Citation: Sa. Cowling et Rf. Sage, INTERACTIVE EFFECTS OF LOW ATMOSPHERIC CO2 AND ELEVATED-TEMPERATURE ON GROWTH, PHOTOSYNTHESIS AND RESPIRATION IN PHASEOLUS-VULGARIS, Plant, cell and environment, 21(4), 1998, pp. 427-435
Citation: Rf. Sage et al., EFFECT OF ATMOSPHERIC CO2 ENRICHMENT ON RUBISCO CONTENT IN HERBACEOUSSPECIES FROM HIGH AND LOW-ALTITUDE, Acta oecologica, 18(3), 1997, pp. 183-192
Citation: Mr. Li et al., RUBP-REGENERATION VERSUS RUBISCO LIMITATIONS OF PHOTOSYNTHESIS AT LOWCO2 AND LOW O-2 IN BEAN AND OATS, Plant physiology, 114(3), 1997, pp. 1064-1064
Citation: Rf. Sage, ACCLIMATION TO VARIATION IN ATMOSPHERIC CO2 - WHAT DOES IT MEAN, AND TO WHAT EXTENT, IF ANY, DOES IT OCCUR, Plant physiology, 114(3), 1997, pp. 21003-21003
Citation: J. Santrucek et Rf. Sage, ACCLIMATION OF STOMATAL CONDUCTANCE TO A CO2-ENRICHED ATMOSPHERE AND ELEVATED-TEMPERATURE IN CHENOPODIUM-ALBUM, Australian journal of plant physiology, 23(4), 1996, pp. 467-478
Citation: Rf. Sage, WAS LOW ATMOSPHERIC CO2 DURING THE PLEISTOCENE A LIMITING FACTOR FOR THE ORIGIN OF AGRICULTURE, Global change biology, 1(2), 1995, pp. 93-106
Citation: Rf. Sage et al., TEMPERATURE EFFECTS ON THE PHOTOSYNTHETIC RESPONSE OF C-3 PLANTS TO LONG-TERM CO2 ENRICHMENT, Vegetatio, 121(1-2), 1995, pp. 67-77
Citation: Rf. Sage, ACCLIMATION OF PHOTOSYNTHESIS TO INCREASING ATMOSPHERIC CO2 - THE GAS-EXCHANGE PERSPECTIVE, Photosynthesis research, 39(3), 1994, pp. 351-368
Citation: Rf. Sage et al., LONG-TERM KINETICS OF THE LIGHT-DEPENDENT REGULATION OF RIBULOSE-1,5-BISPHOSPHATE CARBOXYLASE OXYGENASE ACTIVITY IN PLANTS WITH AND WITHOUT2-CARBOXYARABINITOL 1-PHOSPHATE, Planta, 191(2), 1993, pp. 222-230
Citation: Rf. Sage et Jr. Seemann, REGULATION OF RIBULOSE-1,5-BISPHOSPHATE CARBOXYLASE OXYGENASE ACTIVITY IN RESPONSE TO REDUCED LIGHT-INTENSITY IN C4 PLANTS, Plant physiology, 102(1), 1993, pp. 21-28
Citation: Rf. Sage et Cd. Reid, PHOTOSYNTHETIC ACCLIMATION TO SUB-AMBIENT CO2 (20 PA) IN THE C3 ANNUAL PHASEOLUS-VULGARIS L, Photosynthetica, 27(4), 1992, pp. 605-617