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- W95026407 abstract "Publisher Summary This chapter describes the mechanism of photoinduced electron transport in isolated chloroplasts. It is almost universally accepted that the best model for the interpretation of available data on the electron transport path in photosynthesis involves two photochemical reactions acting in series. Flow of electrons is initiated by the absorption of a light quantum by one of the two photosystems. Thus, the absorption of a quantum byphotosystem II will result in the removal of an electron from water and the reduction of “Q.” NADP was originally shown to be quantitatively photochemically reduced in isolated chloroplasts. It should, however, be remembered that the specificity for NADP is a property of the flavoprotein, ferredoxin-NADP reductase, part of which remains tightly bound to chloroplasts. Evidence for the participation of two photoreactions in the photo-reduction of NADP by isolated chloroplasts was only recently obtained. Two types of evidence were reported. In the first, it was shown that the quantum requirement for the photoreduction of NADP with far-red light approached one quantum per electron transferred when ascorbate served as the electron donor, but was considerably higher when water served as the sole electron donor" @default.
- W95026407 created "2016-06-24" @default.
- W95026407 creator A5035994637 @default.
- W95026407 date "1967-01-01" @default.
- W95026407 modified "2023-09-27" @default.
- W95026407 title "Mechanism of Photoinduced Electron Transport in Isolated Chloroplasts" @default.
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