Plants in Mediterranean ecosystems face multiple environmental stresses during the growing season. Such stresses greatly affect ecosystem function, but are poorly represented by current ecosystem models. Here, we review recent advances in understanding the responses of ecosystem photosynthesis to drought and photoinhibition. Reductions in canopy net assimilation rates by recurrent water limitations during the day and during drought periods result from multiple limitations at the biochemical, cellular and structural levels, including reductions in stomatal, and mesophyll diffusion conductances, foliage biochemical potentials, light harvesting efficiency and modifications in canopy structure. Overall, a hierarchy of environmental effects, fro...
Water stress is a defining characteristic of Mediterranean ecosystems, and is likely to become more ...
Global climate change is expected to increase drought duration and intensity in certain regions whil...
Models disagree on how to represent effects of drought stress on plant gas exchange. Some models ass...
Most temperature based models require a parameter to link temperature with plant functioning; photos...
Global climate change is expected to result in more fre-quent and intense droughts in theMediterrane...
The Mediterranean region is a hot spot of climate change vulnerable to increased droughts and heat w...
Plants are often subjected to periods of soil and atmospheric water deficit during their life cycle....
Global climate change is expected to result in more frequent and intense droughts in the Mediterrane...
Water availability is the most limiting factor to global plant productivity, yet photosynthetic resp...
Water stress is a defining characteristic of Mediterranean ecosystems, and is likely to become more ...
Drought frequency and intensity are expected to increase in the Mediterranean as a consequence of gl...
Water availability is the most limiting factor to global plant productivity, yet photosynthetic resp...
International audienceDrought frequency and intensity are expected to increase in the Mediterranean ...
Plants are often subjected to periods of soil and atmospheric water deficit during their life cycle....
Water stress is a defining characteristic of Mediterranean ecosystems, and is likely to become more ...
Water stress is a defining characteristic of Mediterranean ecosystems, and is likely to become more ...
Global climate change is expected to increase drought duration and intensity in certain regions whil...
Models disagree on how to represent effects of drought stress on plant gas exchange. Some models ass...
Most temperature based models require a parameter to link temperature with plant functioning; photos...
Global climate change is expected to result in more fre-quent and intense droughts in theMediterrane...
The Mediterranean region is a hot spot of climate change vulnerable to increased droughts and heat w...
Plants are often subjected to periods of soil and atmospheric water deficit during their life cycle....
Global climate change is expected to result in more frequent and intense droughts in the Mediterrane...
Water availability is the most limiting factor to global plant productivity, yet photosynthetic resp...
Water stress is a defining characteristic of Mediterranean ecosystems, and is likely to become more ...
Drought frequency and intensity are expected to increase in the Mediterranean as a consequence of gl...
Water availability is the most limiting factor to global plant productivity, yet photosynthetic resp...
International audienceDrought frequency and intensity are expected to increase in the Mediterranean ...
Plants are often subjected to periods of soil and atmospheric water deficit during their life cycle....
Water stress is a defining characteristic of Mediterranean ecosystems, and is likely to become more ...
Water stress is a defining characteristic of Mediterranean ecosystems, and is likely to become more ...
Global climate change is expected to increase drought duration and intensity in certain regions whil...
Models disagree on how to represent effects of drought stress on plant gas exchange. Some models ass...