Though genetic diversity is necessary for population persistence in rapidly changing environments, little is known about how climate-warming influences patterns of intra-population genetic variation. For a pink salmon population experiencing increasing temperatures, we used temporal genetic data (microsatellite = 1993, 2001, 2009; allozyme = 1979, 1981, 1983) to quantify the genetic effective population size (Ne) and genetic divergence due to differences in migration timing and to estimate whether these quantities have changed over time. We predicted that temporal trends toward earlier migration timing and a corresponding loss of phenotypic variation would decrease genetic divergence based on migration timing and Ne. We observed significant...
Climate-induced phenological shifts can influence population, evolutionary, and ecological dynamics,...
Despite decades of research assessing the genetic structure of natural populations, the biological m...
Climate-induced phenological shifts can influence population, evolutionary, and ecological dynamics,...
Though genetic diversity is necessary for population persistence in rapidly changing environments, l...
To predict how climate change will influence populations it is necessary to understand the mechanism...
Accumulating evidence has indicated that many fish populations are responding to climate change thro...
Neutral genetic markers are routinely used to define distinct units within species that warrant disc...
Knowledge of the relative importance of genetic versus environmental determinants of major developme...
Environmental change can shift the phenotype of an organism through either evolutionary or nongeneti...
Distribution of ecotypic variation in natural populations is influenced by neutral and adaptive evol...
Fish migrations are energetically costly, especially when moving between fresh and saltwater, but ar...
Studying the effect of similar environments on diverse genetic backgrounds has long been a goal of e...
Landscape genomics is a rapidly growing field with recent advances in both genotyping efficiency and...
Graduation date: 2008The genetic basis of adaptation is complex as many fitness-related traits are q...
The timing of breeding migration and reproduction links generations and substantially influences ind...
Climate-induced phenological shifts can influence population, evolutionary, and ecological dynamics,...
Despite decades of research assessing the genetic structure of natural populations, the biological m...
Climate-induced phenological shifts can influence population, evolutionary, and ecological dynamics,...
Though genetic diversity is necessary for population persistence in rapidly changing environments, l...
To predict how climate change will influence populations it is necessary to understand the mechanism...
Accumulating evidence has indicated that many fish populations are responding to climate change thro...
Neutral genetic markers are routinely used to define distinct units within species that warrant disc...
Knowledge of the relative importance of genetic versus environmental determinants of major developme...
Environmental change can shift the phenotype of an organism through either evolutionary or nongeneti...
Distribution of ecotypic variation in natural populations is influenced by neutral and adaptive evol...
Fish migrations are energetically costly, especially when moving between fresh and saltwater, but ar...
Studying the effect of similar environments on diverse genetic backgrounds has long been a goal of e...
Landscape genomics is a rapidly growing field with recent advances in both genotyping efficiency and...
Graduation date: 2008The genetic basis of adaptation is complex as many fitness-related traits are q...
The timing of breeding migration and reproduction links generations and substantially influences ind...
Climate-induced phenological shifts can influence population, evolutionary, and ecological dynamics,...
Despite decades of research assessing the genetic structure of natural populations, the biological m...
Climate-induced phenological shifts can influence population, evolutionary, and ecological dynamics,...