Local adaptation reflects a balance between natural selection and gene flow and is classically thought to require the retention of locally adapted alleles. However, organisms with high dispersal potential across a spatially or temporally heterogeneous landscape pose an interesting challenge to this view requiring local selection every generation or when environmental conditions change to generate adaptation in adults. Here, we test for geographical and sequence-based signals of selection in five putatively adaptive and two putatively neutral genes identified in a previous genome scan of the highly dispersing purple sea urchin, Strongylocentrotus purpuratus. Comparing six populations spanning the species’ wide latitudinal range from Canada t...
Stress responses play an important role in shaping species distributions and robustness to climate c...
International audienceGenetic adaptation to future environmental conditions is crucial to help speci...
Genome scans of population differentiation identify candidate loci for adaptation but provide little...
Local adaptation reflects a balance between natural selection and gene flow and is classically thoug...
Organisms experience environments that vary across both space and time. Such environmental heterogen...
Across heterogeneous landscapes, populations may have adaptive differences in gene regulation that a...
Synopsis Little is known about the potential for rapid evolution in natural populations in response ...
Rapid environmental change is altering the selective pressures experienced by marine species. While ...
Standing genetic variation is important for population persistence in extreme environmental conditio...
International audienceHighly fecund marine species with dispersive life-history stages often display...
Understanding the spatial scale of local adaptation and the factors associated with adaptive diversi...
Rapid environmental change is altering the selective pressures experienced by marine species. While ...
Standing genetic variation is important for population persistence in extreme environmental conditio...
The balance between natural selection, gene flow and genetic drift is difficult to resolve in marine...
The spatial distribution of genetic variation across landscapes is influenced by physical features t...
Stress responses play an important role in shaping species distributions and robustness to climate c...
International audienceGenetic adaptation to future environmental conditions is crucial to help speci...
Genome scans of population differentiation identify candidate loci for adaptation but provide little...
Local adaptation reflects a balance between natural selection and gene flow and is classically thoug...
Organisms experience environments that vary across both space and time. Such environmental heterogen...
Across heterogeneous landscapes, populations may have adaptive differences in gene regulation that a...
Synopsis Little is known about the potential for rapid evolution in natural populations in response ...
Rapid environmental change is altering the selective pressures experienced by marine species. While ...
Standing genetic variation is important for population persistence in extreme environmental conditio...
International audienceHighly fecund marine species with dispersive life-history stages often display...
Understanding the spatial scale of local adaptation and the factors associated with adaptive diversi...
Rapid environmental change is altering the selective pressures experienced by marine species. While ...
Standing genetic variation is important for population persistence in extreme environmental conditio...
The balance between natural selection, gene flow and genetic drift is difficult to resolve in marine...
The spatial distribution of genetic variation across landscapes is influenced by physical features t...
Stress responses play an important role in shaping species distributions and robustness to climate c...
International audienceGenetic adaptation to future environmental conditions is crucial to help speci...
Genome scans of population differentiation identify candidate loci for adaptation but provide little...