Abstract
The effect of different growth light intensities (60 W • m-2, 6 W • m-2) on the performance of the photosynthetic apparatus of mustard plants (Sinapis alba L.) was studied. A distinct decrease in photosystem II content per chlorophyll under low-light conditions compared to high-light conditions was found. For P-680 as well as for QA and protein the molar ratio between high-light and low-light plants was 1.4 whereas the respective concentrations per chlorophyll showed some variations for P-680 and QA on the one and QB protein on the other hand. In addition to the study of photosystem II components, the concentrations of QB, Cyt f, and P-700 were measured. The light regime during growth had no effect on the amount of P-700 per chlorophyll but there were large differences with respect to PQ and Cyt f. The molar ratio for Cyt f and PQ between high- and low-light leaves was 2.2 and 1.9, respectively. Two models are proposed, showing the functional organization of the pigment system and the electron transport chain in thylakoids of high-light and low-light leaves of mustard plants. © 1986, Walter de Gruyter. All rights reserved.
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Wild, A., Höpfner, M., Rühle, W., & Richter, M. (1986). Changes in the Stoichiometry of Photosystem II Components as an Adaptive Response to High-Light and Low-Light Conditions during Growth. Zeitschrift Fur Naturforschung - Section C Journal of Biosciences, 41(5–6), 597–603. https://doi.org/10.1515/znc-1986-5-618
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