International audienceNocturnal transpiration is widely observed across species and biomes, and may significantly impact global water, carbon, and energy budgets. However, it remains elusive why plants lose water at night and how to model it at large scales. We hypothesized that plants optimize nighttime leaf diffusive conductance (gwn) to balance potential daytime photosynthetic benefits and nocturnal transpiration benefits. We quantified nighttime benefits from respiratory reductions due to evaporative leaf cooling. We described nighttime costs in terms of a reduced carbon gain during the day because of water use at night. We measured nighttime stomatal responses and tested our model with water birch (Betula occidentalis) saplings grown i...
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...
International audienceNocturnal transpiration is widely observed across species and biomes, and may ...
Technological advancements have led to abundant evidence of nocturnal sap flow occurring in a range ...
It is commonly assumed that transpiration does not occur at night because leaf stomata are closed in...
Technological advancements have led to abundant evidence of nocturnal sap flow occurring in a range ...
Total daily water use is a key factor influencing the growth of many terrestrial plants, and reflect...
Nocturnal water losses were for long considered negligible, but it is now known that incomplete stom...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...
Evapotranspiration is a major component of the water cycle, yet only daytime transpiration is curren...
International audienceThe circadian clock is a molecular timer of metabolism that affects the diurna...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. The circadian clock is a molecular timer o...
Nocturnal stomatal conductance contributes to water loss at night without carbon gain in C3 or C4 pl...
Nocturnal transpiration constitutes a significant yet poorly understood component of the global wate...
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...
International audienceNocturnal transpiration is widely observed across species and biomes, and may ...
Technological advancements have led to abundant evidence of nocturnal sap flow occurring in a range ...
It is commonly assumed that transpiration does not occur at night because leaf stomata are closed in...
Technological advancements have led to abundant evidence of nocturnal sap flow occurring in a range ...
Total daily water use is a key factor influencing the growth of many terrestrial plants, and reflect...
Nocturnal water losses were for long considered negligible, but it is now known that incomplete stom...
Intrinsic water use efficiency (Wi), the ratio of net CO2 assimilation (A) over stomatal conductance...
Evapotranspiration is a major component of the water cycle, yet only daytime transpiration is curren...
International audienceThe circadian clock is a molecular timer of metabolism that affects the diurna...
© 2020 by the authors. Licensee MDPI, Basel, Switzerland. The circadian clock is a molecular timer o...
Nocturnal stomatal conductance contributes to water loss at night without carbon gain in C3 or C4 pl...
Nocturnal transpiration constitutes a significant yet poorly understood component of the global wate...
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...