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Methods for the Quantitative Comparison of Molecular Estimates of Clade Age and the Fossil Record

机译:进化枝年龄与化石记录的分子估计值的定量比较方法

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Approaches quantifying the relative congruence, or incongruence, of molecular divergence estimates and the fossil record have been limited. Previously proposed methods are largely node specific, assessing incongruence at particular nodes for which both fossil data and molecular divergence estimates are available. These existing metrics, and other methods that quantify incongruence across topologies including entirely extinct clades, have so far not taken into account uncertainty surrounding both the divergence estimates and the ages of fossils. They have also treated molecular divergence estimates younger than previously assessed fossil minimum estimates of clade age as if they were the same as cases in which they were older. However, these cases are not the same. Recovered divergence dates younger than compared oldest known occurrences require prior hypotheses regarding the phylogenetic position of the compared fossil record and standard assumptions about the relative timing of morphological and molecular change to be incorrect. Older molecular dates, by contrast, are consistent with an incomplete fossil record and do not require prior assessments of the fossil record to be unreliable in some way. Here, we compare previous approaches and introduce two new descriptive metrics. Both metrics explicitly incorporate information on uncertainty by utilizing the 95% confidence intervals on estimated divergence dates and data on stratigraphic uncertainty concerning the age of the compared fossils. Metric scores are maximized when these ranges are overlapping. MDI(minimum divergence incongruence) discriminates between situations where molecular estimates are younger or older than known fossils reporting both absolute fit values and a number score for incompatible nodes. DIG range (divergence implied gap range) allows quantification of the minimum increase in implied missing fossil record induced by enforcing a given set of molecular-based estimates. These metrics are used together to describe the relationship between time trees and a set of fossil data, which we recommend be phylogenetically vetted and referred on the basis of apomorphy. Differences from previously proposed metrics and the utility of MDI and DIG range are illustrated in three empirical case studies from angiosperms, ostracods, and birds. These case studies also illustrate the ways in which MDI and DIG range may be used to assess time trees resultant from analyses varying in calibration regime, divergence dating approach or molecular sequence data analyzed.
机译:量化分子差异估计和化石记录的相对一致或不一致的方法受到限制。先前提出的方法在很大程度上是特定于节点的,在化石数据和分子差异估计均可用的特定节点上评估不一致。这些现有的度量标准以及量化整个拓扑(包括完全灭绝的进化枝)之间的不一致性的其他方法,到目前为止尚未考虑到发散估计和化石年龄周围的不确定性。他们还对分子散度估计值比以前评估的进化枝年龄最小化石最小估计值进行了处理,就好像它们与年龄更大的情况一样。但是,这些情况并不相同。恢复的发散日期早于比已知的最古老的事件年轻的时间,因此需要有关被比较的化石记录的系统发生位置的先前假设,以及有关形态和分子变化的相对时间的标准假设是不正确的。相比之下,较早的分子日期与化石记录不完整一致,不需要事先评估化石记录在某种程度上是不可靠的。在这里,我们比较了以前的方法,并介绍了两个新的描述性指标。两种度量标准都利用估计的发散日期的95%置信区间和有关比较化石年龄的地层不确定性数据,明确纳入了不确定性信息。当这些范围重叠时,指标得分将最大化。 MDI(最小发散不一致性)区分了分子估计比已知化石更年轻或更古老的情况,报告了既有绝对拟合值又有不兼容结点的分数。 DIG范围(隐含差异范围)允许对通过执行一组给定的基于分子的估计而引起的隐含化石记录的最小增加进行量化。这些度量标准一起用于描述时间树和一组化石数据之间的关系,我们建议对它们进行系统发育性审查,并根据无性形态进行引用。在三个关于被子植物,被子植物和鸟类的经验案例研究中,说明了与先前提出的度量标准以及MDI和DIG范围的实用性的差异。这些案例研究还说明了MDI和DIG范围可用于评估由校准方案,发散定年方法或分析的分子序列数据变化而产生的时间树的方式。

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