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Results 1 to 25 of 1095

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Carbon assimilation characteristics of the aquatic CAM plant, Isoetes howelliiKEELEY, J. E; BUSCH, G.Plant physiology (Bethesda). 1984, Vol 76, Num 2, pp 525-530, issn 0032-0889Article

A dynamic computer model of the metabolic and regulatory processes in Crassulacean acid metabolismNUNGESSER, D; KLUGE, M; TOLLE, H et al.Planta. 1984, Vol 162, Num 3, pp 204-214, issn 0032-0935Article

Properties of phosphoenolpyruvate carboxylase during ageing of leaf extracts from the Crassulacean acid metabolism plant Mesembryanthemum crystallinumWINTER, K.Physiologie végétale (Paris). 1983, Vol 21, Num 5, pp 907-909, issn 0031-9368Article

Les différents types métaboliques végétaux et d'assimilation de CO2, leur diversité botanique = CO2 assimilation in the different plant metabolic types, the botanical diversityCHAMPIGNY, M.-L; MOYSE, A.Actualités botaniques (Paris). 1983, Vol 130, Num 1, pp 71-83, issn 0181-1789Article

Interactions between external and internal factors affecting the operation of phosphoenolpyruvate carboxylaseQUEIROZ, O.Physiologie végétale (Paris). 1983, Vol 21, Num 5, pp 963-975, issn 0031-9368Article

Levels of adenylate kinase in CAM plants of different decarboxylation pathwaysMANETAS, Y; SAMARAS, Y; STAMATAKIS, K et al.Zeitschrift für Pflanzenphysiologie. 1983, Vol 111, Num 4, pp 365-368, issn 0044-328XArticle

The role of phosphoenolpyruvate carboxylase in C4-photosynthesis and crassulacean acid metabolismKLUGE, M.Physiologie végétale (Paris). 1983, Vol 21, Num 5, pp 817-825, issn 0031-9368Article

Occurrence of Crassulacean acid metabolism in Cissus trifoliata L. (Vitaceae)OLIVARES, E; URICH, R; MONTES, G et al.Oecologia. 1984, Vol 61, Num 3, pp 358-362, issn 0029-8549Article

Carbon, oxygen and hydrogen isotope abundances in Stylites reflect its unique physiologySTERNBERG, L. D. S. L; DENIRO, M. J; MCJUNKIN, D et al.Oecologia. 1985, Vol 67, Num 4, pp 598-600, issn 0029-8549Article

Carbon, hydrogen, and oxygen isotope ratios of cellulose from plants having intermediary photosynthetic modesÓREILLY STERNBERG, L; DENIRO, M. J; TING, I. P et al.Plant physiology (Bethesda). 1984, Vol 74, Num 1, pp 104-107, issn 0032-0889Article

Immunological evidence for a crassulacean acid metabolism specific phosphoenolpyruvate carboxylase in Sedum and Kalanchoe speciesMULLER, D; KLUGE, M.Physiologie végétale (Paris). 1983, Vol 21, Num 5, pp 919-926, issn 0031-9368Article

Crassulacean acid metabolism: a re-appraisal of physiological plasticity in form and functionGRIFFITHS, H.Advances in botanical research. 1988, Vol 15, pp 43-92, issn 0065-2296Article

CAM and carbon isotope composition: origin of the constitutive carbon in young leaves of Bryophyllum daigremontianum BergerDELEENS, E; QUEIROZ, O.Plant, cell and environment (Print). 1984, Vol 7, Num 1, pp 23-27, issn 0140-7791Article

Relationship between CAM and succulence in some species of Vitaceae and PiperaceaeVIRZO DE DANTO, A; ALFANI, A; RUSSO, G et al.Botanical gazette (Chicago, IL). 1983, Vol 144, Num 3, pp 342-346, issn 0006-8071Article

Crassulacean acid metabolism in roots of a leafless orchid, Campylocentrum tyrridion Garay & DunstervWINTER, K; MEDINA, E; GARCIA, V et al.Journal of plant physiology. 1985, Vol 118, Num 1, pp 73-78, issn 0176-1617Article

Properties of leaf NAD-malic enzyme from the inducible Crassulacean acid metabolism species Mesembryanthemum crystallinumARTUS, N. N; EDWARDS, G. E.Plant and cell physiology. 1985, Vol 26, Num 2, pp 341-350, issn 0032-0781Article

Enzymatic properties of phosphoenolpyruvate carboxylase isoforms in the CAM plant Kalanchoe daigremontianaAMAGASA, T.Plant and cell physiology. 1984, Vol 25, Num 4, pp 625-633, issn 0032-0781Article

Physical and kinetic properties and regulation of the NAD malic enzyme purified from leaves of Crassula argenteaWEDDING, R. T; KAY BLACK, M.Plant physiology (Bethesda). 1983, Vol 72, Num 4, pp 1021-1028, issn 0032-0889Article

Rôle de la photopériode dans l'adaptation à la sécheresse: cas d'une plante à métabolisme crassulacéen, l'Opuntia ficus-indica Mill = The role of the photoperiod in the adaptation to drought: the case of a plant with a crassulacean metabolism: l'Opuntia ficus-indica MillBRULFERT, J; GUERRIER, D; QUEIROZ, O et al.Actualités botaniques (Paris). 1984, Vol 131, Num 1, pp 69-77, issn 0181-1789Article

Crassulacean acid metabolismFunctional plant biology. 2002, Vol 29, Num 6, 131 p.Conference Proceedings

Nocturnal water storage in plants having Crassulacean acid metabolismLUTTGE, U.Planta. 1986, Vol 168, Num 2, pp 287-289, issn 0032-0935Article

Characterization of early morning Crassulacean acid metabolism in Opuntia erinacea var columbiana (Griffiths) L. BensonLITTLEJOHN, R. O; KU, M. S. B.Plant physiology (Bethesda). 1984, Vol 74, Num 4, pp 1050-1054, issn 0032-0889Article

Report of diurnal acid metabolism in two aquatic Australian species of IsoetesKEELEY, J. E.Australian journal of ecology. 1983, Vol 8, Num 2, pp 203-204, issn 0307-692XArticle

The many-faceted function of phosphoenolpyruvate carboxylase in C3 plantsLATZKO, E; KELLY, G. J.Physiologie végétale (Paris). 1983, Vol 21, Num 5, pp 805-815, issn 0031-9368Article

Quantum yield variation across the three pathways of photosynthesis : not yet out of the darkSKILLMAN, John B.Journal of experimental botany. 2008, Vol 59, Num 7, pp 1647-1661, issn 0022-0957, 15 p.Article

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