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Data partitioning and correction for ascertainment bias reduce the uncertainty of placental mammal divergence times inferred from the morphological clock

机译:确定性偏倚的数据划分和校正减少了从形态时钟推断出的胎盘哺乳动物发散时间的不确定性

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摘要

Bayesian estimates of divergence times based on the molecular clock yield uncertainty of parameter estimates measured by the width of posterior distributions of node ages. For the relaxed molecular clock, previous works have reported that some of the uncertainty inherent to the variation of rates among lineages may be reduced by partitioning data. Here we test this effect for the purely morphological clock, using placental mammals as a case study. We applied the uncorrelated lognormal relaxed clock to morphological data of 40 extant mammalian taxa and 4,533 characters, taken from the largest published matrix of discrete phenotypic characters. The morphologically derived timescale was compared to divergence times inferred from molecular and combined data. We show that partitioning data into anatomical units significantly reduced the uncertainty of divergence time estimates for morphological data. For the first time, we demonstrate that ascertainment bias has an impact on the precision of morphological clock estimates. While analyses including molecular data suggested most divergences between placental orders occurred near the K‐Pg boundary, the partitioned morphological clock recovered older interordinal splits and some younger intraordinal ones, including significantly later dates for the radiation of bats and rodents, which accord to the short‐fuse hypothesis.
机译:基于分子时钟的发散时间的贝叶斯估计得出参数估计的不确定性,该不确定性通过节点年龄的后验分布的宽度来衡量。对于宽松的分子钟,以前的工作已经报告说,通过划分数据可以减少谱系间速率变化所固有的一些不确定性。在这里,我们以胎盘哺乳动物为例研究纯形态时钟的这种作用。我们将不相关的对数正态弛豫时钟应用于40个现存的哺乳动物类群和4,533个字符的形态学数据,这些数据来自最大的离散表型字符矩阵。将形态学得出的时间尺度与从分子数据和组合数据得出的发散时间进行比较。我们表明,将数据划分为解剖单位可显着降低形态数据的发散时间估计值的不确定性。我们首次证明确定偏差对形态学时钟估计的精度有影响。尽管包括分子数据在内的分析表明胎盘顺序之间的大部分差异发生在K-Pg边界附近,但分隔的形态时钟恢复了较旧的内部分裂和较年轻的内部分裂,包括蝙蝠和啮齿类动物辐射的显着较晚的日期,这与短时相符。保险丝假设。

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