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Plant Physiology|October 1, 1986
Short-Term and Long-Term Responses of Crassulacean Acid Metabolism Plants to Elevated CO(2)P S Nobel, T L HartsockPlant Physiology|August 1, 1987
High-temperature sensitivity and its acclimation for photosynthetic electron transport reactions of desert succulentsM B Chetti, P S NobelOecologia|March 18, 2017
Parent-ramet connections in Agave deserti: influences of carbohydrates on growthD T Tissue, P S NobelPlant Physiology|April 1, 1978
Resistance Analysis of Nocturnal Carbon Dioxide Uptake by a Crassulacean Acid Metabolism Succulent, Agave desertiP S Nobel, T L HartsockPlant Physiology|April 1, 1979
Salinity effects on leaf anatomy: consequences for photosynthesisD J Longstreth, P S NobelPlant Physiology|January 1, 1983
Relationships between Photosynthetically Active Radiation, Nocturnal Acid Accumulation, and CO(2) Uptake for a Crassulacean Acid Metabolism Plant, Opuntia ficus-indicaP S Nobel, T L HartsockPlant Physiology|April 1, 1972
Light-induced Changes in the Ultrastructure of Pea Chloroplasts in Vivo: Relationship to Development and PhotosynthesisM M Miller, P S NobelPlant Physiology|November 1, 1993
Exogenous Abscisic Acid Mimics Cold Acclimation for Cacti Differing in Freezing ToleranceM. E. Loik, P. S. NobelPhotosynthesis Research|December 7, 2013
Activities of carboxylating enzymes in the CAM species Opuntia ficus-indica grown under current and elevated CO2 concentrationsA A Israel, P S NobelPlant Physiology|July 1, 1983
Water Relations, Diurnal Acidity Changes, and Productivity of a Cultivated Cactus, Opuntia ficus-indicaE Acevedo, I Badilla, P S NobelPageof 4