Plants exchange greenhouse gases carbon dioxide and water with the atmosphere through the processes of photosynthesis and transpiration, making them essential in climate regulation. Carbon dioxide and water exchange are typically coupled through the control of stomatal conductance, and the parameterization in many models often predict conductance based on photosynthesis values. Some environmental conditions, like exposure to high ozone (O<sub>3</sub>) concentrations, alter photosynthesis independent of stomatal conductance, so models that couple these processes cannot accurately predict both. The goals of this study were to test direct and indirect photosynthesis and stomatal conductance modifications based on O<sub>3</...
Prediction of stomatal conductance is a key element to relate and scale up leaf-level gas exchange p...
Ozone (O3) is a toxic air pollutant that can damage plant leaves and substantially affect the plant'...
Rising levels of atmospheric CO2 concentration (Ca) and simultaneous climate change profoundly affec...
The plant physiological processes of photosynthesis and transpiration control the transfer of carbon...
Ozone (O3) is a phytotoxic greenhouse gas that has increased more than threefold at Earth’s surface ...
Plants have a strong influence on climate by controlling the transfer of carbon dioxide and water be...
International audienceStomata play a central role in surface-atmosphere exchange by controlling the ...
Currently, the most important source of uncertainty in stomatal ozone flux (FO3) modelling is the st...
The problem of predicting ozone-induced reduction of leaf photosynthetic rates in the context of ele...
Evapotranspiration is important for Earth’s water and energy cycles as it strongly affects air tempe...
Rising atmospheric concentrations of carbon dioxide (CO2) and ozone (O3) will stimulate and impair, ...
Earth is undergoing anthropogenic induced climate change yet it is unclear what the reaction of plan...
Stomata play a key role in plant adaptation to changing environmental conditions as they control bot...
Rising levels of atmospheric CO2 concentration (Ca) and simultaneous climate change profoundly affec...
Accurately predicting photosynthesis in response to water and nitrogen stress is the first step towa...
Prediction of stomatal conductance is a key element to relate and scale up leaf-level gas exchange p...
Ozone (O3) is a toxic air pollutant that can damage plant leaves and substantially affect the plant'...
Rising levels of atmospheric CO2 concentration (Ca) and simultaneous climate change profoundly affec...
The plant physiological processes of photosynthesis and transpiration control the transfer of carbon...
Ozone (O3) is a phytotoxic greenhouse gas that has increased more than threefold at Earth’s surface ...
Plants have a strong influence on climate by controlling the transfer of carbon dioxide and water be...
International audienceStomata play a central role in surface-atmosphere exchange by controlling the ...
Currently, the most important source of uncertainty in stomatal ozone flux (FO3) modelling is the st...
The problem of predicting ozone-induced reduction of leaf photosynthetic rates in the context of ele...
Evapotranspiration is important for Earth’s water and energy cycles as it strongly affects air tempe...
Rising atmospheric concentrations of carbon dioxide (CO2) and ozone (O3) will stimulate and impair, ...
Earth is undergoing anthropogenic induced climate change yet it is unclear what the reaction of plan...
Stomata play a key role in plant adaptation to changing environmental conditions as they control bot...
Rising levels of atmospheric CO2 concentration (Ca) and simultaneous climate change profoundly affec...
Accurately predicting photosynthesis in response to water and nitrogen stress is the first step towa...
Prediction of stomatal conductance is a key element to relate and scale up leaf-level gas exchange p...
Ozone (O3) is a toxic air pollutant that can damage plant leaves and substantially affect the plant'...
Rising levels of atmospheric CO2 concentration (Ca) and simultaneous climate change profoundly affec...