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Fast and Robust Characterization of Time-Heterogeneous Sequence Evolutionary Processes Using Substitution Mapping

机译:使用替代映射快速稳定地表征时间异质序列进化过程

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摘要

Genes and genomes do not evolve similarly in all branches of the tree of life. Detecting and characterizing the heterogeneity in time, and between lineages, of the nucleotide (or amino acid) substitution process is an important goal of current molecular evolutionary research. This task is typically achieved through the use of non-homogeneous models of sequence evolution, which being highly parametrized and computationally-demanding are not appropriate for large-scale analyses. Here we investigate an alternative methodological option based on probabilistic substitution mapping. The idea is to first reconstruct the substitutional history of each site of an alignment under a homogeneous model of sequence evolution, then to characterize variations in the substitution process across lineages based on substitution counts. Using simulated and published datasets, we demonstrate that probabilistic substitution mapping is robust in that it typically provides accurate reconstruction of sequence ancestry even when the true process is heterogeneous, but a homogeneous model is adopted. Consequently, we show that the new approach is essentially as efficient as and extremely faster than (up to 25 000 times) existing methods, thus paving the way for a systematic survey of substitution process heterogeneity across genes and lineages.
机译:在生命树的所有分支中,基因和基因组的进化都不同。检测和表征核苷酸(或氨基酸)取代过程的时间以及谱系之间的异质性是当前分子进化研究的重要目标。通常通过使用序列设计的非均质模型来完成此任务,该模型的参数化和计算需求很高,因此不适用于大规模分析。在这里,我们研究了一种基于概率替代映射的替代方法。这个想法是首先在序列进化的同质模型下重建比对的每个位点的取代历史,然后根据取代计数来表征跨谱系的取代过程中的变异。使用模拟和已发布的数据集,我们证明了概率替换映射是鲁棒的,因为即使真实过程是异构的,它也可以提供准确的序列祖先重构,但是采用了同质模型。因此,我们表明,新方法实质上与现有方法一样有效,并且效率极高(高达25,000倍),从而为系统研究跨基因和谱系的替代过程异质性铺平了道路。

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