Gene flow influences the genomic architecture of local adaptation in six riverine fish species

生物 基因流 局部适应 单核苷酸多态性 遗传学 离群值 进化生物学 基因 基因组 计算生物学 基因型 遗传变异 人口 统计 人口学 数学 社会学
作者
Yue Shi,Kristen L. Bouska,Garrett J. McKinney,William Dokai,Andrew Bartels,Megan V. McPhee,Wesley A. Larson
出处
期刊:Molecular Ecology [Wiley]
卷期号:32 (7): 1549-1566 被引量:21
标识
DOI:10.1111/mec.16317
摘要

Abstract Understanding how gene flow influences adaptive divergence is important for predicting adaptive responses. Theoretical studies suggest that when gene flow is high, clustering of adaptive genes in fewer genomic regions would protect adaptive alleles from recombination and thus be selected for, but few studies have tested it with empirical data. Here, we used restriction site‐associated sequencing to generate genomic data for six fish species with contrasting life histories from six reaches of the Upper Mississippi River System, USA. We used four differentiation‐based outlier tests and three genotype–environment association analyses to define neutral single nucleotide polymorphisms (SNPs) and outlier SNPs that were putatively under selection. We then examined the distribution of outlier SNPs along the genome and investigated whether these SNPs were found in genomic islands of differentiation and inversions. We found that gene flow varied among species, and outlier SNPs were clustered more tightly in species with higher gene flow. The two species with the highest overall F ST (0.0303–0.0720) and therefore lowest gene flow showed little evidence of clusters of outlier SNPs, with outlier SNPs in these species spreading uniformly across the genome. In contrast, nearly all outlier SNPs in the species with the lowest F ST (0.0003) were found in a single large putative inversion. Two other species with intermediate gene flow ( F ST ~ 0.0025–0.0050) also showed clustered genomic architectures, with most islands of differentiation clustered on a few chromosomes. Our results provide important empirical evidence to support the hypothesis that increasingly clustered architecture of local adaptation is associated with high gene flow.
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