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Journal of Experimental Botany
|
December 6, 2018
A single serine to alanine substitution decreases bicarbonate affinity of phosphoenolpyruvate carboxylase in C4Flaveria trinervia
Robert J DiMario, Asaph B Cousins
The New Phytologist
|
August 12, 2022
Mesophyll conductance response to short-term changes in pCO<sub>2</sub> is related to leaf anatomy and biochemistry in diverse C<sub>4</sub> grasses
Varsha S Pathare, Robert J DiMario, Nuria Koteyeva, et al.
Photosynthesis Research
|
June 18, 2013
Photorespiration and carbon concentrating mechanisms: two adaptations to high O2, low CO2 conditions
James V Moroney, Nadine Jungnick, Robert J Dimario, et al.
Plant Science : an International Journal of Experimental Plant Biology
|
January 25, 2018
The many types of carbonic anhydrases in photosynthetic organisms
Robert J DiMario, Marylou C Machingura, Grover L Waldrop, et al.
Molecular Plant
|
September 21, 2016
Plant Carbonic Anhydrases: Structures, Locations, Evolution, and Physiological Roles
Robert J DiMario, Harmony Clayton, Ananya Mukherjee, et al.
The Plant Journal : for Cell and Molecular Biology
|
December 21, 2020
Kinetic variation in grass phosphoenolpyruvate carboxylases provides opportunity to enhance C<sub>4</sub> photosynthetic efficiency
Robert J DiMario, Ashley N Kophs, Varsha S Pathare, et al.
Plant, Cell & Environment
|
March 2, 2022
Lack of leaf carbonic anhydrase activity eliminates the C<sub>4</sub> carbon-concentrating mechanism requiring direct diffusion of CO<sub>2</sub> into bundle sheath cells
Robert J DiMario, Rita Giuliani, Nerea Ubierna, et al.
Annals of Botany
|
September 7, 2023
Multiple highly expressed phosphoenolpyruvate carboxylase genes have divergent enzyme kinetic properties in two C4 grasses
Robert J DiMario, Ashley N Kophs, Anthony J A Apalla, et al.
Plant Physiology
|
March 20, 2016
The Cytoplasmic Carbonic Anhydrases βCA2 and βCA4 Are Required for Optimal Plant Growth at Low CO2
Robert J DiMario, Jennifer C Quebedeaux, David J Longstreth, et al.
Frontiers in Molecular Biosciences
|
March 8, 2024
Carbonic anhydrases in the cell wall and plasma membrane of <i>Arabidopsis thaliana</i> are required for optimal plant growth on low CO<sub>2</sub>
Hiruni N Weerasooriya, David J Longstreth, Robert J DiMario, et al.
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Search research articles
Search
Showing results (1-10 of 13) with videos related to
Sort By:
Page
of 2
Journal of Experimental Botany
|
December 6, 2018
A single serine to alanine substitution decreases bicarbonate affinity of phosphoenolpyruvate carboxylase in C4Flaveria trinervia
Robert J DiMario, Asaph B Cousins
The New Phytologist
|
August 12, 2022
Mesophyll conductance response to short-term changes in pCO<sub>2</sub> is related to leaf anatomy and biochemistry in diverse C<sub>4</sub> grasses
Varsha S Pathare, Robert J DiMario, Nuria Koteyeva, et al.
Photosynthesis Research
|
June 18, 2013
Photorespiration and carbon concentrating mechanisms: two adaptations to high O2, low CO2 conditions
James V Moroney, Nadine Jungnick, Robert J Dimario, et al.
Plant Science : an International Journal of Experimental Plant Biology
|
January 25, 2018
The many types of carbonic anhydrases in photosynthetic organisms
Robert J DiMario, Marylou C Machingura, Grover L Waldrop, et al.
Molecular Plant
|
September 21, 2016
Plant Carbonic Anhydrases: Structures, Locations, Evolution, and Physiological Roles
Robert J DiMario, Harmony Clayton, Ananya Mukherjee, et al.
The Plant Journal : for Cell and Molecular Biology
|
December 21, 2020
Kinetic variation in grass phosphoenolpyruvate carboxylases provides opportunity to enhance C<sub>4</sub> photosynthetic efficiency
Robert J DiMario, Ashley N Kophs, Varsha S Pathare, et al.
Plant, Cell & Environment
|
March 2, 2022
Lack of leaf carbonic anhydrase activity eliminates the C<sub>4</sub> carbon-concentrating mechanism requiring direct diffusion of CO<sub>2</sub> into bundle sheath cells
Robert J DiMario, Rita Giuliani, Nerea Ubierna, et al.
Annals of Botany
|
September 7, 2023
Multiple highly expressed phosphoenolpyruvate carboxylase genes have divergent enzyme kinetic properties in two C4 grasses
Robert J DiMario, Ashley N Kophs, Anthony J A Apalla, et al.
Plant Physiology
|
March 20, 2016
The Cytoplasmic Carbonic Anhydrases βCA2 and βCA4 Are Required for Optimal Plant Growth at Low CO2
Robert J DiMario, Jennifer C Quebedeaux, David J Longstreth, et al.
Frontiers in Molecular Biosciences
|
March 8, 2024
Carbonic anhydrases in the cell wall and plasma membrane of <i>Arabidopsis thaliana</i> are required for optimal plant growth on low CO<sub>2</sub>
Hiruni N Weerasooriya, David J Longstreth, Robert J DiMario, et al.
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of 2