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Plant Physiology|December 1, 1981
Photorespiration in Air and High CO(2)-Grown Chlorella pyrenoidosaB J Shelp, D T CanvinPlant Physiology|February 1, 1982
Light and Dark Controls of Nitrate Reduction in Wheat (Triticum aestivum L.) ProtoplastsA J Reed, D T CanvinPlant Physiology|May 1, 1971
The pentose phosphate pathway in relation to fat synthesis in the developing castor oil seedP K Agrawal, D T CanvinPlanta|February 6, 2014
The effect of nitrate and nitrite on oxygen evolution and carbon-dioxide assimilation and the reduction of nitrate and nitrite by intact chloroplastsB R Grant, D T CanvinPlant Physiology|May 1, 1987
Evidence for Na-Independent HCO(3) Uptake by the Cyanobacterium Synechococcus leopoliensisG S Espie, D T CanvinPlanta|January 25, 2014
Nitrate, nitrite and ammonia assimilation by leaves: Effect of light, carbon dioxide and oxygenD T Canvin, C A AtkinsPlanta|January 18, 2014
Nitrate, nitrite and ammonia assimilation by leaves: Effects of inhibitorsC A Atkins, D T CanvinPlanta|December 10, 2013
Effect of carbon dioxide and temperature on photosynthetic CO2 uptake and photorespiratory CO 2 evolution in sunflower leavesH Fock, K Klug, D T CanvinPlant Physiology|March 1, 1980
Reduction of Nitrate via a Dicarboxylate Shuttle in a Reconstituted System of Supernatant and Mitochondria from Spinach LeavesK C Woo, M Jokinen, D T CanvinPlant Physiology|May 1, 1995
Photosynthetic Nitrite Reduction as Influenced by the Internal Inorganic Carbon Pool in Air-Grown Cells of Synechococcus UTEX 625N. A. Mir, C. Salon, D. T. CanvinPageof 6