A critical component of photosynthetic capacity is the conductance of CO2 from intercellular airspaces to the sites of CO2 fixation in the stroma of chloroplasts, termed mesophyll conductance (gm). Leaf anatomy has been identified as an important determinant of gm. There are few studies of the temperature response of gm and none has examined the implications of leaf anatomy. Hence, we compared a cultivar of Oryza sativa with two wild Oryza relatives endemic to the hot northern savannah of Australia, namely Oryza meridionalis and Oryza australiensis. All three species had similar leaf anatomical properties, except that the wild relatives had significantly thicker mesophyll cell walls than O.sativa. Thicker mesophyll cell walls in the wild ri...
Mesophyll conductance to CO2 (gm ) may respond to light either through regulated dynamic mechanisms ...
Single-leaf photosynthesis is a fundamental process in plant biomass production, and is a major rese...
Global production of rice (Oryza sativa) grain is limited by water availability and the low 'leaf-le...
Leaf photosynthesis is highly correlated with CO2-diffusion capacities, which are determined by both...
The temperature responses of mesophyll conductance (gm ) were investigated for nine species using ca...
The CO2 diffusion pathway from the atmosphere surrounding the leaf to the chloroplast stroma is comp...
Mesophyll conductance to CO2 (gm), a key photosynthetic trait, is strongly constrained by leaf anato...
CO2 transfer conductance from the intercellular airspaces of the leaf into the chloroplast, defined ...
Oryza meridionalis is a wild species of rice, endemic to tropical Australia. It shares a significant...
A significant resistance to CO2 diffusion is imposed by mesophyll tissue inside leaves. Mesophyll re...
Improvements in water-use efficiency are required to maintain and improve wheat yield for future cli...
Photosynthesis is the foundation of biomass accumulation and hence, crop yield. Two important aspect...
Mesophyll conductance (gm) is a crucial leaf trait contributing to the photosynthetic rate (AN). Pla...
Oryza sativa has many wild relatives that exhibit a wide range of canopy architectures. Two fast-gro...
The mechanistic basis of tolerance to heat stress was investigated in Oryza sativa and two wild rice...
Mesophyll conductance to CO2 (gm ) may respond to light either through regulated dynamic mechanisms ...
Single-leaf photosynthesis is a fundamental process in plant biomass production, and is a major rese...
Global production of rice (Oryza sativa) grain is limited by water availability and the low 'leaf-le...
Leaf photosynthesis is highly correlated with CO2-diffusion capacities, which are determined by both...
The temperature responses of mesophyll conductance (gm ) were investigated for nine species using ca...
The CO2 diffusion pathway from the atmosphere surrounding the leaf to the chloroplast stroma is comp...
Mesophyll conductance to CO2 (gm), a key photosynthetic trait, is strongly constrained by leaf anato...
CO2 transfer conductance from the intercellular airspaces of the leaf into the chloroplast, defined ...
Oryza meridionalis is a wild species of rice, endemic to tropical Australia. It shares a significant...
A significant resistance to CO2 diffusion is imposed by mesophyll tissue inside leaves. Mesophyll re...
Improvements in water-use efficiency are required to maintain and improve wheat yield for future cli...
Photosynthesis is the foundation of biomass accumulation and hence, crop yield. Two important aspect...
Mesophyll conductance (gm) is a crucial leaf trait contributing to the photosynthetic rate (AN). Pla...
Oryza sativa has many wild relatives that exhibit a wide range of canopy architectures. Two fast-gro...
The mechanistic basis of tolerance to heat stress was investigated in Oryza sativa and two wild rice...
Mesophyll conductance to CO2 (gm ) may respond to light either through regulated dynamic mechanisms ...
Single-leaf photosynthesis is a fundamental process in plant biomass production, and is a major rese...
Global production of rice (Oryza sativa) grain is limited by water availability and the low 'leaf-le...