International audienceIncreasing temperature and drought can result in leaf dehydration and defoliation even in drought-adapted tree species such as the Mediterranean evergreen Quercus ilex L. The stomatal regulation of leaf water potential plays a central role in avoiding this phenomenon and is constrained by a suite of leaf traits including hydraulic conductance and vulnerability, hydraulic capacitance, minimum conductance to water vapour, osmotic potential and cell wall elasticity. We investigated whether the plasticity in these traits may improve leaf tolerance to drought in two long-term rainfall exclusion experiments in Mediterranean forests. Osmotic adjustment was observed to lower the water potential at turgor loss in the rainfall-e...
Drought negatively impacts plant growth and survival. The ability to maintain hydraulic functionalit...
To investigate the role of seeds origin in drought tolerance, the response to water deprivation of c...
One-year-old seedlings of Quercus pyrenaica and Quercus petraea were subjected in a greenhouse to th...
International audienceIncreasing temperature and drought can result in leaf dehydration and defoliat...
Increasing temperature and drought conditions in the Mediterranean can result in leaf dehydration an...
Stem water storage capacity and hydraulic capacitance (C-S) play a crucial role in tree survival und...
Drought frequency and intensity are expected to increase in the Mediterranean as a consequence of gl...
International audienceDrought frequency and intensity are expected to increase in the Mediterranean ...
Like many midlatitude ecosystems, Mediterranean forests will suffer longer and more intense droughts...
Quercus suber and Quercus ilex trees are major elements of Mediterranean landscapes, which are threa...
Global climate change is expected to result in more fre-quent and intense droughts in theMediterrane...
Efficient conduction of water inside leaves is essential for leaf function, yet the hydraulic-mediat...
Global climate change is expected to result in more frequent and intense droughts in the Mediterrane...
Drought negatively impacts plant growth and survival. The ability to maintain hydraulic functionalit...
To investigate the role of seeds origin in drought tolerance, the response to water deprivation of c...
One-year-old seedlings of Quercus pyrenaica and Quercus petraea were subjected in a greenhouse to th...
International audienceIncreasing temperature and drought can result in leaf dehydration and defoliat...
Increasing temperature and drought conditions in the Mediterranean can result in leaf dehydration an...
Stem water storage capacity and hydraulic capacitance (C-S) play a crucial role in tree survival und...
Drought frequency and intensity are expected to increase in the Mediterranean as a consequence of gl...
International audienceDrought frequency and intensity are expected to increase in the Mediterranean ...
Like many midlatitude ecosystems, Mediterranean forests will suffer longer and more intense droughts...
Quercus suber and Quercus ilex trees are major elements of Mediterranean landscapes, which are threa...
Global climate change is expected to result in more fre-quent and intense droughts in theMediterrane...
Efficient conduction of water inside leaves is essential for leaf function, yet the hydraulic-mediat...
Global climate change is expected to result in more frequent and intense droughts in the Mediterrane...
Drought negatively impacts plant growth and survival. The ability to maintain hydraulic functionalit...
To investigate the role of seeds origin in drought tolerance, the response to water deprivation of c...
One-year-old seedlings of Quercus pyrenaica and Quercus petraea were subjected in a greenhouse to th...