Warmer and drier climatic conditions are projected for the 21st century; however, the role played by extreme climatic events on forest vulnerability is still little understood. For example, more severe droughts and heat waves could threaten quaternary relict tree refugia such as Circum-Mediterranean fir forests (CMFF). Using tree-ring data and a process-based model, we characterized the major climate constraints of recent (1950-2010) CMFF growth to project their vulnerability to 21st-century climate. Simulations predict a 30% growth reduction in some fir species with the 2050s business-as-usual emission scenario, whereas growth would increase in moist refugia due to a longer and warmer growing season. Fir populations currently subjected to ...
Summary The understanding of regional vulnerability to climate change in Mediterranean mountain fore...
Old-growth mountain forests represent an ideal setting for studying long-term impacts of climate cha...
Climate change in the Mediterranean, associated with warmer temperatures and more frequent droughts,...
Warmer and drier climatic conditions are projected for the 21st century; however, the role played by...
Climate change may reduce forest growth and increase forest mortality, which is connected to high ca...
Climate change may reduce forest growth and increase forest mortality, which is connected to high ca...
Climate change may reduce forest growth and increase forest mortality, which is connected to high ca...
Droughts chronically alter resource availability in forest ecosystems. The increased frequency and s...
International audienceForest performance is challenged by climate change but higher atmospheric [CO ...
Many ecologically important forest trees from dry areas have been insufficiently investigated for th...
Aim: Climate change is expected to modify growth trends of forests around the world. However, this m...
International audienceA better understanding of stem growth phenology and its climate drivers would ...
The Mediterranean Basin is the region of Europe most vulnerable to negative climate-change impacts, ...
Summary The understanding of regional vulnerability to climate change in Mediterranean mountain fore...
Old-growth mountain forests represent an ideal setting for studying long-term impacts of climate cha...
Climate change in the Mediterranean, associated with warmer temperatures and more frequent droughts,...
Warmer and drier climatic conditions are projected for the 21st century; however, the role played by...
Climate change may reduce forest growth and increase forest mortality, which is connected to high ca...
Climate change may reduce forest growth and increase forest mortality, which is connected to high ca...
Climate change may reduce forest growth and increase forest mortality, which is connected to high ca...
Droughts chronically alter resource availability in forest ecosystems. The increased frequency and s...
International audienceForest performance is challenged by climate change but higher atmospheric [CO ...
Many ecologically important forest trees from dry areas have been insufficiently investigated for th...
Aim: Climate change is expected to modify growth trends of forests around the world. However, this m...
International audienceA better understanding of stem growth phenology and its climate drivers would ...
The Mediterranean Basin is the region of Europe most vulnerable to negative climate-change impacts, ...
Summary The understanding of regional vulnerability to climate change in Mediterranean mountain fore...
Old-growth mountain forests represent an ideal setting for studying long-term impacts of climate cha...
Climate change in the Mediterranean, associated with warmer temperatures and more frequent droughts,...