Adaptive genetic variation is a key factor in evolutionary biology, but the detection of signatures of natural selection remains challenging in non-model organisms. We used a genome scan approach to detect signals of natural selection in the Black alder (Alnus glutinosa), a widespread wind-pollinated tree. Gene flow through pollen dispersal is believed to be high in this species, and we therefore expected to find a clear response to natural selection. In combination with two different landscape genetic approaches, we determined which environmental variables were most associated with the inferred selection. This analysis was performed on a regional scale (northern Belgium) and on a continental scale (Europe). Because climate-related differen...
Understanding how specific environmental factors shape gene flow while disentangling their importanc...
International audienceHigh genetic variation and extensive gene flow may help forest trees with adap...
Detecting signatures of selection in tree populations threatened by climate change is currently a ma...
Adaptive genetic variation is a key factor in evolutionary biology, but the detection of signatures ...
The evaluation of the molecular signatures of selection in species lacking an available closely rela...
The evaluation of the molecular signatures of selection in species lacking an available closely rela...
The adaptive potential of tree species to cope with climate change has important ecological and econ...
Detecting the molecular basis of local adaptation and identifying selective drivers is still challen...
Detecting signatures of selection in tree populations threatened by climate change is currently a ma...
Detecting the molecular basis of local adaptation and identifying selective drivers is still challen...
Rapid increases in global temperature are likely to impose strong directional selection on many plan...
Testing how populations are locally adapted and predicting their response to their future environmen...
Detecting the molecular basis of local adaptation and identifying selective drivers is still challen...
Abstract Background Diversity among phenology-related genes is predicted to be a contributing factor...
Understanding how specific environmental factors shape gene flow while disentangling their importanc...
International audienceHigh genetic variation and extensive gene flow may help forest trees with adap...
Detecting signatures of selection in tree populations threatened by climate change is currently a ma...
Adaptive genetic variation is a key factor in evolutionary biology, but the detection of signatures ...
The evaluation of the molecular signatures of selection in species lacking an available closely rela...
The evaluation of the molecular signatures of selection in species lacking an available closely rela...
The adaptive potential of tree species to cope with climate change has important ecological and econ...
Detecting the molecular basis of local adaptation and identifying selective drivers is still challen...
Detecting signatures of selection in tree populations threatened by climate change is currently a ma...
Detecting the molecular basis of local adaptation and identifying selective drivers is still challen...
Rapid increases in global temperature are likely to impose strong directional selection on many plan...
Testing how populations are locally adapted and predicting their response to their future environmen...
Detecting the molecular basis of local adaptation and identifying selective drivers is still challen...
Abstract Background Diversity among phenology-related genes is predicted to be a contributing factor...
Understanding how specific environmental factors shape gene flow while disentangling their importanc...
International audienceHigh genetic variation and extensive gene flow may help forest trees with adap...
Detecting signatures of selection in tree populations threatened by climate change is currently a ma...