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首页> 外文期刊>Evolutionary Bioinformatics >Topological Bias in Distance-Based Phylogenetic Methods: Problems with Over- and Underestimated Genetic Distances
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Topological Bias in Distance-Based Phylogenetic Methods: Problems with Over- and Underestimated Genetic Distances

机译:基于距离的系统发育方法中的拓扑偏差:遗传距离过高和过低的问题

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I show several types of topological biases in distance-based methods that use the least-squares method to evaluate branch lengths and the minimum evolution (ME) or the Fitch-Margoliash (FM) criterion to choose the best tree. For a 6-species tree, there are two tree shapes, one with three cherries (a cherry is a pair of adjacent leaves descending from the most recent common ancestor), and the other with two. When genetic distances are underestimated, the 3-cherry tree shape is favored with either the ME or FM criterion. When the genetic distances are overestimated, the ME criterion favors the 2-cherry tree, but the direction of bias with the FM criterion depends on whether negative branches are allowed, i.e. allowing negative branches favors the 3-cherry tree shape but disallowing negative branches favors the 2-cherry tree shape. The extent of the bias is explored by computer simulation of sequence evolution.
机译:我展示了基于距离的方法中的几种拓扑偏差,这些方法使用最小二乘法来评估分支长度,并使用最小演化(ME)或Fitch-Margoliash(FM)准则来选择最佳树。对于6种树,有两种树形,一种具有三棵樱桃(樱桃是一对从最近的共同祖先降落的相邻叶子),另一种具有两棵。当遗传距离被低估时,ME或FM准则更倾向于3樱桃树的形状。当遗传距离被高估时,ME准则倾向于2樱桃树,但是FM准则的偏向取决于是否允许负分支,即允许负分支有利于3樱桃树形状而不允许负分支有利2樱桃树的形状。偏倚的程度通过序列进化的计算机模拟来探索。

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