Leaf transpiration rate (E) frequently shows a peaked response to increasing vapour pressure deficit (D). The mechanisms for the decrease in E at high D, known as the 'apparent feed-forward response', are strongly debated but explanations to date have exclusively focused on hydraulic processes. However, stomata also respond to signals related to photosynthesis. We investigated whether the apparent feed-forward response of E to D in the field can be explained by the response of photosynthesis to temperature (T), which normally co-varies with D in field conditions. As photosynthesis decreases with increasing T past its optimum, it may drive a decrease in stomatal conductance (gs) that is additional to the response of gs to increasing D alone....
Stomatal conductance (gs) impacts both photosynthesis and transpiration, and is therefore fundamenta...
In order for plants to use water efficiently, stomata must ensure an appropriate balance between CO2...
Stomatal conductance (gs) impacts both photosynthesis and transpiration, and is therefore fundamenta...
Leaf transpiration rate (E) frequently shows a peaked response to increasing vapour pressure deficit...
Leaf transpiration rate (E) frequently shows a peaked response to increasing vapour pressure deficit...
Vapour pressure deficit (D) is projected to increase in the future as temperature rises. In response...
Rising atmospheric concentrations of CO2 (Ca) can reduce stomatal conductance and transpiration rate...
Vapour pressure deficit (D) is projected to increase in the future as temperature rises. In response...
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...
Background: Stomata respond to vapour pressure deficit (D) - when D increases, stomata begin to clos...
Rising atmospheric concentrations of CO2 (Ca) can reduce stomatal conductance and transpiration rate...
Vapour pressure deficit (D) is projected to increase in the future as temperature rises. In response...
Vapour pressure deficit (D) is projected to increase in the future as temperatures rise. In response...
The global carbon and water cycles are strongly governed by the simultaneous diffusion of CO2 and wa...
Stomatal conductance (gs) impacts both photosynthesis and transpiration, and is therefore fundamenta...
In order for plants to use water efficiently, stomata must ensure an appropriate balance between CO2...
Stomatal conductance (gs) impacts both photosynthesis and transpiration, and is therefore fundamenta...
Leaf transpiration rate (E) frequently shows a peaked response to increasing vapour pressure deficit...
Leaf transpiration rate (E) frequently shows a peaked response to increasing vapour pressure deficit...
Vapour pressure deficit (D) is projected to increase in the future as temperature rises. In response...
Rising atmospheric concentrations of CO2 (Ca) can reduce stomatal conductance and transpiration rate...
Vapour pressure deficit (D) is projected to increase in the future as temperature rises. In response...
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...
Background: Stomata respond to vapour pressure deficit (D) - when D increases, stomata begin to clos...
Rising atmospheric concentrations of CO2 (Ca) can reduce stomatal conductance and transpiration rate...
Vapour pressure deficit (D) is projected to increase in the future as temperature rises. In response...
Vapour pressure deficit (D) is projected to increase in the future as temperatures rise. In response...
The global carbon and water cycles are strongly governed by the simultaneous diffusion of CO2 and wa...
Stomatal conductance (gs) impacts both photosynthesis and transpiration, and is therefore fundamenta...
In order for plants to use water efficiently, stomata must ensure an appropriate balance between CO2...
Stomatal conductance (gs) impacts both photosynthesis and transpiration, and is therefore fundamenta...