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Nonphotochemical quenching of chlorophyll fluorescence in Chlamydomonas reinhardtii
Authors:Finazzi Giovanni  Johnson Giles N  Dall'Osto Luca  Zito Francesca  Bonente Giulia  Bassi Roberto  Wollman Francis-André
Affiliation:Unité Mixte de Recherche 7141 CNRS, Université Paris 6, Institut de Biologie Physico-Chimique, 75005 Paris, France. giovanni.finazzi@ibpc.fr
Abstract:Unlike plants, Chlamydomonas reinhardtii shows a restricted ability to develop nonphotochemical quenching upon illumination. Most of this limited quenching is due to state transitions instead of DeltapH-driven high-energy state quenching, qE. The latter could only be observed when the ability of the cells to perform photosynthesis was impaired, either by lowering temperature to approximately 0 degrees C or in mutants lacking RubisCO activity. Two main features were identified that account for the low level of qE in Chlamydomonas. On one hand, the electrochemical proton gradient generated upon illumination is apparently not sufficient to promote fluorescence quenching. On the other hand, the capacity to transduce the presence of a DeltapH into a quenching response is also intrinsically decreased in this alga, when compared to plants. The possible mechanism leading to these differences is discussed.
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