Abstract Background The initiation of growth cessation and dormancy represent critical life-history trade-offs between survival and growth and have important fitness effects in perennial plants. Such adaptive life-history traits often show strong local adaptation along environmental gradients but, despite their importance, the genetic architecture of these traits remains poorly understood. Results We integrate whole genome re-sequencing with environmental and phenotypic data from common garden experiments to investigate the genomic basis of local adaptation across a latitudinal gradient in European aspen (Populus tremula). A single genomic region containing the PtFT2 gene mediates local adaptation in the timing of bud set and explains 65% o...
The distribution of the expressed genotype is moved around in the population over time byevolution. ...
The distribution of the expressed genotype is moved around in the population over time byevolution. ...
Future climate change has been predicted to disrupt local adaptation in many perennial plants, such ...
Background: The initiation of growth cessation and dormancy represent critical life history trade of...
Background: The initiation of growth cessation and dormancy represent critical life history trade of...
Background: The initiation of growth cessation and dormancy represent critical life history trade of...
Understanding local adaptation has become a key research area given the ongoing climate challenge an...
Understanding local adaptation has become a key research area given the ongoing climate challenge an...
Understanding local adaptation has become a key research area given the ongoing climate challenge an...
Understanding local adaptation has become a key research area given the ongoing climate challenge an...
Understanding local adaptation has become a key research area given the ongoing climate challenge an...
Understanding local adaptation has become a key research area given the ongoing climate challenge an...
Understanding local adaptation has become a key research area given the ongoing climate challenge an...
Understanding local adaptation has become a key research area given the ongoing climate challenge an...
Understanding local adaptation has become a key research area given the ongoing climate challenge an...
The distribution of the expressed genotype is moved around in the population over time byevolution. ...
The distribution of the expressed genotype is moved around in the population over time byevolution. ...
Future climate change has been predicted to disrupt local adaptation in many perennial plants, such ...
Background: The initiation of growth cessation and dormancy represent critical life history trade of...
Background: The initiation of growth cessation and dormancy represent critical life history trade of...
Background: The initiation of growth cessation and dormancy represent critical life history trade of...
Understanding local adaptation has become a key research area given the ongoing climate challenge an...
Understanding local adaptation has become a key research area given the ongoing climate challenge an...
Understanding local adaptation has become a key research area given the ongoing climate challenge an...
Understanding local adaptation has become a key research area given the ongoing climate challenge an...
Understanding local adaptation has become a key research area given the ongoing climate challenge an...
Understanding local adaptation has become a key research area given the ongoing climate challenge an...
Understanding local adaptation has become a key research area given the ongoing climate challenge an...
Understanding local adaptation has become a key research area given the ongoing climate challenge an...
Understanding local adaptation has become a key research area given the ongoing climate challenge an...
The distribution of the expressed genotype is moved around in the population over time byevolution. ...
The distribution of the expressed genotype is moved around in the population over time byevolution. ...
Future climate change has been predicted to disrupt local adaptation in many perennial plants, such ...