The pull of water from the soil to the leaves causes water in the transpiration stream to be under negative pressure decreasing the water potential below zero. The osmotic concentration also contributes to the decrease in leaf water potential but withmuch lesser extent. Thus, the surface tension force is approximately balanced by a force induced by negative water potential resulting in concavely curved water-air interfaces in leaves. The lowered water potential causes a reduction in the equilibrium water vapor pressure in internal (sub-stomatal/ intercellular) cavities in relation to that over water with the potential of zero, i.e., over the flat surface. The curved surface causes a reduction also in the equilibrium vapor pressure of dissol...
Journal ArticleLand plants need water to replace the evaporation that occurs while atmospheric CO2 i...
The cause of reduced leaf-level transpiration under elevated CO$_2$ remains largely elusive. Here, w...
1. Recent work on the hydraulic conductance of leaves suggests that maximum photosynthetic performa...
The pull of water from the soil to the leaves causes water in the transpiration stream to be under n...
Stomatal pores facilitate gaseous exchange between the inner air spaces of the leaf and the atmosphe...
Understanding the dynamics of water transport through leaf intercellular airspaces (IAS) and its imp...
Leaf water potential regulation is a key process in whole plant and ecosystem functioning. While low...
Stomatal conductance (gs) impacts both photosynthesis and transpiration, and is therefore fundamenta...
In this review, I first address the basics of gas exchange, water-use efficiency and carbon isotope ...
The balance between carbon assimilation (net photosynthetic production) and the throughput of water ...
The global carbon and water cycles are strongly governed by the simultaneous diffusion of CO2 and wa...
Nearly all plant families, represented across most major biomes, absorb water directly through their...
Leaf transpiration rate (E) frequently shows a peaked response to increasing vapour pressure deficit...
As a group, we hypothesized that plants affected by the drought will absorb less CO2 compared to tho...
Leaf water potentials below threshold values result in reduced stomatal conductance (gs). Stomatal c...
Journal ArticleLand plants need water to replace the evaporation that occurs while atmospheric CO2 i...
The cause of reduced leaf-level transpiration under elevated CO$_2$ remains largely elusive. Here, w...
1. Recent work on the hydraulic conductance of leaves suggests that maximum photosynthetic performa...
The pull of water from the soil to the leaves causes water in the transpiration stream to be under n...
Stomatal pores facilitate gaseous exchange between the inner air spaces of the leaf and the atmosphe...
Understanding the dynamics of water transport through leaf intercellular airspaces (IAS) and its imp...
Leaf water potential regulation is a key process in whole plant and ecosystem functioning. While low...
Stomatal conductance (gs) impacts both photosynthesis and transpiration, and is therefore fundamenta...
In this review, I first address the basics of gas exchange, water-use efficiency and carbon isotope ...
The balance between carbon assimilation (net photosynthetic production) and the throughput of water ...
The global carbon and water cycles are strongly governed by the simultaneous diffusion of CO2 and wa...
Nearly all plant families, represented across most major biomes, absorb water directly through their...
Leaf transpiration rate (E) frequently shows a peaked response to increasing vapour pressure deficit...
As a group, we hypothesized that plants affected by the drought will absorb less CO2 compared to tho...
Leaf water potentials below threshold values result in reduced stomatal conductance (gs). Stomatal c...
Journal ArticleLand plants need water to replace the evaporation that occurs while atmospheric CO2 i...
The cause of reduced leaf-level transpiration under elevated CO$_2$ remains largely elusive. Here, w...
1. Recent work on the hydraulic conductance of leaves suggests that maximum photosynthetic performa...