Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance to water vapour (gs), is a complex trait used to assess plant performance. Improving Wi could lead in theory to higher productivity or reduced water usage by the plant, but the physiological traits for improvement and their combined effects on Wi have not been clearly identified. Under fluctuating light intensity, the temporal response of gs is an order of magnitude slower than A, which results in rapid variations in Wi. Compared to traditional approaches, our new model scales stoma behaviour at the leaf level to predict gs and A during a diurnal period, reproducing natural fluctuations of light intensity, in order to dissect Wi into traits ...
The influence of the dynamics of leaf hydraulic conductance (K-leaf) diurnally and during dehydratio...
The influence of the dynamics of leaf hydraulic conductance (K-leaf) diurnally and during dehydratio...
The influence of the dynamics of leaf hydraulic conductance (K-leaf) diurnally and during dehydratio...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...
AbstractIntrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal con...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...
AbstractIntrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal con...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...
Water use efficiency (WUE) is considered as a determinant of yield under stress and a component of c...
Water use efficiency (WUE) is considered as a determinant of yield under stress and a component of c...
In order for plants to use water efficiently, stomata must ensure an appropriate balance between CO2...
The influence of the dynamics of leaf hydraulic conductance (K leaf) diurnally and during dehydratio...
Stomatal movements control CO₂ uptake for photosynthesis and water loss through transpiration, and t...
The influence of the dynamics of leaf hydraulic conductance (K leaf) diurnally and during dehydratio...
The influence of the dynamics of leaf hydraulic conductance (K-leaf) diurnally and during dehydratio...
The influence of the dynamics of leaf hydraulic conductance (K-leaf) diurnally and during dehydratio...
The influence of the dynamics of leaf hydraulic conductance (K-leaf) diurnally and during dehydratio...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...
AbstractIntrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal con...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...
AbstractIntrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal con...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...
Water use efficiency (WUE) is considered as a determinant of yield under stress and a component of c...
Water use efficiency (WUE) is considered as a determinant of yield under stress and a component of c...
In order for plants to use water efficiently, stomata must ensure an appropriate balance between CO2...
The influence of the dynamics of leaf hydraulic conductance (K leaf) diurnally and during dehydratio...
Stomatal movements control CO₂ uptake for photosynthesis and water loss through transpiration, and t...
The influence of the dynamics of leaf hydraulic conductance (K leaf) diurnally and during dehydratio...
The influence of the dynamics of leaf hydraulic conductance (K-leaf) diurnally and during dehydratio...
The influence of the dynamics of leaf hydraulic conductance (K-leaf) diurnally and during dehydratio...
The influence of the dynamics of leaf hydraulic conductance (K-leaf) diurnally and during dehydratio...