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A distance-based least-square method for dating speciation events

机译:基于距离的最小二乘方法对物种形成事件进行约会

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摘要

Distance-based phylogenetic methods are widely used in biomedical research. However, there has been little development of rigorous statistical methods and software for dating speciation and gene duplication events by using evolutionary distances. Here we present a simple, fast and accurate dating method based on the least-squares (LS) method that has already been widely used in molecular phylogenetic reconstruction. Dating methods with a global clock or two different local clocks are presented. Single or multiple fossil calibration points can be used, and multiple data sets can be integrated in a combined analysis. Variation of the estimated divergence time is estimated by resampling methods such as bootstrapping or jackknifing. Application of the method to dating the divergence time among seven ape species or among 35 mammalian species including major mammalian orders shows that the estimated divergence time with the LS criterion is nearly identical to those obtained by the likelihood method or Bayesian inference.
机译:基于距离的系统发育方法已广泛用于生物医学研究。但是,用于通过使用进化距离对物种形成和基因复制事件进行测年的严格的统计方法和软件的开发却很少。在这里,我们提出一种基于最小二乘(LS)方法的简单,快速和准确的约会方法,该方法已广泛用于分子系统发育重建。提出了具有全局时钟或两个不同本地时钟的约会方法。可以使用单个或多个化石校准点,并且可以在组合分析中集成多个数据集。估计的发散时间的变化是通过重新采样方法(例如自举法或顶刀法)来估计的。将该方法用于对七个猿猴物种或包括主要哺乳动物种群在内的35个哺乳动物物种之间的发散时间进行测年的结果表明,采用LS准则估计的发散时间与通过似然法或贝叶斯推断获得的发散时间几乎相同。

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