Lichens are symbiotic organisms sensitive to climate change and susceptible to a severe decline in diversity, especially in high elevation environments that are already threatened. In this study, we focused on water-energy relationships derived from climatic variables and phylogenetic diversity indices of terricolous lichen communities occurring on a representative Mediterranean mountain. We hypothesized that the variation of precipitation and temperature and their interaction along the altitudinal gradient will shape the phylogenetic diversity and structure of lichen communities. Our results reveal that dry and arid conditions lead to a strong loss in phylogenetic diversity with consequent impoverishment of high elevation lichen communitie...
1. Climate change is expected to cause several impacts at the global scale and drylands will be amon...
1. Climate change is expected to cause several impacts at the global scale, and drylands will be amo...
Aim: Patterns of epiphytic lichen diversity along elevational gradients covering the range of Norway...
Lichens are symbiotic organisms sensitive to climate change and susceptible to a severe decline in d...
This thesis focuses on the impact of climate change in alpine ecosystems stressing the response of h...
We explored the influence of climatic factors on diversity patterns of multiple taxa (lichens, bryop...
Several studies have evaluated lichen responses in terms of shifts in species climate suitability, s...
Climate change is already causing considerable reductions in biodiversity in all terrestrial ecosyst...
Assessing the ecological impacts of environmental change on biological communities requires knowledg...
International audienceClimate change is expected to strongly impact biodiversity in Alpine ecosystem...
Holobionts are dynamic ecosystems that may respond to abiotic drivers with compositional changes. Un...
none2noWe explored the patterns of beta-diversity of forest epiphytic bryophytes and lichens along e...
1. Climate change is expected to cause several impacts at the global scale and drylands will be amon...
1. Climate change is expected to cause several impacts at the global scale, and drylands will be amo...
Aim: Patterns of epiphytic lichen diversity along elevational gradients covering the range of Norway...
Lichens are symbiotic organisms sensitive to climate change and susceptible to a severe decline in d...
This thesis focuses on the impact of climate change in alpine ecosystems stressing the response of h...
We explored the influence of climatic factors on diversity patterns of multiple taxa (lichens, bryop...
Several studies have evaluated lichen responses in terms of shifts in species climate suitability, s...
Climate change is already causing considerable reductions in biodiversity in all terrestrial ecosyst...
Assessing the ecological impacts of environmental change on biological communities requires knowledg...
International audienceClimate change is expected to strongly impact biodiversity in Alpine ecosystem...
Holobionts are dynamic ecosystems that may respond to abiotic drivers with compositional changes. Un...
none2noWe explored the patterns of beta-diversity of forest epiphytic bryophytes and lichens along e...
1. Climate change is expected to cause several impacts at the global scale and drylands will be amon...
1. Climate change is expected to cause several impacts at the global scale, and drylands will be amo...
Aim: Patterns of epiphytic lichen diversity along elevational gradients covering the range of Norway...