The mechanism of light stimulation of active K and Cl influx and active Na efflux, in Hydrodictyon africanum has been investigated using different wavelengths of red light and different gas mixtures, and the inhibitors DCMU and CCCP. The active Cl influx requires photosystem 2, since its relative quantal efficiency falls with increasing wavelength of red light, and it is as sensitive to the inhibitor DCMU as is photosynthesis; it is relatively insensitive to the uncoupler CCCP. The active K influx and active Na efflux are inhibited by CCCP, but the relative quantal efficiency of these processes increases with increasing wavelength of red light, and they are relatively insensitive to DCMU. These cation fluxes can be supported by cyclic photophosphorylation, whereas Cl influx needs photosystem 2 but probably not ATP.
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1 July 1967
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July 01 1967
Light Stimulation of Active Transport in Hydrodictyon africanum
J. A. Raven
J. A. Raven
From the Botany School, University of Cambridge, England
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J. A. Raven
From the Botany School, University of Cambridge, England
Received:
November 14 1966
Online ISSN: 1540-7748
Print ISSN: 0022-1295
Copyright © 1967 by The Rockefeller University Press
1967
J Gen Physiol (1967) 50 (6): 1627–1640.
Article history
Received:
November 14 1966
Citation
J. A. Raven; Light Stimulation of Active Transport in Hydrodictyon africanum . J Gen Physiol 1 July 1967; 50 (6): 1627–1640. doi: https://doi.org/10.1085/jgp.50.6.1627
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