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Quantification of homoplasy for nucleotide transitions and transversions and a reexamination of assumptions in weighted phylogenetic analysis

机译:核苷酸转换和颠换的同质体定量,以及加权系统发育分析中假设的重新检验

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摘要

Nucleotide transitions are frequently down-weighted relative to transversions in phylogenetic analysis. This is based on the assumption that transitions, by virtue of their greater evolutionary rate, exhibit relatively more homoplasy and are therefore less reliable phylogenetic characters. Relative amounts of homoplastic and consistent transition and transversion changes in mitochondrial protein coding genes were determined from character-state reconstructions on a highly corroborated phylogeny of mammals. We found that although homoplasy was related to evolutionary rates and was greater for transitions, the absolute number of consistent transitions greatly exceeded the number of consistent transversions. Consequently, transitions provided substantially more useful phylogenetic information than transversions. These results suggest that down-weighting transitions may be unwarranted in many cases. This conclusion was supported by the fact that a range of transition: transversion weighting schemes applied to various mitochondrial genes and genomic partitions rarely provided improvement in phylogenetic estimates relative to equal weighting, and in some cases weighting transitions more heavily than transversions was most effective.
机译:在系统发育分析中,相对于颠换而言,核苷酸转变的权重通常较低。这是基于这样的假设,即过渡由于其较高的进化速率而表现出相对较高的同源性,因此是较不可靠的系统发育特征。线粒体蛋白编码基因的同型同质和一致的过渡和颠换变化的相对量是从高度确证的哺乳动物系统发育的特征状态重建中确定的。我们发现,虽然同质与进化速率相关,并且对于过渡而言更大,但一致过渡的绝对数量大大超过了一致颠换的数量。因此,与颠换相比,转变提供了更为有用的系统发育信息。这些结果表明,在许多情况下,降低权重的过渡可能是不必要的。这一结论得到以下事实的支持:一系列转换:应用于各种线粒体基因和基因组分区的转换加权方案相对于等权重很少能改善系统发育估计,并且在某些情况下,加权转换比转换更为有效。

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