Simultaneous measurement of changes in red and blue fluorescence in illuminated isolated chloroplasts and leaf pieces: The contribution of NADPH to the blue fluorescence signal |
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Authors: | Zoran G. Cerovic Maurice Bergher Yves Goulas Stephane Tosti Ismael Moya |
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Affiliation: | (1) Laboratoire pour l'Utilisation du Rayonnement Electromagnetique, Université de Paris XI, 91405 Orsay, France |
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Abstract: | A newly developed nitrogen laser fluorimeter insensitive to actinic illumination was used to follow simultaneously the light induced changes in red and blue fluorescence of intact isolated spinach chloroplasts and leaf pieces. The recorded variable blue fluorescence was linked to a water soluble component of intact isolated chloroplasts, depended on Photosystem I, and was related to changes in carbon metabolism. From the comparison of changes in intact and broken chloroplasts and from fluorescence spectra under different conditions, it was concluded that the variation in NADPH was the major cause for the changes in blue fluorescence. This study opens a path towards continuous and non-destructive monitoring of NADPH redox state in chloroplasts and leaves.Abbreviations Chl chlorophyll - DHAP dihydroxyacetone phosphate - DLGA DL-glyceraldehyde - FNR ferredoxin-NADP reductase - FWHM full width at half maximum - LED light emitting diodes - OAA oxaloacetate - qN non-photochemical quenching - PGA 3-phosphoglycerate - Pi inorganic orthophosphate - qP photochemical quenching - PPFD photosynthetic photon flux density - QA primary quinone acceptor of Photosystem IIPreliminary results of this work were presented at the First Conference on the Physiology and Biochemistry of high Mountain Plants, 2–3 July 1992, Villar d'Arene, France. |
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Keywords: | fluorimetry intact isolated chloroplasts photosynthesis pyridine nucleotides Spinacia oleracea L. |
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