes in question and examining the clustered genes in the tree. We also developed a method for comparing two tree topologies or shapes, ComTree. Applying ComTree to the constructed tree we computed the relative number of orthologs that support a node of the tree. This number is called the Positive Ortholog Ratio (POR), which is conceptually and methodologically different from the frequently used bootstrap value. Our study concretely shows drawbacks of the bootstrap test. Our result of bacterial phylogeny analysis is consistent with previous ones showing that hyperthermophilic bacteria such as Thermotogae and Aquificae diverged earlier than the others in the eubacterial phylogeny studied. It is noted that our results are consistent whether thermophilic archaea or mesophilic archaea is employed for determining the root of the tree. The earliest divergence of hyperthermophilic eubacteria is supported by genes involved in fundamental metabolic processes such as glycolysis, nucleotide and amino acid syntheses.
机译:在这里,我们通过使用新方法和从基因组中精心挑选的102个直系同源物,构建了包含真细菌和古细菌的17种细菌门的系统树。系统发育构建中的严重干扰因素之一是存在无法轻易发现和丢弃的旁系同源物。在我们的方法中,通过构建所讨论基因的系统进化树并检查树中的聚簇基因,可以检测出并消除外旁系同源物。我们还开发了一种用于比较两个树拓扑或形状的方法ComTree。将ComTree应用于构建的树,我们计算了支持树节点的直系同源物的相对数目。该数字称为正直向比率(POR),从概念和方法上与经常使用的自举值不同。我们的研究具体显示了自举测试的缺点。我们的细菌系统发育分析结果与先前的结果一致,这些结果表明,在所研究的真细菌系统发育中,嗜热菌和嗜热菌等超嗜热细菌的发散比其他细菌早。注意,无论采用嗜热古细菌还是嗜温古细菌来确定树的根,我们的结果都是一致的。涉及基本代谢过程(例如糖酵解,核苷酸和氨基酸合成)的基因支持了超嗜热性真细菌的最早分化。

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