We assessed the adaptive potential of seed and leaf phenology in 10 natural populations of sessile oak (Quercus petraea) sampled along two altitudinal transects using common garden experiments. Population differentiation for both phenological traits was observed with high-altitude populations germinating and flushing later than low altitude ones. However, high genetic variation and heritability values were also maintained within populations, despite slightly decreasing for dates of leaf unfolding with increasing altitude. We suggest that biotic and abiotic fluctuating selection pressures within populations and high gene flow are the main mechanisms maintaining high genetic variation for these fitness related traits. Moreover, changes in sel...
The vulnerability of forest species and tree populations to climate change is related to the exposur...
The vulnerability of forest species and tree populations to climate change is related to the exposur...
The vulnerability of forest species and tree populations to climate change is related to the exposur...
It has been predicted that environmental changes will radically alter the selective pressures on phe...
It has been predicted that environmental changes will radically alter the selective pressures on phe...
It has been predicted that environmental changes will radically alter the selective pressures on phe...
It has been predicted that environmental changes will radically alter the selective pressures on phe...
The phenotypic responses of functional traits in natural populations are driven by genetic diversity...
It has been predicted that environmental changes will radically alter the selective pressures on phe...
International audience1. The genetic and phenotypic variability of life-history traits determines th...
International audience1. The genetic and phenotypic variability of life-history traits determines th...
International audience1. The genetic and phenotypic variability of life-history traits determines th...
1. The genetic and phenotypic variability of life-history traits determines the demographic attribut...
1. The genetic and phenotypic variability of life-history traits determines the demographic attribut...
The vulnerability of forest species and tree populations to climate change is related to the exposur...
The vulnerability of forest species and tree populations to climate change is related to the exposur...
The vulnerability of forest species and tree populations to climate change is related to the exposur...
The vulnerability of forest species and tree populations to climate change is related to the exposur...
It has been predicted that environmental changes will radically alter the selective pressures on phe...
It has been predicted that environmental changes will radically alter the selective pressures on phe...
It has been predicted that environmental changes will radically alter the selective pressures on phe...
It has been predicted that environmental changes will radically alter the selective pressures on phe...
The phenotypic responses of functional traits in natural populations are driven by genetic diversity...
It has been predicted that environmental changes will radically alter the selective pressures on phe...
International audience1. The genetic and phenotypic variability of life-history traits determines th...
International audience1. The genetic and phenotypic variability of life-history traits determines th...
International audience1. The genetic and phenotypic variability of life-history traits determines th...
1. The genetic and phenotypic variability of life-history traits determines the demographic attribut...
1. The genetic and phenotypic variability of life-history traits determines the demographic attribut...
The vulnerability of forest species and tree populations to climate change is related to the exposur...
The vulnerability of forest species and tree populations to climate change is related to the exposur...
The vulnerability of forest species and tree populations to climate change is related to the exposur...
The vulnerability of forest species and tree populations to climate change is related to the exposur...