Recent decades have been characterized by increasing temperatures worldwide, resulting in an exponential climb in vapor pressure deficit (VPD). VPD has been identified as an increasingly important driver of plant functioning in terrestrial biomes and has been established as a major contributor in recent drought-induced plant mortality independent of other drivers associated with climate change. Despite this, few studies have isolated the physiological response of plant functioning to high VPD, thus limiting our understanding and ability to predict future impacts on terrestrial ecosystems. An abundance of evidence suggests that stomatal conductance declines under high VPD and transpiration increases in most species up until a given VPD thres...
International audienceThe dominance of vapor pressure deficit (VPD) and soil water content (SWC) for...
Elevated vapor pressure deficit (VPD) due to drought and warming is well-known to limit canopy stoma...
The impact of atmospheric vapor pressure deficit (VPD) on plant photosynthesis has long been acknowl...
Recent decades have been characterized by increasing temperatures worldwide, resulting in an exponen...
Earth is currently undergoing a global increase in atmospheric vapor pressure deficit (VPD), a trend...
Vapor Pressure Deficit (VPD, atmospheric drought) and soil water potential (Ψsoil, soil drought) hav...
International audienceAtmospheric vapor pressure deficit (VPD) is a critical variable in determining...
Rising atmospheric CO2 will make Earth warmer, and many studies have inferred that this warming will...
Temperature (T) and vapour pressure deficit (VPD) are important drivers of plant hydraulic conductiv...
Leaf-to-air water vapor pressure deficit (VPD) is an important environmental factor that can affect ...
Future climate change is expected to increase temperature (T) and atmospheric vapour pressure defici...
International audienceThe dominance of vapor pressure deficit (VPD) and soil water content (SWC) for...
Elevated vapor pressure deficit (VPD) due to drought and warming is well-known to limit canopy stoma...
The impact of atmospheric vapor pressure deficit (VPD) on plant photosynthesis has long been acknowl...
Recent decades have been characterized by increasing temperatures worldwide, resulting in an exponen...
Earth is currently undergoing a global increase in atmospheric vapor pressure deficit (VPD), a trend...
Vapor Pressure Deficit (VPD, atmospheric drought) and soil water potential (Ψsoil, soil drought) hav...
International audienceAtmospheric vapor pressure deficit (VPD) is a critical variable in determining...
Rising atmospheric CO2 will make Earth warmer, and many studies have inferred that this warming will...
Temperature (T) and vapour pressure deficit (VPD) are important drivers of plant hydraulic conductiv...
Leaf-to-air water vapor pressure deficit (VPD) is an important environmental factor that can affect ...
Future climate change is expected to increase temperature (T) and atmospheric vapour pressure defici...
International audienceThe dominance of vapor pressure deficit (VPD) and soil water content (SWC) for...
Elevated vapor pressure deficit (VPD) due to drought and warming is well-known to limit canopy stoma...
The impact of atmospheric vapor pressure deficit (VPD) on plant photosynthesis has long been acknowl...