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Evaluating molecular clock calibrations using Bayesian analyses with soft and hard bounds

机译:使用具有软边界和硬边界的贝叶斯分析评估分子时钟校准

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摘要

A limiting factor in many molecular dating studies is shortage of reliable calibrations. Current methods for choosing calibrations (e.g. cross-validation) treat them as either correct or incorrect, whereas calibrations probably lie on a continuum from highly accurate to very poor. Bayesian relaxed clock analysis permits inclusion of numerous candidate calibrations as priors: provided most calibrations are reliable, the model appropriate and the data informative, the accuracy of each calibration prior can be evaluated. If a calibration is accurate, then the analysis will support the prior so that the posterior estimate reflects the prior; if a calibration is poor, the posterior will be forced away from the prior. We use this approach to test two fossil dates recently proposed as standard calibrations within vertebrates. The proposed bird–crocodile calibration (approx. 247 Myr ago) appears to be accurate, but the proposed bird–lizard calibration (approx. 255 Myr ago) is substantially too recent.
机译:许多分子测年研究的一个限制因素是缺乏可靠的校准方法。当前选择校准的方法(例如交叉验证)将其视为正确或不正确,而校准可能取决于从高精度到非常差的连续性。贝叶斯松弛时钟分析允许作为先验包括许多候选校准:只要大多数校准是可靠的,适当的模型且数据有用,则可以评估每个校准的准确性。如果校准是准确的,则分析将支持先验,以便后验估计反映先验;如果校准不佳,则将后验镜从前验镜移开。我们使用这种方法来测试两个最近建议作为脊椎动物内部标准校准的化石日期。提议的鸟类-鳄鱼校准(大约247以前)似乎是准确的,但是提议的鸟类-蜥蜴校准(大约255以前)基本上太新了。

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