This paper examines the dependence of whole leaf hydraulic conductance to liquid water (KL) on irradiance when measured with a high pressure flowmeter (HPFM). During HPFM measurements, water is perfused into leaves faster than it evaporates hence water infiltrates leaf air spaces and must pass through stomates in the liquid state. Since stomates open and close under high versus low irradiance, respectively, the possibility exists that KL might change with irradiance if stomates close tightly enough to restrict water movement. However, the dependence of KL on irradiance could be due to a direct effect of irradiance on the hydraulic properties of other tissues in the leaf. In the present study, KL increased with irradiance for 6 of the 11 spe...
Stomata respond to increasing leaf-to-air vapour pressure difference (LAVPD) (D) by closing. The mec...
Leaves within a canopy may experience rapid and extreme fluctuations in ambient conditions. A shaded...
A better understanding of the mechanistic basis of stomatal control is necessary to understand why m...
The dependence of leaf hydraulic conductance on irradiance during HPFM measurements: any role for st...
Stomatal responsiveness to vapour pressure deficit (VPD) results in continuous regulation of daytime...
Most methods of measuring the diffusive conductance to water vapor of individual plant leaves potent...
The effects of air temperature (TJ, leaf-air vapour pressure differences {VPD) and water deficit on ...
How do leaf hydraulics limit stomatal conductance at high water vapour pressure deficits
The question as to what triggers stomatal closure during leaf desiccation remains controversial. Thi...
Stomatal responses to humidity, soil moisture and other factors that influence plant water status ar...
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...
Leaf hydraulic conductance (k leaf) is a central element in the regulation of leaf water balance but...
There are considerable variations in the percentage loss of hydraulic conductivity (PLC) at mid-day ...
In this study, tree hydraulic conductance (K-tree) was experimentally manipulated to study effects o...
Stomata respond to increasing leaf-to-air vapour pressure difference (LAVPD) (D) by closing. The mec...
Leaves within a canopy may experience rapid and extreme fluctuations in ambient conditions. A shaded...
A better understanding of the mechanistic basis of stomatal control is necessary to understand why m...
The dependence of leaf hydraulic conductance on irradiance during HPFM measurements: any role for st...
Stomatal responsiveness to vapour pressure deficit (VPD) results in continuous regulation of daytime...
Most methods of measuring the diffusive conductance to water vapor of individual plant leaves potent...
The effects of air temperature (TJ, leaf-air vapour pressure differences {VPD) and water deficit on ...
How do leaf hydraulics limit stomatal conductance at high water vapour pressure deficits
The question as to what triggers stomatal closure during leaf desiccation remains controversial. Thi...
Stomatal responses to humidity, soil moisture and other factors that influence plant water status ar...
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...
Leaf hydraulic conductance (k leaf) is a central element in the regulation of leaf water balance but...
There are considerable variations in the percentage loss of hydraulic conductivity (PLC) at mid-day ...
In this study, tree hydraulic conductance (K-tree) was experimentally manipulated to study effects o...
Stomata respond to increasing leaf-to-air vapour pressure difference (LAVPD) (D) by closing. The mec...
Leaves within a canopy may experience rapid and extreme fluctuations in ambient conditions. A shaded...
A better understanding of the mechanistic basis of stomatal control is necessary to understand why m...