Water availability is the most limiting factor to global plant productivity, yet photosynthetic responses to seasonal drought cycles are poorly understood, with conflicting reports on which limiting process is the most important during drought. We address the problem using a model-data synthesis approach to look at canopy level fluxes, integrating twenty years of half hour data gathered by the FLUXNET network across six Mediterranean sites. The measured canopy level, water and carbon fluxes were used, together with an inverse canopy ecophysiological model, to estimate the bulk canopy conductance, bulk mesophyll conductance, and the canopy scale carbon pools in both the intercellular spaces and at the site of carboxylation in the chloroplast...
Coupled photosynthesis–stomatal conductance (A–gs) models are commonly used in ecosystem models to r...
Models disagree on how to represent effects of drought stress on plant gas exchange. Some models ass...
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...
Various plant responses to water stress have been reported, but conflicting reports as to which limi...
Predicting the large-scale consequences of drought in contrasting environments requires that we unde...
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 ...
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 ...
© 2017 Elsevier B.V. Drought strongly influences terrestrial C cycling via its effects on plant H2O ...
Global climate change is expected to result in more fre-quent and intense droughts in theMediterrane...
Drought strongly influences terrestrial C cycling via its effects on plant H2O and CO2 exchange. How...
Plants in Mediterranean ecosystems face multiple environmental stresses during the growing season. S...
Models disagree on how to represent effects of drought stress on plant gas exchange. Some models ass...
Coupled photosynthesis–stomatal conductance (A–gs) models are commonly used in ecosystem models to r...
Models disagree on how to represent effects of drought stress on plant gas exchange. Some models ass...
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...
Various plant responses to water stress have been reported, but conflicting reports as to which limi...
Predicting the large-scale consequences of drought in contrasting environments requires that we unde...
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 ...
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 ...
© 2017 Elsevier B.V. Drought strongly influences terrestrial C cycling via its effects on plant H2O ...
Global climate change is expected to result in more fre-quent and intense droughts in theMediterrane...
Drought strongly influences terrestrial C cycling via its effects on plant H2O and CO2 exchange. How...
Plants in Mediterranean ecosystems face multiple environmental stresses during the growing season. S...
Models disagree on how to represent effects of drought stress on plant gas exchange. Some models ass...
Coupled photosynthesis–stomatal conductance (A–gs) models are commonly used in ecosystem models to r...
Models disagree on how to represent effects of drought stress on plant gas exchange. Some models ass...
Drought frequency and intensity are expected to increase in the Mediterranean as a consequence of gl...