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Results 1 to 25 of 326884

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C4 plants use fluctuating light less efficiently than do C3 plants: a study of growth, photosynthesis and carbon isotope discriminationKUBASEK, Jiří; URBAN, Otmar; SANTRUCEK, Jiří et al.Physiologia Plantarum (København. 1948). 2013, Vol 149, Num 4, pp 528-539, issn 0031-9317, 12 p.Article

Understanding down-regulation of photosynthesis under water stress: future prospects and searching for physiological tools for irrigation managementFLEXAS, Jaume; BOTA, Josefina; RIERA, Diego et al.Annals of applied biology. 2004, Vol 144, Num 3, pp 273-283, issn 0003-4746, 11 p.Conference Paper

Enhancement of nucleate boiling heat transfer using carbon nanotubesPARK, Ki-Jung; JUNG, Dongsoo.International journal of heat and mass transfer. 2007, Vol 50, Num 21-22, pp 4499-4502, issn 0017-9310, 4 p.Article

Increasing Photosynthetic Carbon Assimilation in C3 Plants to Improve Crop Yield: Current and Future Strategies : ENHANCING PHOTOSYNTHESISRAINES, Christine A.Plant physiology (Bethesda). 2011, Vol 155, Num 1, pp 36-42, issn 0032-0889, 7 p.Article

Steady-state models of photosynthesisVON CAEMMERER, Susanne.Plant, cell and environment (Print). 2013, Vol 36, Num 9, pp 1617-1630, issn 0140-7791, 14 p.Article

Regulation of cyclic electron flow in C3 plants: differential effects of limiting photosynthesis at ribulose-1,5-bisphosphate carboxylase/oxygenase and glyceraidehyde-3-phosphate dehydrogenaseLIVINGSTON, Aaron K; KANAZAWA, Atsuko; CRUZ, Jeffrey A et al.Plant, cell and environment (Print). 2010, Vol 33, Num 11, pp 1779-1788, issn 0140-7791, 10 p.Article

Photosynthetic acclimation and resource use by the C3 and C4 subspecies of Alloteropsis semialata in low CO2 atmospheresRIPLEY, Brad S; CUNNIFF, Jennifer; OSBORNE, Colin P et al.Global change biology (Print). 2013, Vol 19, Num 3, pp 900-910, issn 1354-1013, 11 p.Article

Manipulating PEPC levels in plantsJEANNEAU, M; VIDAL, J; GOUSSET-DUPONT, A et al.Journal of experimental botany. 2002, Vol 53, Num 376, pp 1837-1845, issn 0022-0957Article

Molecular evolution of C4 phosphoenolpyruvate carboxylase in the genus Flaveria : a gradual increase from C3 to C4 characteristicsENGELMANN, Sascha; BLÄSING, Oliver E; GOWIK, Udo et al.Planta. 2003, Vol 217, Num 5, pp 717-725, issn 0032-0935, 9 p.Article

Study on the photosynthetic pathway of Cymbidium sinenseYE QING-SHENG; PAN RUI-CHI; HEW CHOY-SIN et al.Zhíwùxué Bào. 1993, Vol 35, Num 6, pp 441-446, issn 0577-7496Article

Genomic structure and promoter analysis of phosphoenolpyruvate carboxylase in a C3 plant, Nicotiana sylvestrisKOIZUMI, Nozomu; TOYOTA, Kentaro; KITAJIMA, Sakihito et al.Bioscience, biotechnology, and biochemistry. 2002, Vol 66, Num 8, pp 1691-1696, issn 0916-8451Article

CO2 fixationBRADBEER, J. W; RAO, S. K; BRINGLOE, D. H et al.Bulletin de la Société Royale des Sciences de Liège. 1996, Vol 65, Num 4-5, pp 252-261, issn 0037-9565Conference Paper

Patterns of phosphoenolpyruvate carboxylase activity and cytosolic pH during light activation and dark deactivation in C3 and C4 plantsRAJAGOPALAN, A. V; TIRUMALA DEVI, M; RAGHAVENDRA, A. S et al.Photosynthesis research. 1993, Vol 38, Num 1, pp 51-60, issn 0166-8595Article

Photosynthetic acclimation to sub-ambient CO2 (20 Pa) in the C3 annual Phaseolus vulgaris LSAGE, R. F; REID, C. D.Photosynthetica (Praha). 1992, Vol 27, Num 4, pp 605-617, issn 0300-3604Conference Paper

Organic Carbon Origin and Stock in Cultivated and Grassland Soil of the Argentine PampaCOSTANTINI, Alejandro; DE-POLLI, Helvécio; PEREYRA ROSSIELLO, Roberto et al.Communications in soil science and plant analysis. 2007, Vol 38, Num 19-20, pp 2767-2778, issn 0010-3624, 12 p.Article

On determination of the carboxylation efficiency in plants possessing CO2 concentrating mechanismIVANISHCHEV, V. V.Fiziologiâ rastenij. 1992, Vol 39, Num 3, pp 437-444, issn 0015-3303Article

Quantum yields for uptake of carbon dioxide in C3 vascular plants of contrasting habitats and taxonomic groupingsLONG, S. P; POSTL, W. F; BOLHAR-NORDENKAMPF, H. R et al.Planta. 1993, Vol 189, Num 2, pp 226-234, issn 0032-0935Article

Carbon-isotope discrimination by leaves of Flaveria species exhibiting different amounts of C3- and C4-cycle co-functionMONSON, R. K; TEERI, J. A; KU, M. S. B et al.Planta. 1988, Vol 174, Num 2, pp 145-151, issn 0032-0935Article

Les critères d'évaluation de la présence et de l'efficacité des mécanismes possibles d'accumulation du CO2 chez les plantes en C3FRIDLYAND, L. E; KALER, V. L.Fiziologiâ rastenij. 1988, Vol 35, Num 3, pp 429-437, issn 0015-3303Article

Relationship between photosystem II and activity and CO2 fixation in leavesKRALL, J. P; EDWARDS, G. E.Physiologia Plantarum (København. 1948). 1992, Vol 86, Num 1, pp 180-187, issn 0031-9317Article

Canopy photosynthesis of crops and native plant communities exposed to long-term elevated CO2DRAKE, B. G; LEADLEY, P. W.Plant, cell and environment (Print). 1991, Vol 14, Num 8, pp 853-860, issn 0140-7791Article

Relation entre la photosynthèse et la respiration dans les échanges gazeux de CO2 à la lumière des feuilles des plantes de type C3 en fonction de la températureBYKOV, O. D.Fiziologiâ rastenij. 1983, Vol 30, Num 4, pp 629-636, issn 0015-3303Article

Importance of microbial soil organic matter processing in dissolved organic carbon productionMALIK, Ashish; GLEIXNER, Gerd.FEMS microbiology ecology. 2013, Vol 86, Num 1, pp 139-148, issn 0168-6496, 10 p.Article

Inorganic carbon source for photosynthesis in the seagrass Thalassia hemprichii Ehrenb, AschersABEL, K. M.Plant physiology (Bethesda). 1984, Vol 76, Num 3, pp 776-781, issn 0032-0889Article

ON THE RELATIONSHIP BETWEEN CARBON ISOTOPE DISCRIMINATION AND THE INTERCELLULAR CARBON DIOXIDE CONCENTRATION IN LEAVESFARQUHAR GD.1982; AUST. J. PLANT PHYSIOL.; ISSN 0310-7841; AUS; DA. 1982; VOL. 9; NO 2; PP. 121-137; BIBL. 3 P.Article

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