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Estimating divergence dates and evaluating dating methods using phylogenomic and mitochondrial data in squamate reptiles

机译:使用鳞状爬行动物的植物学和线粒体数据估计分歧日期并评估约会方法

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Recently, phylogenetics has expanded to routinely include estimation of clade ages in addition to their relationships. Various dating methods have been used, but their relative performance remains understudied. Here, we generate and assemble an extensive phylogenomic data set for squamate reptiles (lizards and snakes) and evaluate two widely used dating methods, penalized likelihood in r8s (r8s-PL) and Bayesian estimation with uncorrelated relaxed rates among lineages (BEAST). We obtained sequence data from 25 nuclear loci (~500-1000. bp per gene; 19,020. bp total) for 64 squamate species and nine outgroup taxa, estimated the phylogeny, and estimated divergence dates using 14 fossil calibrations. We then evaluated how well each method approximated these dates using random subsets of the nuclear loci (2, 5, 10, 15, and 20; replicated 10 times each), and using ~1. kb of the mitochondrial ND2 gene. We find that estimates from r8s-PL based on 2, 5, or 10 loci can differ considerably from those based on 25 loci (mean absolute value of differences between 2-locus and 25-locus estimates were 9.0. Myr). Estimates from BEAST are somewhat more consistent given limited sampling of loci (mean absolute value of differences between 2 and 25-locus estimates were 5.0. Myr). Most strikingly, age estimates using r8s-PL for ND2 were ~68-82. Myr older (mean = 73.1) than those using 25 nuclear loci with r8s-PL. These results show that dates from r8s-PL with a limited number of loci (and especially mitochondrial data) can differ considerably from estimates derived from a large number of nuclear loci, whereas estimates from BEAST derived from fewer nuclear loci or mitochondrial data alone can be surprisingly similar to those from many nuclear loci. However, estimates from BEAST using relatively few loci and mitochondrial data could still show substantial deviations from the full data set (>50. Myr), suggesting the benefits of sampling many nuclear loci. Finally, we found that confidence intervals on ages from BEAST were not significantly different when sampling 2 vs. 25 loci, suggesting that adding loci decreased errors but did not increase confidence in those estimates.
机译:最近,系统发育学已经扩展到常规地包括进化枝年龄的估计以及它们之间的关系。已经使用了各种约会方法,但是它们的相对性能仍未得到研究。在这里,我们为鳞状爬行动物(蜥蜴和蛇)生成并组装了广泛的系统生物学数据集,并评估了两种广泛使用的约会方法,即r8s中的惩罚可能性(r8s-PL)和贝叶斯估计,其中谱系之间的松弛率无关(BEAST)。我们从25个核基因位点(每个基因约500-1000。bp;共19,020。bp)获得了64个鳞状物种和9个外群分类单元的序列数据,使用14种化石标定方法估计了系统发育和估计的分歧日期。然后,我们使用核基因座的随机子集(2、5、10、15和20;每个重复10次)并使用〜1,评估每种方法对这些日期的近似程度。线粒体ND2基因的kb。我们发现,基于r8s-PL的基于2个,5个或10个基因座的估计值与基于25个基因座的估计值可能存在很大差异(2位和25位基因座估计值之间的差异的平均绝对值为9.0。Myr)。给定有限的基因座采样(从2位和25位基因座估计值之间的差异的绝对绝对值为5.0。Myr),BEAST的估计值更加一致。最惊人的是,使用r8s-PL进行ND2的年龄估计为〜68-82。比使用25个带有r8s-PL的核基因座的人要晚(平均= 73.1)。这些结果表明,来自r8s-PL且基因座数量有限(尤其是线粒体数据)的日期可能与大量核基因座的估算值有很大差异,而BEAST的估算则仅来自较少的核基因座或线粒体数据令人惊讶地类似于许多核基因座的那些。但是,使用相对较少的基因座和线粒体数据从BEAST进行的估计仍可能显示出与整个数据集(> 50。Myr)的显着偏差,表明对许多核基因座进行采样是有好处的。最后,我们发现在对2个基因座与25个基因座进行抽样时,BEAST年龄的置信区间没有显着差异,这表明添加基因座可减少错误,但不会增加这些估计的置信度。

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