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Cyclic variations of photosynthetic activity under nitrogen fixing conditions in Synchococcus RF-1
Authors:Regina Rojek  Claudia Harms  Martin Hebeler  L Horst Grimme
Institution:(1) Institut für Zellbiologie, Biochemie und Biotechnologie, Fachbereich 2, Gebäude NW2, Universität Bremen, Postfach 33 04 40, D-28334 Bremen, Germany;(2) Present address: Institut für Allgemeine Botanik, Ohnhorststrasse 18, D-22609 Hamburg, Germany;(3) Present address: Institut für Mikrobiologie, Grisebachstrasse 8, D-37077 Göttingen, Germany
Abstract:When nitrogen fixing cell cultures of Synechococcus RF-1 were subjected to an alternating lightdark regime (12 h:12 h), a cyclic decrease in the photosynthetic oxygen evolution potential was observed during the dark periods. This rhythm of net photosynthesis rate was maintained for at least two days after transition to continuous light. The decrease in net photosynthesis was accompanied by a stimulation of dark respiration. However, the magnitude of oxygen uptake was considerably smaller than the observed decrease in oxygen evolution. The photosynthetic activity of cells taken from the dark period was characterized by (i) a significantly lower quantum yield and (ii) a strong reduction in the light-saturated rate of photosynthesis. Growing the cultures on nitrate or under continuous light completely suppressed this rhythm. Protein synthesis was not necessary for the recovery of the light-saturated rate of photosynthesis during the light period. The cellular content of chlorophyll a and of phycobiliproteins did not vary between light and dark period, indicating that quantitative changes in the composition of the photosynthetic apparatus are not the basis for the observed oscillations. Regulatory modifications of the photosynthetic efficiency are proposed as an adaptation mechanism to adjust the intracellular oxygen concentration to the needs for nitrogenase activity.Abbreviation Chl chlorophyll
Keywords:Synechococcus sp    Nitrogen fixation  Photosynthetic oxygen evolution  Light-dark cycle  Light-response curve
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