The ratio of leaf intercellular to ambient CO2 (χ) is modulated by stomatal conductance (gs ). These quantities link carbon (C) assimilation with transpiration, and along with photosynthetic capacities (Vcmax and Jmax ) are required to model terrestrial C uptake. We use optimisation criteria based on the growth environment to generate predicted values of photosynthetic and water-use efficiency traits and test these against a unique dataset. Leaf gas-exchange parameters and carbon isotope discrimination were analysed in relation to local climate across a continental network of study sites. Sun-exposed leaves of 50 species at seven sites were measured in contrasting seasons. Values of χ predicted from growth temperature and vapour pressure de...
Measured values of four key leaf traits (leaf area per unit mass, nitrogen concentration, photosynth...
Stable carbon isotopes are powerful tools for elucidating leaf- and ecosystem- level processes, and ...
Great uncertainty exists in the global exchange of carbon between the atmosphere and the terrestrial...
The ratio of leaf intercellular to ambient CO2 (χ) is modulated by stomatal conductance (gs). These ...
The ratio of leaf‐internal (ci) to ambient (ca) partial pressure of CO2, defined here as χ, is an in...
There is huge uncertainty about how global exchanges of carbon between the atmosphere and land will ...
International audienceStomata play a central role in surface-atmosphere exchange by controlling the ...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...
Leaf area (LA), mass per area (LMA), nitrogen per unit area (Narea) and the leaf-internal to ambient...
Rising atmospheric [CO2], c(a), is expected to affect stomatal regulation of leaf gas-exchange of wo...
A novel framework is presented for the analysis of ecophysiological field measurements and modelling...
Earth system models (ESMs) use photosynthetic capacity, indexed by the maximum Rubisco carboxylation...
Measured values of four key leaf traits (leaf area per unit mass, nitrogen concentration, photosynth...
Stable carbon isotopes are powerful tools for elucidating leaf- and ecosystem- level processes, and ...
Great uncertainty exists in the global exchange of carbon between the atmosphere and the terrestrial...
The ratio of leaf intercellular to ambient CO2 (χ) is modulated by stomatal conductance (gs). These ...
The ratio of leaf‐internal (ci) to ambient (ca) partial pressure of CO2, defined here as χ, is an in...
There is huge uncertainty about how global exchanges of carbon between the atmosphere and land will ...
International audienceStomata play a central role in surface-atmosphere exchange by controlling the ...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...
Rising atmospheric [CO2], ca, is expected to affect stomatal regulation of leaf gas-exchange of wood...
Leaf area (LA), mass per area (LMA), nitrogen per unit area (Narea) and the leaf-internal to ambient...
Rising atmospheric [CO2], c(a), is expected to affect stomatal regulation of leaf gas-exchange of wo...
A novel framework is presented for the analysis of ecophysiological field measurements and modelling...
Earth system models (ESMs) use photosynthetic capacity, indexed by the maximum Rubisco carboxylation...
Measured values of four key leaf traits (leaf area per unit mass, nitrogen concentration, photosynth...
Stable carbon isotopes are powerful tools for elucidating leaf- and ecosystem- level processes, and ...
Great uncertainty exists in the global exchange of carbon between the atmosphere and the terrestrial...