In the present chapter, we review the current state-of-the-art of knowledge on mesophyll (internal) CO2 diffusion conductance of photosynthetic tissues (for simplification, g(m)). We show that, despite concerns regarding the methodological approaches currently used for its estimation, a large and consistent body of evidence has accumulated showing that g(m) is finite and significantly limiting for-photosynthesis, as well as being highly variable among photosynthetic organisms and in response to environmental changes. Part of this variation results from different anatomies of the photosynthetic tissues, with a particularly strong influence of chloroplast distribution and cell wall thickness. Besides these, it appears that a biochemical modul...
CO(2) faces a series of resistances while diffusing between the substomatal cavities and the sites o...
Mesophyll conductance (gm) has been shown to affect photosynthetic capacity and thus the estimates o...
Mesophyll diffusion conductance to CO2 (gm) is an important leaf characteristic determining the draw...
In the present chapter, we review the current state-of-the-art of knowledge on mesophyll (internal) ...
Mesophyll diffusion conductance to CO2 is a key photosynthetic trait that has been studied intensive...
The CO2 diffusion pathway from the atmosphere surrounding the leaf to the chloroplast stroma is comp...
Plants provide an excellent system to study CO(2) diffusion because, under light saturated condition...
One way to increase potential crop yield could be increasing mesophyll conductance gm. This variable...
One way to increase potential crop yield could be increasing mesophyll conductance gm. This variable...
A significant resistance to CO2 diffusion is imposed by mesophyll tissue inside leaves. Mesophyll re...
The classical definition of mesophyll conductance (gm) represents an apparent parameter (gm,app) as ...
Limited mesophyll diffusion conductance to CO2 (gm) can significantly constrain plant photosynthesis...
The arrangement of mitochondria and chloroplasts, together with the relative resistances of cell wal...
CO2 transfer conductance from the intercellular airspaces of the leaf into the chloroplast, defined ...
Existing methods to estimate the mesophyll conductance to CO2 diffusion (gm) are often based on comb...
CO(2) faces a series of resistances while diffusing between the substomatal cavities and the sites o...
Mesophyll conductance (gm) has been shown to affect photosynthetic capacity and thus the estimates o...
Mesophyll diffusion conductance to CO2 (gm) is an important leaf characteristic determining the draw...
In the present chapter, we review the current state-of-the-art of knowledge on mesophyll (internal) ...
Mesophyll diffusion conductance to CO2 is a key photosynthetic trait that has been studied intensive...
The CO2 diffusion pathway from the atmosphere surrounding the leaf to the chloroplast stroma is comp...
Plants provide an excellent system to study CO(2) diffusion because, under light saturated condition...
One way to increase potential crop yield could be increasing mesophyll conductance gm. This variable...
One way to increase potential crop yield could be increasing mesophyll conductance gm. This variable...
A significant resistance to CO2 diffusion is imposed by mesophyll tissue inside leaves. Mesophyll re...
The classical definition of mesophyll conductance (gm) represents an apparent parameter (gm,app) as ...
Limited mesophyll diffusion conductance to CO2 (gm) can significantly constrain plant photosynthesis...
The arrangement of mitochondria and chloroplasts, together with the relative resistances of cell wal...
CO2 transfer conductance from the intercellular airspaces of the leaf into the chloroplast, defined ...
Existing methods to estimate the mesophyll conductance to CO2 diffusion (gm) are often based on comb...
CO(2) faces a series of resistances while diffusing between the substomatal cavities and the sites o...
Mesophyll conductance (gm) has been shown to affect photosynthetic capacity and thus the estimates o...
Mesophyll diffusion conductance to CO2 (gm) is an important leaf characteristic determining the draw...