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Bayesian inference of phylogenetic networks from bi-allelic genetic markers

机译:从双等位基因遗传标记的系统进化网络的贝叶斯推断

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Author summary The availability of genomic data has revolutionized the study of evolutionary histories and phylogeny inference. Inferring evolutionary histories from genomic data requires, in most cases, accounting for the fact that different genomic regions could have evolutionary histories that differ from each other as well as from that of the species from which the genomes were sampled. In this paper, we introduce a method for inferring evolutionary histories while accounting for two processes that could give rise to such differences across the genomes, namely incomplete lineage sorting and hybridization. We introduce a novel algorithm for computing the likelihood of phylogenetic networks from bi-allelic genetic markers and use it in a Bayesian inference method. Analyses of synthetic and empirical data sets show a very good performance of the method in terms of the estimates it obtains.
机译:作者摘要基因组数据的可用性彻底改变了进化历史和系统发育推断的研究。在大多数情况下,从基因组数据推断进化历史需要考虑以下事实:不同的基因组区域可能具有彼此不同的进化历史,也不同于采样基因组的物种的进化历史。在本文中,我们介绍了一种推断进化历史的方法,同时考虑了可能导致基因组差异的两个过程,即不完整的谱系分选和杂交。我们介绍了一种从双等位基因遗传标记计算系统发生网络可能性的新算法,并将其用于贝叶斯推断方法。综合和经验数据集的分析表明,该方法在获得的估计值方面具有很好的性能。

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