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首页> 外文期刊>Molecular biology and evolution >Relaxed Clocks and Inferences of Heterogeneous Patterns of Nucleotide Substitution and Divergence Time Estimates across Whales and Dolphins (Mammalia: Cetacea)
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Relaxed Clocks and Inferences of Heterogeneous Patterns of Nucleotide Substitution and Divergence Time Estimates across Whales and Dolphins (Mammalia: Cetacea)

机译:鲸鱼和海豚的核苷酸取代和异质时间异质模式的宽松时钟和推断(哺乳动物:鲸类)

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摘要

Various nucleotide substitution models have been developed to accommodate among lineage rate heterogeneity, thereby relaxing the assumptions of the strict molecular clock. Recently developed "uncorrelated relaxed clock" and "random local clock" (RLC) models allow decoupling of nucleotide substitution rates between descendant lineages and are thus predicted to perform better in the presence of lineage-specific rate heterogeneity. However, it is uncertain how these models perform in the presence of punctuated shifts in substitution rate, especially between closely related clades. Using cetaceans (whales and dolphins) as a case study, we test the performance of these two substitution models in estimating both molecular rates and divergence times in the presence of substantial lineage-specific rate heterogeneity. Our RLC analyses of whole mitochondrial genome alignments find evidence for up to ten clade-specific nucleotide substitution rate shifts in cetaceans. We provide evidence that in the uncorrelated relaxed clock framework, a punctuated shift in the rate of molecular evolution within a subclade results in posterior rate estimates that are either misled or intermediate between the disparate rate classes present in baleen and toothed whales. Using simulations, we demonstrate abrupt changes in rate isolated to one or a few lineages in the phylogeny can mislead rate and age estimation, even when the node of interest is calibrated. We further demonstrate how increasing prior age uncertainty can bias rate and age estimates, even while the 95% highest posterior density around age estimates decreases; in other words, increased precision for an inaccurate estimate. We interpret the use of external calibrations in divergence time studies in light of these results, suggesting that rate shifts at deep time scales may mislead inferences of absolute molecular rates and ages.
机译:已经开发出各种核苷酸取代模型以适应谱系速率异质性,从而放宽了严格的分子钟的假设。最近开发的“不相关的宽松时钟”和“随机本地时钟”(RLC)模型可以使后代谱系之间的核苷酸取代率脱钩,因此可以预测在存在谱系特异性速率异质性的情况下性能更好。但是,尚不确定这些模型在替代率出现明显变化的情况下,特别是在紧密相关的进化枝之间的表现如何。使用鲸类(鲸鱼和海豚)作为案例研究,在存在明显的谱系比速率异质性的情况下,我们测试了这两种取代模型在估算分子速率和发散时间方面的性能。我们对整个线粒体基因组比对的RLC分析找到了鲸类中多达十个进化枝特异性核苷酸取代率变化的证据。我们提供的证据表明,在不相关的宽松时钟框架中,子小分子内分子进化速率的点状移位会导致后速率估计的误导或介于鲸鱼和齿鲸中不同速率类别之间。使用模拟,我们证明了即使在对目标节点进行校准的情况下,系统发育中孤立于一个或几个谱系的速率的突然变化也会误导速率和年龄估计。我们进一步证明,即使年龄估计周围的最高后验密度降低了95%,先前年龄的不确定性如何增加也会使比率和年龄估计产生偏差。换句话说,对于不准确的估计,精度会提高。根据这些结果,我们解释了在发散时间研究中使用外部校准的情况,这表明深度时间尺度上的速率变化可能会误导绝对分子速率和年龄的推论。

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