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Reliable Confidence Intervals for RelTime Estimates of Evolutionary Divergence Times

机译:用于进化分歧时间的关系估计的可靠置信区间

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Confidence intervals (CIs) depict the statistical uncertainty surrounding evolutionary divergence time estimates. They capture variance contributed by the finite number of sequences and sites used in the alignment, deviations of evolutionary rates from a strict molecular clock in a phylogeny, and uncertainty associated with clock calibrations. Reliable tests of biological hypotheses demand reliable CIs. However, current non-Bayesian methods may produce unreliable CIs because they do not incorporate rate variation among lineages and interactions among clock calibrations properly. Here, we present a new analytical method to calculate CIs of divergence times estimated using the RelTime method, along with an approach to utilize multiple calibration uncertainty densities in dating analyses. Empirical data analyses showed that the new methods produce CIs that overlap with Bayesian highest posterior density intervals. In the analysis of computer-simulated data, we found that RelTime CIs show excellent average coverage probabilities, that is, the actual time is contained within the CIs with a 94% probability. These developments will encourage broader use of computationally efficient RelTime approaches in molecular dating analyses and biological hypothesis testing.
机译:置信区间(CIS)描绘了围绕进化分歧时间估计的统计不确定性。它们捕获由有限数量的序列和在对准中使用的网站贡献的差异,进化率从系统发生中严格的分子时钟的偏差,以及与时钟校准相关的不确定性。生物假设需求可靠的可靠性可靠性。然而,目前的非贝叶斯方法可能产生不可靠的CI,因为它们不包含谱系之间的速率变化和时钟校准之间的相互作用。在这里,我们提出了一种新的分析方法来计算使用关系方法估计的发散时间的顺便,以及利用约会分析中使用多种校准不确定性密度的方法。经验数据分析表明,新方法产生了与贝叶斯最高后密度间隔重叠的CIS。在对计算机模拟数据的分析中,我们发现RELTEME CIS显示出优异的平均覆盖率,即,实际时间包含在CIS内,具有94%的概率。这些发展将鼓励在分子约会分析和生物假设检测中更广泛地利用计算上有效的关系方法。

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