首页> 外文期刊>Frontiers in Genetics >Quantifying the Error of Secondary vs. Distant Primary Calibrations in a Simulated Environment
【24h】

Quantifying the Error of Secondary vs. Distant Primary Calibrations in a Simulated Environment

机译:量化模拟环境中辅助频率的误差

获取原文
           

摘要

Using calibrations to obtain absolute divergence times is standard practice in molecular clock studies. While the use of primary (e.g., fossil) calibrations is preferred, this approach can be limiting because of their rarity in fast-growing datasets. Thus, alternatives need to be explored, such as the use of secondary (molecularly-derived) calibrations that can anchor a timetree in a larger number of nodes. However, the use of secondary calibrations has been discouraged in the past because of concerns in the error rates of the node estimates they produce with an apparent high precision. Here, we quantify the amount of errors in estimates produced by the use of secondary calibrations relative to true times and primary calibrations placed on distant nodes. We find that, overall, the inaccuracies in estimates based on secondary calibrations are predictable and mirror errors associated with primary calibrations and their confidence intervals. Additionally, we find comparable error rates in estimated times from secondary calibrations and distant primary calibrations, although the precision of estimates derived from distant primary calibrations is roughly twice as good as that of estimates derived from secondary calibrations. This suggests that increasing dataset size to include primary calibrations may produce divergence times that are about as accurate as those from secondary calibrations, albeit with a higher precision. Overall, our results suggest that secondary calibrations may be useful to explore the parameter space of plausible evolutionary scenarios when compared to time estimates obtained with distant primary calibrations.
机译:使用校准以获得绝对分歧时间是分子钟研究中的标准实践。虽然优选使用初级(例如,化石)校准,但是由于它们在快速增长的数据集中罕见,这种方法可能是限制性的。因此,需要探索替代方案,例如使用可以在较大数量的节点中锚定时锚定时的次级(分子衍生的)校准。然而,过去的使用二次校准是由于节点估计的误差率的担忧,它们具有明显的高精度。在这里,我们通过相对于基于真实次数和放置在遥远节点上的主要校准,通过使用辅助校准产生的估计中的估计中的估计量。我们发现,总体而言,基于二级校准的估计中的不准确性是可预测的,并且与主要校准相关的镜像错误及其置信区间。另外,我们发现估计次数校准和远程主校准中的估计时间的可比误差率,尽管源自远端校准的估计的精度大致两倍于来自二次校准的估计值。这表明增加了数据集大小以包括主要校准可能产生与来自二级校准的分歧的发散时间,尽管具有更高的精度。总的来说,我们的结果表明,与远处主校准获得的时间估计相比,辅助校准可能是有用的探索合理的进化场景的参数空间。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号