2013Unpublished venueRequires access

LEAFC3-N: Modeling Effects of Drought Stress on Photosynthesis, Stomatal Conductance and Transpiration

Jens Bastet, Johannes Müller, Olaf Christen

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Abstract

LEAFC3-N combines photosynthesis, stomatal conductance, transpi­­ration, leaf energy balance, and leaf nitrogen content. The response to drought is simulated accounting for the effect of leaf water potential on stomatal conductance and of a finite mesophyll conductance on intracellular CO 2 concentration.

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What this paper is about

LEAFC3-N combines photosynthesis, stomatal conductance, transpi­­ration, leaf energy balance, and leaf nitrogen content. The response to drought is simulated accounting for the effect of leaf water potential on stomatal conductance and of a finite mesophyll conductance on intracellular CO 2 concentration.

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Available abstract

LEAFC3-N combines photosynthesis, stomatal conductance, transpi­­ration, leaf energy balance, and leaf nitrogen content. The response to drought is simulated accounting for the effect of leaf water potential on stomatal conductance and of a finite mesophyll conductance on intracellular CO 2 concentration.

Key concepts: Transpiration, Stomatal conductance, Photosynthesis, Conductance, Drought stress, Chemistry, Water stress, Botany

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LEAFC3-N: Modeling Effects of Drought Stress on Photosynthesis, Stomatal Conductance and Transpiration — Research Paper | ScholarLens