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The Impact of Fossils and Taxon Sampling on Ancient Molecular Dating Analyses

机译:化石和生物分类采样对古代分子定年分析的影响

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摘要

The number and complexity of molecular dating studies has increased over the past decade. Along with a broadening acceptance of their utility has come significant controversy over the methods and models that are appropriate, as well as the accuracy of the estimates yielded by molecular clock analyses. Radically different age estimates have been published for the same divergences from analyses of different datasets with different fossil constraints obtained with different methods, and the underlying explanation for these differences is often unclear. Here we utilize two previously published datasets to examine the effect of fossil calibrations and taxon sampling on the age estimates for two deep eukaryote divergences in an attempt to discern the relative impact of these factors. Penalized likelihood, non-parametric rate smoothing, and Bayesian methods were utilized to generate age estimates for the origin of the Metazoa from a 7-gene dataset and for the divergence of Eukaryotes from a 129-gene dataset. From these analyses, it is clear that the fossil calibrations chosen and the method for applying constraints to these nodes have a large impact on age estimates, while the degree of taxon sampling within a dataset is less important in terms of the resulting age estimates. Concerns and recommendations for addressing these two factors when initiating a dating analysis are discussed.
机译:在过去的十年中,分子测年研究的数量和复杂性都在增加。随着对它们的效用的广泛接受,关于适当的方法和模型以及分子时钟分析得出的估计值的准确性也引起了很大的争议。对于通过不同方法获得的具有不同化石约束的不同数据集的分析,对于相同的差异,已经发布了完全不同的年龄估计,并且对于这些差异的根本解释通常不清楚。在这里,我们利用两个先前发布的数据集来检查化石校准和分类单元采样对两个深层真核生物发散的年龄估计的影响,以试图辨别这些因素的相对影响。惩罚似然法,非参数速率平滑法和贝叶斯方法被用来从7个基因的数据集生成后生动物起源和从129个基因的数据集进行真核生物发散的年龄估计。从这些分析中可以清楚地看出,选择的化石标定和对这些节点施加约束的方法对年龄估计有很大影响,而就所得的年龄估计而言,数据集中的分类单元采样程度并不那么重要。讨论了在进行约会分析时解决这两个因素的担忧和建议。

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