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The impact of ancestral population size and incomplete lineage sorting on Bayesian estimation of species divergence times

机译:祖先种群规模和不完整谱系排序对物种发散时间的贝叶斯估计的影响

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摘要

Although the effects of the coalescent process on sequence divergence and genealogies are well understood, the vir-tual majority of studies that use molecular sequences to estimate times of divergence among species have failed to account for the coalescent process. Here we study the impact of ancestral population size and incomplete lineage sorting on Bayesian estimates of species divergence times under the molecular clock when the inference model ignores the coalescent process. Using a combi-nation of mathematical analysis, computer simulations and analysis of real data, we find that the errors on estimates of times and the molecular rate can be substantial when ancestral populations are large and when there is substantial incomplete lineage sort-ing. For example, in a simple three-species case, we find that if the most precise fossil calibration is placed on the root of the phylogeny, the age of the internal node is overestimated, while if the most precise calibration is placed on the internal node, then the age of the root is underestimated. In both cases, the molecular rate is overestimated. Using simulations on a phylogeny of nine species, we show that substantial errors in time and rate estimates can be obtained even when dating ancient divergence events. We analyse the hominoid phylogeny and show that estimates of the neutral mutation rate obtained while ignoring the coalescent are too high. Using a coalescent-based technique to obtain geological times of divergence, we obtain estimates of the mutation rate that are within experimental estimates and we also obtain substantially older divergence times within the phylogeny [Current Zoology 61 (5): 874–885, 2015].
机译:尽管人们已经很好地理解了合并过程对序列发散和家谱的影响,但实际上,大多数使用分子序列来估计物种间发散时间的研究未能解释合并过程。在这里,当推理模型忽略合并过程时,我们研究祖先种群规模和不完整谱系排序对分子时钟下物种发散时间的贝叶斯估计的影响。使用数学分析,计算机模拟和真实数据分析的组合,我们发现,当祖先群体很大且谱系排序不完整时,时间和分子速率估计的误差可能很大。例如,在一个简单的三物种案例中,我们发现,如果将最精确的化石标定放在系统发育的根上,则内部节点的年龄被高估了,而如果将最精确的标定放在内部节点上,则根的年龄被低估了。在两种情况下,分子速率都被高估了。使用对9个物种的系统发育的模拟,我们显示,即使对古代的发散事件进行约会,也可以获得时间和速率估计的重大错误。我们分析了类人动物的系统发育,并表明在忽略聚结时获得的中性突变率的估计值太高。使用基于聚结的技术获得发散的地质时间,我们获得了突变率的估计值,该估计值在实验估计值之内,并且在系统发育上我们还获得了实质上更长的发散时间[Current Zoology 61(5):874–885,2015] 。

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  • 来源
    《动物学报(英文版)》 |2015年第5期|874-885|共12页
  • 作者单位

    Department of Genetics, Evolution and Environment, University College London, Gower Street, London WC1E 6BT, UK;

    Department of Genetics, Evolution and Environment, University College London, Gower Street, London WC1E 6BT, UK;

  • 收录信息 北京大学中文核心期刊目录(北大核心);中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 eng
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