Blue Light-Enhanced Photosynthetic Oxygen Evolution from Liposome-Bound Photosystem II Particles; Possible Role of the Xanthophyll Cycle in the Regulation of Cyclic Electron Flow Around Photosystem II?

Author:

Gruszecki W. I.1,Strzałka K.2,Radunz A.3,Kruk J.2,Schmid G. H.3

Affiliation:

1. 1Biophysical Research Group, Institute of Physics, Maria Curie-Sklodowska University, PL-20 031 Lublin, Poland

2. 2Jan Zurzycki Institute of Molecular Biology, Jagiellonian University, PL-31 120 Kraków, Poland

3. 3Fakultät für Biologie, Lehrstuhl Zellphysiologie, Universität Bielefeld, Postfach 10 01 31, D-33501 Bielefeld, Bundesrepublik Deutschland

Abstract

Abstract Light-driven electron transport in liposome-bound photosystem II (PS-II) particles be­tween water and ferricyanide was monitored by bare platinum electrode oxymetry. The modi­fication of the experimental system with the exogenous quinones α-tocopherol quinone ( α-TQ) or plastoquinone (PQ) resulted in a pronounced effect on photosynthetic oxygen evolution. The presence of α-tocopherolquinone ( α-TQ) in PS-II samples decreased the rate of red light-induced oxygen evolution but increased the rate of green light-induced oxygen evolution. Blue light applied to the assay system in which oxygen evolution was saturated by red light resulted in a further increase of the oxygen signal. These findings are interpreted in terms of a cyclic electron transport around PS-II, regulated by an excitation state of β-carotene in the reaction centre of PS-II. A mechanism is postulated according to which energetic coupling of β-carotene in the reaction centre of PS-II and that of other antenna carotenoid pigments is regulated by the portion of the xanthophyll violaxanthin, which is under control of the xanthophyll cycle.

Publisher

Walter de Gruyter GmbH

Subject

General Biochemistry, Genetics and Molecular Biology

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