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Log-correlation Distance And Fourier Transform With Kullback-Leibler Divergence Distance For Construction Of Vertebrate Phylogeny Using Complete Mitochondrial Genomes

机译:利用kullback-Leibler分歧距离与尖端变换,使用完全线粒体基因组构建脊椎动物发育的分解距离

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For vertebrate mitochondrial genomes, some phylogenies have been built by various methods with or without sequence alignment. These methods are important for the problem of classification and evolution. In this paper, we propose two approaches to analyze the phylogenetic relationship of 64 vertebrates using complete mitochondrial genomes without sequence alignment. The first approach combines discrete Fourier transform (DFT) with Kullback-Leibler divergence (KLD) distance. The second one directly uses a log-correlation distance. Both methods are based on compositional vectors of DNA sequences or protein sequences from the complete genome. The phylogenetic trees show that the mitochondrial genomes are separated into three major groups. One group corresponds to mammals; one group corresponds to fish; and the other one is Archosauria (including birds and reptiles). In particular, the structure of the tree based on log-correlation distance are roughly in agreement in topology with the current known phylogenies of vertebrates.
机译:对于脊椎动物线粒体基因组,一些系统化由具有或不序列对准的各种方法构建。这些方法对于分类和进化问题很重要。在本文中,我们提出了两种方法来分析64脊椎动物的系统发育关系使用完全线粒体基因组而无序列对准。第一种方法将离散的傅里叶变换(DFT)与Kullback-Leibler发散(KLD)距离结合起来。第二个直接使用对数相关距离。两种方法都基于完全基因组的DNA序列或蛋白质序列的组成载体。系统发育树表明线粒体基因组分为三个主要基团。一组对应于哺乳动物;一组对应鱼;另一个是古代艇(包括鸟类和爬行动物)。特别地,基于对数相关距离的树的结构大致在拓扑中与脊椎动物的当前已知的系统发育致法。

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