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Photosystem II electron transfer cycle and chlororespiration in planktonic diatoms
Authors:Lavaud  Johann  van Gorkom  Hans J.  Etienne  Anne-Lise
Affiliation:(1) Laboratoire ‘Organismes Photosynthétiques et Environnement’, UMR CNRS 8543, Ecole Normale Supérieure, 46 Rue d'Ulm, 75230 Paris Cedex 05, France;(2) Department of Biophysics, Leiden University, P.O. Box 9504, 2300 RA Leiden, The Netherlands
Abstract:The dominance of diatoms in turbulent waters suggests special adaptations to the wide fluctuations in light intensity that phytoplankton must cope with in such an environment. Our recent demonstration of the unusually effective photoprotection by the xanthophyll cycle in diatoms [Lavaud et al. (2002) Plant Physiol 129 (3) (in press)] also revealed that failure of this protection led to inactivation of oxygen evolution, but not to the expected photoinhibition. Photo-oxidative damage might be prevented by an electron transfer cycle around Photosystem II (PS II). The induction of such a cycle at high light intensity was verified by measurements of the flash number dependence of oxygen production in a series of single-turnover flashes. After a few minutes of saturating illumination, the oxygen flash yields are temporarily decreased. The deficit in oxygen production amounts to at most 3 electrons per PS II, but continues to reappear with a half time of 2 min in the dark until the total pool of reducing equivalents accumulated during the illumination has been consumed by (chloro)respiration. This is attributed to an electron transfer pathway from the plastoquinone pool or the acceptor side of PS II to the donor side of PS II that is insignificant at limiting light intensity but is accelerated to milliseconds at excess light intensity. Partial filling of the 3-equivalents capacity of the cyclic electron transfer path in PS II may prevent both acceptor-side photoinhibition in oxygen-evolving PS II and donor-side photoinhibition when the oxygen-evolving complex is temporarily inactivated. This revised version was published online in June 2006 with corrections to the Cover Date.
Keywords:diatoms  electron transport cycle  oxygen evolution   Phaeodactylum tricornutum   photoprotection  Photosystem II
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