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Diffusional Contribution to Carbon Isotope Fractionation during Dark CO2 Fixation in CAM Plants
Author(s) -
Marion H. O’Leary,
C. B. Osmond
Publication year - 1980
Publication title -
plant physiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.554
H-Index - 312
eISSN - 1532-2548
pISSN - 0032-0889
DOI - 10.1104/pp.66.5.931
Subject(s) - isotopes of carbon , fractionation , carbon fixation , isotope , fixation (population genetics) , chemistry , carbon fibers , isotope fractionation , environmental chemistry , radiochemistry , analytical chemistry (journal) , materials science , photosynthesis , chromatography , biochemistry , total organic carbon , physics , gene , nuclear physics , composite number , composite material
A mathematical model is developed which can be used to predict in vivo carbon isotope fractionations associated with carbon fixation in plants in terms of diffusion, CO(2) hydration, and carboxylation components. This model also permits calculation of internal CO(2) concentration for comparison with results of gas-exchange experiments. The isotope fractionations associated with carbon fixation in Kalanchoë daigremontiana and Bryophyllum tubiflorum have been measured by isolation of malic acid following dark fixation and enzymic determination of the isotopic composition of carbon-4 of this material. Corrections are made for residual malic acid, fumarase activity, and respiration. Comparison of these data with calculations from the model indicates that the rate of carbon fixation is limited principally by diffusion, rather than by carboxylation. Processes subsequent to the initial carboxylation also contribute to the over-all isotopic composition of the plant.

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