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The Concordance of Gene Trees and Species Trees at Two Linked Loci

机译:两个连锁位点的基因树和物种树的一致性

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摘要

The gene genealogies of two linked loci in three species are analyzed using a series of Markov chain models. We calculate the probability that the gene tree of one locus is concordant with the species tree, given that the gene tree of the other locus is concordant. We define a threshold value of the recombination rate, r*, to be the rate for which the difference between the conditional probability of concordance and its asymptotic value is reduced to 5% of the initial difference. We find that, although r* depends in a complicated way on the times of speciation and effective population sizes, it is always relatively small, <10/N4, where N4 is the effective size of the species represented by the internal branch of the species tree. Consequently, the concordance of gene trees of neutral loci with the species tree is expected to be on roughly the same length scale on the chromosome as the extent of significant linkage disequilibrium within species unless the effective size of contemporary populations is very different from the effective sizes of their ancestral populations. Both balancing selection and selective sweeps can result in much longer genomic regions having concordant gene trees.
机译:使用一系列马尔可夫链模型分析了三个物种中两个连锁基因座的基因谱系。考虑到另一个基因座的基因树是一致的,我们计算了一个基因座的基因树与物种树一致的概率。我们将重组率的阈值r *定义为条件一致率与其渐近值之间的差异减小到初始差异的5%的比率。我们发现,尽管r *取决于物种形成的时间和有效种群的大小,但它总是相对较小,<10 / N4,其中N4是由物种内部分支代表的物种的有效大小。树。因此,除非现代种群的有效大小与有效大小有很大差异,否则中性位点的基因树与物种树之间的一致性预计在染色体上的长​​度尺度与物种内显着的连锁不平衡程度大致相同。他们的祖先人口。平衡选择和选择性扫描都可以导致更长的基因组区域具有一致的基因树。

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