The Arctic is experiencingthe fastest rates of globalwarming,leadingto shiftsin the distributionof its biotaandincreasingthe potentialfor hybridization. However, genomicevidenceof recenthybridization events in theArctic remainsunexpectedlyrare. Here, we use whole-genomesequencingof contemporary and 122-year-oldhistoricalspecimensto investigate the originof an Arctic hybridpopulation of Atlanticpuffins(Fr aterculaarctica)on Bjørnøya, Norway. We show that the hybridization between the High Arctic, large-bodiedsubspeciesF. a. naumanniand the temperate, smaller-sizedsubspeciesF. a. arcticabeganas recentlyas six generationsagodue to an unexpectedsouthward rangeexpansionofF. a. naumanni.Moreover, we find a significanttemporalloss of geneticdivers...
Aims: We investigated post-glacial recolonization of the North American Arctic by Arctic char (Salve...
We provide an expansive analysis of polar bear (Ursus maritimus) circumpolar genetic variation durin...
<div><p>We provide an expansive analysis of polar bear (<i>Ursus maritimus</i>) circumpolar genetic ...
Across its range, the Atlantic Puffin Fratercula arctica is divided into four separate genetic clust...
Rapid global warming is severely impacting Arctic ecosystems and is predicted to transform the abund...
Kersten et al. sequence a draft genome for the Atlantic puffin and report its population structure, ...
Seabirds are one of the most at-risk groups, with many species in decline. In Scandinavia, seabirds ...
We studied the influence of glacial oscillations on the genetic structure of seven species of white-...
Typically much smaller in number than their mainland counterparts, island populations are ideal syst...
In this thesis we studied how the changes in the climate determine the distribution, diversity and c...
Climate changes in the Arctic are predicted to alter distributions of marine species. However, such ...
Loss of Arctic sea ice owing to climate change is predicted to reduce both genetic diversity and gen...
Characterizing the extent of genetic differentiation among individuals and its distribution across t...
Sea ice is believed to be a major factor shaping gene flow for polar marine organisms, but it remain...
Aims: We investigated post-glacial recolonization of the North American Arctic by Arctic char (Salve...
We provide an expansive analysis of polar bear (Ursus maritimus) circumpolar genetic variation durin...
<div><p>We provide an expansive analysis of polar bear (<i>Ursus maritimus</i>) circumpolar genetic ...
Across its range, the Atlantic Puffin Fratercula arctica is divided into four separate genetic clust...
Rapid global warming is severely impacting Arctic ecosystems and is predicted to transform the abund...
Kersten et al. sequence a draft genome for the Atlantic puffin and report its population structure, ...
Seabirds are one of the most at-risk groups, with many species in decline. In Scandinavia, seabirds ...
We studied the influence of glacial oscillations on the genetic structure of seven species of white-...
Typically much smaller in number than their mainland counterparts, island populations are ideal syst...
In this thesis we studied how the changes in the climate determine the distribution, diversity and c...
Climate changes in the Arctic are predicted to alter distributions of marine species. However, such ...
Loss of Arctic sea ice owing to climate change is predicted to reduce both genetic diversity and gen...
Characterizing the extent of genetic differentiation among individuals and its distribution across t...
Sea ice is believed to be a major factor shaping gene flow for polar marine organisms, but it remain...
Aims: We investigated post-glacial recolonization of the North American Arctic by Arctic char (Salve...
We provide an expansive analysis of polar bear (Ursus maritimus) circumpolar genetic variation durin...
<div><p>We provide an expansive analysis of polar bear (<i>Ursus maritimus</i>) circumpolar genetic ...