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Linear Dichroism,Fluorescence Polarization,and Path of the Thermal Deactivation of Excited Cyanobacterial (Synechococcus Elongatus) Photosystem 1 Immobilized and Oriented in Polymer Films
Authors:Białek-Bylka  GE  Sofrová  D  Szurkowski  J  Skwarek  R  Sopko  B  Manikowski  H
Institution:(1) Faculty of Technical Physics, Poznanacute, University of Technology, 60-965 Poznanacute, Piotrowo Str. 3, Poland;(2) Biochemistry Department, Faculty of Science, Charles University, 128 40, Prague, Albertov, 2030, Czech Republic;(3) Institute of Physics, University of Gdansk, Poland;(4) Faculty of Technical Physics, Poznanacute, University of Technology, 60-965 Poznanacute, Piotrowo Str. 3, Poland
Abstract:Pigment-protein complexes enriched in photosystem 1 (PS1) and, for comparison, enriched in photosystem 2 (PS2) were isolated from the cyanobacterium Synechococcus elongatus Nag. f. thermalis Geitl. They were immobilized and oriented in the polyvinyl alcohol (PVA) films, and studied by linear dichroism (LD), fluorescence polarization (FP), photoacoustic spectroscopy (PAS), and polarized photoacoustic spectroscopy (PASVerbar and PASbottom). The LD signal of beta-carotene in the region with maximum at 500 nm was positive in the PS1 complex. The maximum value of fluorescence polarization (FP) in the measured photosynthetic pigment region was 1.25 and was similar to higher plant values. Carotenoids exhibited different efficiencies of thermal deactivation (max. at 500 nm) in PS1 and PS2. The thermal deactivation efficiency of carotenoids in comparison with that of chlorophyll (Chl) a at its red absorbance maximum was much higher in PS1 than in PS2 complexes. Cyanobacterial complexes did not contain Chl b, interpretation of the LD, PAS, and FP results is thus easier and can be compared with PS1 and PS2 values of higher plants, especially with Chl b-less mutant values.
Keywords:carotenoids  photoacoustic and emission spectroscopy  polarized absorption  reaction centres
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