Drought frequency and intensity are expected to increase in the Mediterranean as a consequence of global climate change. To understand how photosynthetic capacity responds to long-term water stress, we measured seasonal patterns of stomatal (SL), mesophyll (MCL) and biochemical limitations (BL) to net photosynthesis (Amax) in three Quercus ilex (L.) populations from sites differing in annual rainfall. In the absence of water stress, stomatal conductance (gs), maximum carboxylation capacity (Vcmax), photosynthetic electron transport rate (Jmax) and Amax were similar among populations. However, as leaf predawn water potential (Yl,pd) declined, the population from the wettest site showed steeper declines in gs, Vcmax, Jmax and Amax than those ...
Responses of leaf water relations and photosynthesis to summer drought and autumn rewetting were stu...
Increasing temperature and drought conditions in the Mediterranean can result in leaf dehydration an...
Drought strongly influences terrestrial C cycling via its effects on plant H2O and CO2 exchange. How...
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 ...
Global climate change is expected to result in more fre-quent and intense droughts in theMediterrane...
Global climate change is expected to result in more frequent and intense droughts in the Mediterrane...
• Quercus ilex L., the dominant species in Mediterranean forests and one with a great capacity for r...
Predicting the large-scale consequences of drought in contrasting environments requires that we unde...
The Mediterranean region is a hot spot of climate change vulnerable to increased droughts and heat w...
International audienceIncreasing temperature and drought can result in leaf dehydration and defoliat...
Water availability is the most limiting factor to global plant productivity, yet photosynthetic resp...
Like many midlatitude ecosystems, Mediterranean forests will suffer longer and more intense droughts...
Different functional and structural strategies to cope with water shortage exist both within and acr...
Responses of leaf water relations and photosynthesis to summer drought and autumn rewetting were stu...
Increasing temperature and drought conditions in the Mediterranean can result in leaf dehydration an...
Drought strongly influences terrestrial C cycling via its effects on plant H2O and CO2 exchange. How...
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 ...
Global climate change is expected to result in more fre-quent and intense droughts in theMediterrane...
Global climate change is expected to result in more frequent and intense droughts in the Mediterrane...
• Quercus ilex L., the dominant species in Mediterranean forests and one with a great capacity for r...
Predicting the large-scale consequences of drought in contrasting environments requires that we unde...
The Mediterranean region is a hot spot of climate change vulnerable to increased droughts and heat w...
International audienceIncreasing temperature and drought can result in leaf dehydration and defoliat...
Water availability is the most limiting factor to global plant productivity, yet photosynthetic resp...
Like many midlatitude ecosystems, Mediterranean forests will suffer longer and more intense droughts...
Different functional and structural strategies to cope with water shortage exist both within and acr...
Responses of leaf water relations and photosynthesis to summer drought and autumn rewetting were stu...
Increasing temperature and drought conditions in the Mediterranean can result in leaf dehydration an...
Drought strongly influences terrestrial C cycling via its effects on plant H2O and CO2 exchange. How...