Elevated atmospheric CO2 concentration is expected to increase leaf CO2 assimilation rates, thus promoting plant growth and increasing leaf area. It also decreases stomatal conductance, allowing water savings, which have been hypothesized to drive large-scale greening, in particular in arid and semiarid climates. However, the increase in leaf area could reduce the benefits of elevated CO2 concentration through soil water depletion. The net effect of elevated CO2 on leaf- and canopy-level gas exchange remains uncertain. To address this question, we compare the outcomes of a heuristic model based on the Partitioning of Equilibrium Transpiration and Assimilation (PETA) hypothesis and three model variants based on stomatal optimization theory. ...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...
International audienceStomata play a central role in surface-atmosphere exchange by controlling the ...
Background and Aims: Studies have indicated that plant stomatal conductance (gs) decreases in respon...
Elevated atmospheric CO2 concentration is expected to increase leaf CO2 assimilation rates, thus pro...
Rising levels of atmospheric CO2 concentration (Ca) and simultaneous climate change profoundly affec...
Vegetation has different adjustable properties for adaptation to its environment. Examples include s...
Rising atmospheric concentrations of CO2 (Ca) can reduce stomatal conductance and transpiration rate...
Rising levels of atmospheric CO2 concentration (Ca) and simultaneous climate change profoundly affec...
Elevated CO2 increases leaf-level water-use efficiency (ω) almost universally. How canopy-leveltrans...
Rising atmospheric concentrations of CO2 (Ca) can reduce stomatal conductance and transpiration rate...
Rising atmospheric concentrations of CO 2 (C a) can reduce stomatal conductance and transpiration ra...
Plant physiological adaptation to the global rise in atmospheric CO 2 concentration (CO2) is identif...
Optimal stomatal theory predicts that stomata operate to maximise photosynthesis (Anet) and minimise...
Earth is undergoing anthropogenic induced climate change yet it is unclear what the reaction of plan...
Plant physiological research has revealed that stomatal aperture of many plant species is reduced by...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...
International audienceStomata play a central role in surface-atmosphere exchange by controlling the ...
Background and Aims: Studies have indicated that plant stomatal conductance (gs) decreases in respon...
Elevated atmospheric CO2 concentration is expected to increase leaf CO2 assimilation rates, thus pro...
Rising levels of atmospheric CO2 concentration (Ca) and simultaneous climate change profoundly affec...
Vegetation has different adjustable properties for adaptation to its environment. Examples include s...
Rising atmospheric concentrations of CO2 (Ca) can reduce stomatal conductance and transpiration rate...
Rising levels of atmospheric CO2 concentration (Ca) and simultaneous climate change profoundly affec...
Elevated CO2 increases leaf-level water-use efficiency (ω) almost universally. How canopy-leveltrans...
Rising atmospheric concentrations of CO2 (Ca) can reduce stomatal conductance and transpiration rate...
Rising atmospheric concentrations of CO 2 (C a) can reduce stomatal conductance and transpiration ra...
Plant physiological adaptation to the global rise in atmospheric CO 2 concentration (CO2) is identif...
Optimal stomatal theory predicts that stomata operate to maximise photosynthesis (Anet) and minimise...
Earth is undergoing anthropogenic induced climate change yet it is unclear what the reaction of plan...
Plant physiological research has revealed that stomatal aperture of many plant species is reduced by...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...
International audienceStomata play a central role in surface-atmosphere exchange by controlling the ...
Background and Aims: Studies have indicated that plant stomatal conductance (gs) decreases in respon...