The global carbon and water cycles are governed by the coupling of CO2 and water vapour exchanges through the leaves of terrestrial plants, controlled by plant adaptations to balance carbon gains and hydraulic risks. We introduce a trait-based optimality theory that unifies the treatment of stomatal responses and biochemical acclimation of plants to environments changing on multiple timescales. Tested with experimental data from 18 species, our model successfully predicts the simultaneous decline in carbon assimilation rate, stomatal conductance and photosynthetic capacity during progressive soil drought. It also correctly predicts the dependencies of gas exchange on atmospheric vapour pressure deficit, temperature and CO2. Model prediction...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...
<p>Plants respond to changes in their local environment and, at the same time, influence the environ...
Understanding the dynamics of water transport through leaf intercellular airspaces (IAS) and its imp...
The global carbon and water cycles are strongly governed by the simultaneous diffusion of CO2 and wa...
Close coupling between water loss and carbon dioxide uptake requires coordination of plant hydraulic...
Close coupling between water loss and carbon dioxide uptake requires coordination of plant hydraulic...
Atmospheric aridity and drought both influence physiological function in plant leaves, but their rel...
Leaf water potential regulation is a key process in whole plant and ecosystem functioning. While low...
Communication oraleNational audienceIt's commonly accepted that the universal trade-off between wate...
Optimal stomatal theory predicts that stomata operate to maximise photosynthesis (Anet) and minimise...
- Knowledge of how water stress impacts the carbon and water cycles is a key uncertainty in terrestr...
Global climate change is expected to increase drought duration and intensity in certain regions whil...
Plant function requires effective mechanisms to regulate water transport at a variety of scales. Her...
Tight coordination in the photosynthetic, gas exchange and water supply capacities of leaves is a gl...
Global climate change is expected to increase drought duration and intensity in certain regions whil...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...
<p>Plants respond to changes in their local environment and, at the same time, influence the environ...
Understanding the dynamics of water transport through leaf intercellular airspaces (IAS) and its imp...
The global carbon and water cycles are strongly governed by the simultaneous diffusion of CO2 and wa...
Close coupling between water loss and carbon dioxide uptake requires coordination of plant hydraulic...
Close coupling between water loss and carbon dioxide uptake requires coordination of plant hydraulic...
Atmospheric aridity and drought both influence physiological function in plant leaves, but their rel...
Leaf water potential regulation is a key process in whole plant and ecosystem functioning. While low...
Communication oraleNational audienceIt's commonly accepted that the universal trade-off between wate...
Optimal stomatal theory predicts that stomata operate to maximise photosynthesis (Anet) and minimise...
- Knowledge of how water stress impacts the carbon and water cycles is a key uncertainty in terrestr...
Global climate change is expected to increase drought duration and intensity in certain regions whil...
Plant function requires effective mechanisms to regulate water transport at a variety of scales. Her...
Tight coordination in the photosynthetic, gas exchange and water supply capacities of leaves is a gl...
Global climate change is expected to increase drought duration and intensity in certain regions whil...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...
<p>Plants respond to changes in their local environment and, at the same time, influence the environ...
Understanding the dynamics of water transport through leaf intercellular airspaces (IAS) and its imp...