[HTML][HTML] Unsaturation of vapour pressure inside leaves of two conifer species

LA Cernusak, N Ubierna, MW Jenkins, SR Garrity… - Scientific reports, 2018 - nature.com
LA Cernusak, N Ubierna, MW Jenkins, SR Garrity, T Rahn, HH Powers, DT Hanson
Scientific reports, 2018nature.com
Stomatal conductance (gs) impacts both photosynthesis and transpiration, and is therefore
fundamental to the global carbon and water cycles, food production, and ecosystem
services. Mathematical models provide the primary means of analysing this important leaf
gas exchange parameter. A nearly universal assumption in such models is that the vapour
pressure inside leaves (ei) remains saturated under all conditions. The validity of this
assumption has not been well tested, because so far ei cannot be measured directly. Here …
Abstract
Stomatal conductance (g s) impacts both photosynthesis and transpiration, and is therefore fundamental to the global carbon and water cycles, food production, and ecosystem services. Mathematical models provide the primary means of analysing this important leaf gas exchange parameter. A nearly universal assumption in such models is that the vapour pressure inside leaves (e i) remains saturated under all conditions. The validity of this assumption has not been well tested, because so far e i cannot be measured directly. Here, we test this assumption using a novel technique, based on coupled measurements of leaf gas exchange and the stable isotope compositions of CO 2 and water vapour passing over the leaf. We applied this technique to mature individuals of two semiarid conifer species. In both species, e i routinely dropped below saturation when leaves were exposed to moderate to high air vapour pressure deficits. Typical values of relative humidity in the intercellular air spaces were as low 0.9 in Juniperus monosperma and 0.8 in Pinus edulis. These departures of e i from saturation caused significant biases in calculations of g s and the intercellular CO 2 concentration. Our results refute the longstanding assumption of saturated vapour pressure in plant leaves under all conditions.
nature.com
以上显示的是最相近的搜索结果。 查看全部搜索结果