Understanding the genomic basis of adaptive divergence in the presence of gene flow remains a major challenge in evolutionary biology. In prickly sculpin (Cottus asper), an abundant euryhaline fish in northwestern North America, high genetic connectivity among brackish-water (estuarine) and freshwater (tributary) habitats of coastal rivers does not preclude the build-up of neutral genetic differentiation and emergence of different life history strategies. Because these two habitats present different osmotic niches, we predicted high genetic differentiation at known teleost candidate genes underlying salinity tolerance and osmoregulation. We applied whole-genome sequencing of pooled DNA samples (Pool-Seq) to explore adaptive divergence betwe...
Biotic interactions are potent, widespread causes of natural selection and divergent phenotypic evol...
Understanding how gene flow influences adaptive divergence is important for predicting adaptive resp...
Adaptation to salinity affects species distributions, promotes speciation, and guides many evolution...
Understanding the genomic basis of adaptive divergence in the presence of gene flow remains a major ...
Understanding the genomic basis of adaptive divergence in the presence of gene flow remains a major ...
Understanding the genomic basis of adaptive divergence in the presence of gene flow remains a major ...
Genomic studies of parallel (or convergent) evolution often compare multiple populations diverged in...
Genomic studies of parallel (or convergent) evolution often compare multiple populations diverged in...
Genomic studies of parallel (or convergent) evolution often compare multiple populations diverged in...
Biotic interactions are potent, widespread causes of natural selection and divergent phenotypic evol...
Genomic studies of parallel (or convergent) evolution often compare multiple populations diverged in...
Biotic interactions are potent, widespread causes of natural selection and divergent phenotypic evol...
Adaptation to different salinities can drive and maintain divergence between populations of aquatic ...
Adaptation to different salinities can drive and maintain divergence between populations of aquatic ...
Adaptation to different salinities can drive and maintain divergence between populations of aquatic ...
Biotic interactions are potent, widespread causes of natural selection and divergent phenotypic evol...
Understanding how gene flow influences adaptive divergence is important for predicting adaptive resp...
Adaptation to salinity affects species distributions, promotes speciation, and guides many evolution...
Understanding the genomic basis of adaptive divergence in the presence of gene flow remains a major ...
Understanding the genomic basis of adaptive divergence in the presence of gene flow remains a major ...
Understanding the genomic basis of adaptive divergence in the presence of gene flow remains a major ...
Genomic studies of parallel (or convergent) evolution often compare multiple populations diverged in...
Genomic studies of parallel (or convergent) evolution often compare multiple populations diverged in...
Genomic studies of parallel (or convergent) evolution often compare multiple populations diverged in...
Biotic interactions are potent, widespread causes of natural selection and divergent phenotypic evol...
Genomic studies of parallel (or convergent) evolution often compare multiple populations diverged in...
Biotic interactions are potent, widespread causes of natural selection and divergent phenotypic evol...
Adaptation to different salinities can drive and maintain divergence between populations of aquatic ...
Adaptation to different salinities can drive and maintain divergence between populations of aquatic ...
Adaptation to different salinities can drive and maintain divergence between populations of aquatic ...
Biotic interactions are potent, widespread causes of natural selection and divergent phenotypic evol...
Understanding how gene flow influences adaptive divergence is important for predicting adaptive resp...
Adaptation to salinity affects species distributions, promotes speciation, and guides many evolution...