A lack of optimal gene combinations, as well as low levels of genetic diversity are often associated with the formation of species range margins. Conservation efforts rely on predictive modelling using abiotic variables and assessments of genetic diversity to determine target species and populations for controlled breeding, germplasm conservation and assisted migration. Biotic factors such as interspecific competition and hybridization, however, are largely ignored, despite their prevalence across diverse taxa and their role as key evolutionary forces. Hybridization between species with well developed barriers to reproductive isolation often results in the production of offspring with lower fitness. Generation of novel allelic combinations ...
Marginal populations are expected to provide the frontiers for adaptation, evolution and range shift...
Marginal populations are expected to provide the frontiers for adaptation, evolution and range shift...
Marginal populations are expected to provide the frontiers for adaptation, evolution and range shift...
A lack of optimal gene combinations, as well as low levels of genetic diversity are often associated...
A lack of optimal gene combinations, as well as low levels of genetic diversity are often associated...
Interactions between extrinsic factors, such as disruptive selection, and intrinsic factors, such as...
Interactions between extrinsic factors, such as disruptive selection, and intrinsic factors, such as...
Interactions between extrinsic factors, such as disruptive selection, and intrinsic factors, such as...
Secondary contact between closely related taxa routinely occurs during postglacial migrations. After...
Secondary contact between closely related taxa routinely occurs during postglacial migrations. After...
Climate-mediated changes in hybridization will dramatically alter the genetic diversity, adaptive ca...
Climate-mediated changes in hybridization will dramatically alter the genetic diversity, adaptive ca...
Climate-mediated changes in hybridization will dramatically alter the genetic diversity, adaptive ca...
Climate-mediated changes in hybridization will dramatically alter the genetic diversity, adaptive ca...
Marginal populations are expected to provide the frontiers for adaptation, evolution and range shift...
Marginal populations are expected to provide the frontiers for adaptation, evolution and range shift...
Marginal populations are expected to provide the frontiers for adaptation, evolution and range shift...
Marginal populations are expected to provide the frontiers for adaptation, evolution and range shift...
A lack of optimal gene combinations, as well as low levels of genetic diversity are often associated...
A lack of optimal gene combinations, as well as low levels of genetic diversity are often associated...
Interactions between extrinsic factors, such as disruptive selection, and intrinsic factors, such as...
Interactions between extrinsic factors, such as disruptive selection, and intrinsic factors, such as...
Interactions between extrinsic factors, such as disruptive selection, and intrinsic factors, such as...
Secondary contact between closely related taxa routinely occurs during postglacial migrations. After...
Secondary contact between closely related taxa routinely occurs during postglacial migrations. After...
Climate-mediated changes in hybridization will dramatically alter the genetic diversity, adaptive ca...
Climate-mediated changes in hybridization will dramatically alter the genetic diversity, adaptive ca...
Climate-mediated changes in hybridization will dramatically alter the genetic diversity, adaptive ca...
Climate-mediated changes in hybridization will dramatically alter the genetic diversity, adaptive ca...
Marginal populations are expected to provide the frontiers for adaptation, evolution and range shift...
Marginal populations are expected to provide the frontiers for adaptation, evolution and range shift...
Marginal populations are expected to provide the frontiers for adaptation, evolution and range shift...
Marginal populations are expected to provide the frontiers for adaptation, evolution and range shift...