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ComPhy: prokaryotic composite distance phylogenies inferred from whole-genome gene sets

机译:COMPHY:从全基因组基因套中推断的原核复合距离发作

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Background: With the increasing availability of whole genome sequences, it is becoming more and more important to use complete genome sequences for inferring species phylogenies. We developed a new tool ComPhy, 'Composite Distance Phylogeny', based ona composite distance matrix calculated from the comparison of complete gene sets between genome pairs to produce a prokaryotic phylogeny.Results: The composite distance between two genomes is defined by three components: Gene Dispersion Distance (GDD), Genome Breakpoint Distance (GBD) and Gene Content Distance (GCD). GDD quantifies the dispersion of orthologous genes along the genomic coordinates from one genome to another; GBD measures the shared breakpoints between two genomes; GCD measures the level of shared orthologs between two genomes. The phylogenetic tree is constructed from the composite distance matrix using a neighbor joiningmethod. We tested our method on 9 datasets from 398 completely sequenced prokaryotic genomes. We have achieved above 90% agreement in quartet topologies between the tree created by our method and the tree from the Bergey's taxonomy. In comparison to several other phylogenetic analysis methods, our method showed consistently better performance.Conclusion: ComPhy is a fast and robust tool for genome-wide inference of evolutionary relationship among genomes. It can be downloaded from http://digbio.missouri.edu/ ComPhy.
机译:背景:随着全基因组序列的增加,使用完整的基因组序列来推断物质的序列越来越重要。我们开发了一种新的工具密集,基于基于组复合距离基质的新工具,“复合距离phylogyy”从基因组对之间的完整基因组的比较计算,以产生原核化学系统。结果:两个基因组之间的复合距离由三种组分定义:基因分散距离(GDD),基因组断点距离(GBD)和基因含量距离(GCD)。 GDD量化沿着一个基因组沿基因组坐标的正交基因的分散体。 GBD测量两个基因组之间的共享断点; GCD测量两个基因组之间的共享原子的水平。系统发育树用复合距离矩阵构造使用邻居加入方法。我们在398个完全测序的原核基因组上测试了9个数据集的方法。我们在由我们的方法与Bergey的分类法创建的树和树的树木之间的四重奏拓扑中获得了90%的协议。与其他几种系统发生分析方法相比,我们的方法表现出始终如一的性能。结论:COMPHEY是基因组中进化关系的基因组推理的快速和鲁棒工具。它可以从http://digbio.missouri.edu/ comphy下载。

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