Key Laboratory of Plant Resources Conservation and Sustainable Utilization, South China Botanical Garden, Chinese Academy of Sciences, Guangzhou, 510650, China.
University of the Chinese Academy of Sciences, Beijing, 100049, China.
New Phytol. 2022 Jan;233(1):555-568. doi: 10.1111/nph.17793. Epub 2021 Oct 28.
Natural selection shapes genome-wide patterns of diversity within species and divergence between species. However, quantifying the efficacy of selection and elucidating the relative importance of different types of selection in shaping genomic variation remain challenging. We sequenced whole genomes of 101 individuals of three closely related oak species to track the divergence history, and to dissect the impacts of selective sweeps and background selection on patterns of genomic variation. We estimated that the three species diverged around the late Neogene and experienced a bottleneck during the Pleistocene. We detected genomic regions with elevated relative differentiation ('F -islands'). Population genetic inferences from the site frequency spectrum and ancestral recombination graph indicated that F -islands were formed by selective sweeps. We also found extensive positive selection; the fixation of adaptive mutations and reduction neutral diversity around substitutions generated a signature of selective sweeps. Prevalent negative selection and background selection have reduced genetic diversity in both genic and intergenic regions, and contributed substantially to the baseline variation in genetic diversity. Our results demonstrate the importance of linked selection in shaping genomic variation, and illustrate how the extent and strength of different selection models vary across the genome.
自然选择塑造了物种内的多样性和物种间的分化的全基因组模式。然而,量化选择的效力并阐明不同类型选择在塑造基因组变异中的相对重要性仍然具有挑战性。我们对三个密切相关的橡树物种的 101 个个体进行了全基因组测序,以追踪其分化历史,并剖析选择清除和背景选择对基因组变异模式的影响。我们估计,这三个物种在晚新生代分化,并在更新世经历了瓶颈期。我们检测到了具有较高相对分化的基因组区域(“F 岛”)。从频率谱和祖先重组图谱的种群遗传推断表明,F 岛是由选择清除形成的。我们还发现了广泛的正选择;适应性突变的固定和替换周围中性多样性的减少形成了选择清除的特征。普遍的负选择和背景选择降低了基因和非基因区域的遗传多样性,并为遗传多样性的基线变异做出了重大贡献。我们的研究结果表明,连锁选择在塑造基因组变异中的重要性,并说明了不同选择模型的程度和强度如何在整个基因组中变化。