The establishment of an accurate stomatal conductance (gs) model in responding to CO2 enrichment under diverse environmental conditions remains an important issue as gs is the key to understand the plant–water–atmosphere interactions. A better representation of gs is important to reduce uncertainties in predicting the climate change impacts on various ecosystem functions. In this study, we evaluated three most commonly used gs formulations for the estimation of the stomatal response to environmental factors using in situ measurements under different environmental conditions. The three gs models were Leuning's modified Ball–Berry model and two specific cases of the optimization models (i.e., Rubisco limitation model and RuBP regeneration lim...
Accurate modelling of long-term changes in plant stomatal functioning is vital to global climate cha...
Optimal stomatal theory predicts that stomata operate to maximise photosynthesis (Anet) and minimise...
Stomata are the gateway between the lithosphere, the biosphere, and the atmosphere. Because of photo...
Models of vegetation function are widely used to predict the effects of climate change on carbon, wa...
Stomatal conductance (gs) is a key variable in Earth system models as it regulates the transfer of c...
Stomatal conductance (g(s)) affects the fluxes of carbon, energy and water between the vegetated lan...
Stomatal conductance (gs) is a key variable in Earth system models as it regulates the transfer of c...
Background and Aims Studies have indicated that plant stomatal conductance (g s) decreases in respon...
Background and Aims: Studies have indicated that plant stomatal conductance (gs) decreases in respon...
International audienceStomata play a central role in surface-atmosphere exchange by controlling the ...
Rising levels of atmospheric CO2 concentration (Ca) and simultaneous climate change profoundly affec...
Stomatal conductance (gs) affects the fluxes of carbon, energy and water between the vegetated land ...
Rising levels of atmospheric CO2 concentration (Cₐ) and simultaneous climate change profoundly affec...
This chapter presents some of the available modelling techniques to predict stomatal conductance at ...
Accurate modelling of long-term changes in plant stomatal functioning is vital to global climate cha...
Accurate modelling of long-term changes in plant stomatal functioning is vital to global climate cha...
Optimal stomatal theory predicts that stomata operate to maximise photosynthesis (Anet) and minimise...
Stomata are the gateway between the lithosphere, the biosphere, and the atmosphere. Because of photo...
Models of vegetation function are widely used to predict the effects of climate change on carbon, wa...
Stomatal conductance (gs) is a key variable in Earth system models as it regulates the transfer of c...
Stomatal conductance (g(s)) affects the fluxes of carbon, energy and water between the vegetated lan...
Stomatal conductance (gs) is a key variable in Earth system models as it regulates the transfer of c...
Background and Aims Studies have indicated that plant stomatal conductance (g s) decreases in respon...
Background and Aims: Studies have indicated that plant stomatal conductance (gs) decreases in respon...
International audienceStomata play a central role in surface-atmosphere exchange by controlling the ...
Rising levels of atmospheric CO2 concentration (Ca) and simultaneous climate change profoundly affec...
Stomatal conductance (gs) affects the fluxes of carbon, energy and water between the vegetated land ...
Rising levels of atmospheric CO2 concentration (Cₐ) and simultaneous climate change profoundly affec...
This chapter presents some of the available modelling techniques to predict stomatal conductance at ...
Accurate modelling of long-term changes in plant stomatal functioning is vital to global climate cha...
Accurate modelling of long-term changes in plant stomatal functioning is vital to global climate cha...
Optimal stomatal theory predicts that stomata operate to maximise photosynthesis (Anet) and minimise...
Stomata are the gateway between the lithosphere, the biosphere, and the atmosphere. Because of photo...