Cancer Research UK Beatson Institute, Glasgow, G61 1BD, UK.
The Blizard Institute, Barts and The London School of Medicine and Dentistry, Queen Mary University of London, London, E1 2AT, UK.
Mol Ecol Resour. 2023 Aug;23(6):1226-1240. doi: 10.1111/1755-0998.13790. Epub 2023 Apr 13.
Innovations in ancient DNA (aDNA) preparation and sequencing technologies have exponentially increased the quality and quantity of aDNA data extracted from ancient biological materials. The additional temporal component from the incoming aDNA data can provide improved power to address fundamental evolutionary questions like characterizing selection processes that shape the phenotypes and genotypes of contemporary populations or species. However, utilizing aDNA to study past selection processes still involves considerable hurdles like how to eliminate the confounding factor of genetic interactions in the inference of selection. To address this issue, we extend the approach of He et al., 2023 to infer temporally variable selection from the aDNA data in the form of genotype likelihoods with the flexibility of modelling linkage and epistasis in this work. Our posterior computation is carried out by a robust adaptive version of the particle marginal Metropolis-Hastings algorithm with a coerced acceptance rate. Our extension inherits the desirable features of He et al., 2023 such as modelling sample uncertainty resulting from the damage and fragmentation of aDNA molecules and reconstructing underlying gamete frequency trajectories of the population. We evaluate its performance through extensive simulations and show its utility with an application to the aDNA data from pigmentation loci in horses.
古 DNA(aDNA)制备和测序技术的创新极大地提高了从古代生物材料中提取的 aDNA 数据的质量和数量。来自新传入的 aDNA 数据的额外时间成分可以提供更好的能力,以解决基本的进化问题,如描述塑造当代种群或物种表型和基因型的选择过程。然而,利用 aDNA 研究过去的选择过程仍然涉及到相当多的障碍,例如如何消除遗传相互作用在选择推断中的混杂因素。为了解决这个问题,我们扩展了 He 等人的方法,2023 年以基因型可能性的形式从 aDNA 数据中推断出随时间变化的选择,在这项工作中具有建模连锁和上位性的灵活性。我们的后验计算是通过带有强制接受率的粒子边缘 Metropolis-Hastings 算法的稳健自适应版本进行的。我们的扩展继承了 He 等人的理想特性,2023 年例如模拟由 aDNA 分子的损伤和碎片化引起的样本不确定性,以及重建种群中潜在的配子频率轨迹。我们通过广泛的模拟评估了它的性能,并通过应用于马的色素沉着基因座的 aDNA 数据展示了它的实用性。