Effects of mesophyll conductance on vegetation responses to elevated CO2 concentrations in a land surface model. [PDF]
Knauer J +7 more
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Elevated CO2-induced changes in mesophyll conductance and anatomical traits in wild type and carbohydrate-metabolism mutants of Arabidopsis. [PDF]
Mizokami Y +5 more
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Mesophyll conductance in cotton bracts: anatomically determined internal CO2 diffusion constraints on photosynthesis. [PDF]
Han J +6 more
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Diurnal variation in mesophyll conductance and its influence on modelled water-use efficiency in a mature boreal Pinus sylvestris stand. [PDF]
Stangl ZR +5 more
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Extremely thick cell walls and low mesophyll conductance: welcome to the world of ancient living! [PDF]
Veromann-Jürgenson LL +3 more
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The response of mesophyll conductance to short-term variation in CO2 in the C4 plants Setaria viridis and Zea mays. [PDF]
Ubierna N, Gandin A, Cousins AB.
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Biochemical metabolic enhancement acting as a dominant driver in intra-leaf CO2 diffusional response to soil nitrogen supplying in Soybean. [PDF]
Zuo Q +6 more
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Photosynthetic characristics and productivity of the coconut palm [PDF]
Jayasekara, C. +2 more
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Contrasting photosynthetic, stomatal, and mesophyll mechanisms drive common reductions in leaf water-use efficiency under blue light. [PDF]
Diao H +5 more
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Mesophyll conductance limitation of photosynthesis in poplar under elevated ozone
Science of The Total Environment, 2019Finite mesophyll conductance (gm) reduces the rate of CO2 diffusion from the leaf intercellular space to the chloroplast and constitutes a major limitation of photosynthesis in trees. While it is well established that gm is decreased by stressors such as drought and high temperature, few studies have investigated if the phytotoxic air pollutant ozone ...
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