Genetic selection is often implicated as the underlying cause of heritable phenotypic differences between hatchery and wild populations of steelhead trout (Oncorhynchus mykiss) that also differ in lifetime fitness. Developmental plasticity, which can also affect fitness, may be mediated by epigenetic mechanisms such as DNA methylation. Our previous study identified significant differences in DNA methylation between adult hatchery- and natural-origin steelhead from the same population that could not be distinguished by DNA sequence variation. In the current study, we tested whether hatchery-rearing conditions can influence patterns of DNA methylation in steelhead with known genetic backgrounds, and assessed the stability of these changes ove...
Abstract Background Early maturation in the Atlantic salmon is an interesting subject for numerous r...
DNA methylation has been proposed as an epigenetic, evolutionary mechanism for acclimation, transgen...
Epigenetic mechanisms such as DNA methylation have been proposed as an important source of variation...
While the goal of most conservation hatchery programs is to produce fish that are genetically and ph...
International audiencePhenotypic plasticity is a key component of the ability of organisms to respon...
Human activities and resource exploitation led to a massive decline of wild salmonid populations, co...
Human activities and resource exploitation led to a massive decline of wild salmonid populations, co...
International audiencePhenotypic plasticity is a key component of the ability of organisms to respon...
Environmental factors can promote phenotypic variation through alterations in the epigenome and faci...
Inbreeding depression is the loss of fitness resulting from the mating of genetically related indivi...
Inbreeding depression is the loss of fitness resulting from the mating of genetically related indivi...
The view of maternal effects (nongenetic maternal environmental influence on offspring phenotype) ha...
Epigenetic mechanisms, influenced by intrinsic and environmental factors are crucial for the regulat...
Background: Environmental changes of biotic or abiotic nature during critical periods of early devel...
Abstract Background Early maturation in the Atlantic salmon is an interesting subject for numerous r...
DNA methylation has been proposed as an epigenetic, evolutionary mechanism for acclimation, transgen...
Epigenetic mechanisms such as DNA methylation have been proposed as an important source of variation...
While the goal of most conservation hatchery programs is to produce fish that are genetically and ph...
International audiencePhenotypic plasticity is a key component of the ability of organisms to respon...
Human activities and resource exploitation led to a massive decline of wild salmonid populations, co...
Human activities and resource exploitation led to a massive decline of wild salmonid populations, co...
International audiencePhenotypic plasticity is a key component of the ability of organisms to respon...
Environmental factors can promote phenotypic variation through alterations in the epigenome and faci...
Inbreeding depression is the loss of fitness resulting from the mating of genetically related indivi...
Inbreeding depression is the loss of fitness resulting from the mating of genetically related indivi...
The view of maternal effects (nongenetic maternal environmental influence on offspring phenotype) ha...
Epigenetic mechanisms, influenced by intrinsic and environmental factors are crucial for the regulat...
Background: Environmental changes of biotic or abiotic nature during critical periods of early devel...
Abstract Background Early maturation in the Atlantic salmon is an interesting subject for numerous r...
DNA methylation has been proposed as an epigenetic, evolutionary mechanism for acclimation, transgen...
Epigenetic mechanisms such as DNA methylation have been proposed as an important source of variation...