Forien Raphaël, Ringbauer Harald, Coop Graham
INRAE - BioSP, Centre INRAE PACA, 228 route de l'aérodrome, Domaine St-Paul - Site Agroparc, 84914, Avignon Cedex 9, France.
Department of Archaeogenetics, Max Planck Institute for Evolutionary Anthropology, Deutscher Platz 6, 04103, Leipzig, Germany.
bioRxiv. 2023 Jun 13:2023.06.13.544589. doi: 10.1101/2023.06.13.544589.
We introduce a modified spatial Λ-Fleming-Viot process to model the ancestry of individuals in a population occupying a continuous spatial habitat divided into two areas by a sharp discontinuity of the dispersal rate and effective population density. We derive an analytical formula for the expected number of shared haplotype segments between two individuals depending on their sampling locations. This formula involves the transition density of a skew diffusion which appears as a scaling limit of the ancestral lineages of individuals in this model. We then show that this formula can be used to infer the dispersal parameters and the effective population density of both regions, using a composite likelihood approach, and we demonstrate the efficiency of this method on a range of simulated data sets.
我们引入一种改进的空间Λ-弗莱明-维奥特过程,以对占据连续空间栖息地的种群中个体的祖先进行建模,该栖息地被扩散率和有效种群密度的急剧不连续性划分为两个区域。我们推导出一个关于两个个体之间共享单倍型片段预期数量的解析公式,该公式取决于它们的采样位置。这个公式涉及到一个斜扩散的转移密度,它作为该模型中个体祖先谱系的缩放极限出现。然后我们表明,使用复合似然方法,这个公式可用于推断两个区域的扩散参数和有效种群密度,并且我们在一系列模拟数据集上证明了该方法的有效性。