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Energetics of photosynthesis in Zea mays. I. Studies of the flash-induced electrochromic shift and fluorescence induction in bundle sheath cells
Authors:Richard C Leegood  David Crowther  David A Walker  Geoffrey Hind
Institution:1. A.R.C. Research Group on Photosynthesis, Department of Botany, The University, Sheffield S10 2TN U.K.;2. Biology Department, Brookhaven National Laboratory, Upton, NY 11973 U.S.A.
Abstract:Bundle sheath strands free of mesophyll contamination were isolated from 3–4-week-old leaves of maize (Zea mays L.). Patterns of electron flow in the preparations were studied in the presence of physiological substrates. Relative electron flow rates were estimated from the flash-induced electrochromic band shift changes (P-518) and cytochrome f turnover. Induction of chlorophyll fluorescence was also measured. Little Photosystem II activity was found to be present, the principal pathway of electron flow being Photosystem I-driven cyclic electron transfer. The latter was activated through reductive poising by NADPH, generated via malate decarboxylation or (less efficiently) from dihydroxyacetone phosphate. The actions of these electron donors and of oxygen, nitrite and methyl viologen as electron acceptors in redox poising the Photosystem I-driven cycle were investigated and are discussed in relation to the regulation of photosynthesis in the bundle sheath.
Keywords:Photosynthesis  Electron transport  Photosystem I  Chlorophyll fluorescence  Fluorescence induction  (Zea mays bundle sheath cell)  DCMU  3-(3  4-dichlorophenyl)-1  1-dimethylurea  PVP  polyvinylpyrrolidone  DBMIB  2  5-dibromo-3-methyl-6-isopropylbenzoquinone  DNP-INT  2  4-dinitrophenyl ether of iodonitrothymol  Chl  chlorophyll  PS  photosystem
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