Local persistence of plant species in the face of climate change is largely mediated by genetic adaptation and phenotypic plasticity. In species with a wide altitudinal range, population responses to global warming are likely to differ at contrasting elevations. In controlled climate chambers, we investigated the responses of low and high elevation populations (1200 and 1800 m a.s.l.) of three nutrient-poor grassland species, Trifolium montanum, Ranunculus bulbosus, and Briza media, to ambient and elevated temperature. We measured growth-related, reproductive and phenological traits, evaluated differences in trait plasticity and examined whether trait values or plasticities were positively related to approximate fitness and thus under selec...
Alpine plants occurring at high elevation are vulnerable to ongoing climate change, yet relatively l...
For alpine plants to persist under climate change they must be able to adapt to new temperature and ...
For alpine plants to persist under climate change they must be able to adapt to new temperature and ...
Local persistence of plant species in the face of climate change is largely mediated by genetic adap...
Local persistence of plant species in the face of climate change is largely mediated by genetic adap...
International audiencePhenotypic plasticity is important for species responses to global change and ...
International audiencePhenotypic plasticity is important for species responses to global change and ...
International audiencePhenotypic plasticity is important for species responses to global change and ...
Phenotypic plasticity is important for species responses to global change and species coexistence. P...
1. Understanding species' abilities to cope with changing climate is a key prerequisite for pred...
Aims: Effects of climate change, especially changes in temperatures and precipitation patterns, are ...
Global warming has caused shifts in the flowering time of many plant species. In alpine regions the ...
Ongoing climate change may impact alpine plant populations via both direct effects of increased temp...
Ongoing climate change may impact alpine plant populations via both direct effects of increased temp...
Ongoing climate change may impact alpine plant populations via both direct effects of increased temp...
Alpine plants occurring at high elevation are vulnerable to ongoing climate change, yet relatively l...
For alpine plants to persist under climate change they must be able to adapt to new temperature and ...
For alpine plants to persist under climate change they must be able to adapt to new temperature and ...
Local persistence of plant species in the face of climate change is largely mediated by genetic adap...
Local persistence of plant species in the face of climate change is largely mediated by genetic adap...
International audiencePhenotypic plasticity is important for species responses to global change and ...
International audiencePhenotypic plasticity is important for species responses to global change and ...
International audiencePhenotypic plasticity is important for species responses to global change and ...
Phenotypic plasticity is important for species responses to global change and species coexistence. P...
1. Understanding species' abilities to cope with changing climate is a key prerequisite for pred...
Aims: Effects of climate change, especially changes in temperatures and precipitation patterns, are ...
Global warming has caused shifts in the flowering time of many plant species. In alpine regions the ...
Ongoing climate change may impact alpine plant populations via both direct effects of increased temp...
Ongoing climate change may impact alpine plant populations via both direct effects of increased temp...
Ongoing climate change may impact alpine plant populations via both direct effects of increased temp...
Alpine plants occurring at high elevation are vulnerable to ongoing climate change, yet relatively l...
For alpine plants to persist under climate change they must be able to adapt to new temperature and ...
For alpine plants to persist under climate change they must be able to adapt to new temperature and ...