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The effect of addition of plastocyanin on photophosphorylationin isolated chloroplasts was studied in comparison with itseffect on photoreduction. Catalytic amounts of added plastocyaninstimulated the HILL reaction with NADP as oxidant, but the photophosphorylationcoupled to this reaction was not influenced by the additionof plastocyanin. The addition of NH4+ or the complete phosphorylatingsystem did not affect the plastocyanin-induced increase in rateof the photoreduction. The rate of photoreduction of NADP, FMN,or indigo carmine in the presence of DPIP and ascorbate wasmuch accelerated by added plastocyanin, but these reactionswere not coupled to ATP formation. As reported earlier, isolated chloroplasts can utilize plastocyaninas oxidant in the HILL reaction. This reaction was found tobe accompanied by ATP formation, but the efficiency in thiscase was somewhat lower than in photophosphorylation coupledto the HILL reaction with the usual oxidants. The possible mechanism of these reactions is described brieflyand a scheme for reactions of plastocyanin in the electron transferin chloroplasts is presented. (Received July 20, 1965; )  相似文献   
2.
The concentration of ions in plant cells and tissues is an essential factor in determining physiological function. In the present study, we established that concentration gradients of mobile ions exist in both xylem exudates and tissues within a barley (Hordeum vulgare) primary leaf. For K+ and NO3?, ion concentrations generally decreased from the leaf base to the tip in both xylem exudates and tissues. Ion gradients were also found for Pi and Cl? in the xylem. The hydathode strongly absorbed Pi and re‐translocated it to the rest of the plant, whereas Cl? was extruded. The ion concentration gradients developed early during leaf growth, increased as the tissue aged and remained under both high and low transpiration conditions. Measurement of the expression profiles of Pi, K+ and NO3? transporters along the longitudinal axis of the leaf revealed that some transporters are more expressed at the hydathode, but for most transporters, there was no significant variation along the leaf. The mechanisms by which longitudinal ion gradients develop in leaves and their physiological functions are discussed.  相似文献   
3.
Based on the observations on the time lag and the low efficiencyof photophosphorylation at low light intensities, a ‘two-stepexcitation kinetics’ of photophosphorylation of chloroplastswas developed, which could explain some of the hitherto unexplainedfacts concerning photophosphorylation. By analyses of the experimental results along the line of thetheory, it was inferred that the assumed substance (X) responsiblefor ATP formation occurs in a relatively large quantity of about1 mole/5–20 moles of chlorophyll. It was concluded thatthe high energy intermediate (X**) of ATP formation which wasassumed to accumulate on pre-illuminating the chloroplasts (inthe absence of ADP and Pi) does not represent a side pool ofextra energy, but a substantial intermediate in the normal courseof ATP formation. Alternative possibilities for the explanation of the experimentalfacts were also discussed. 1This paper is submitted to the University of Tokyo to fulfilla part of the requirements for the doctorate of H. SAKURAI.  相似文献   
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