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Excitation energy transfer and charge separation are affected in Arabidopsis thaliana mutants lacking light-harvesting chlorophyll a/b binding protein Lhcb3.

J. Photochem. Photobiol. B, Biol.2015 Dec;153:423-8. Epub 2015 Nov 09
Małgorzata Adamiec 1 , Krzysztof Gibasiewicz 2 , Robert Luciński 1 , Wojciech Giera 2 , Przemysław Chełminiak 3 , Sebastian Szewczyk 2 , Weronika Sipińska 2 , Rienk van Grondelle 4 , Grzegorz Jackowski 5
Małgorzata Adamiec 1 , Krzysztof Gibasiewicz 2 , Robert Luciński 1 , Wojciech Giera 2 , Przemysław Chełminiak 3 , Sebastian Szewczyk 2 , Weronika Sipińska 2 , Rienk van Grondelle 4 , Grzegorz Jackowski 5
+ et al

[No authors listed]

Author information
  • 1 Department of Plant Physiology, Institute of Experimental Biology, Faculty of Biology, Adam Mickiewicz University, ul. Umultowska 89, 61-614 Poznań, Poland.
  • 2 Department of Molecular Biophysics, Faculty of Physics, Adam Mickiewicz University, ul. Umultowska 85, 61-614 Poznań, Poland.
  • 3 Department of Solid State Theory, Faculty of Physics, Adam Mickiewicz University, ul. Umultowska 85, 61-614 Poznań, Poland.
  • 4 Department of Physics and Astronomy, VU University, De Boelelaan 1081,1081 HV Amsterdam, The Netherlands.
  • 5 Department of Plant Physiology, Institute of Experimental Biology, Faculty of Biology, Adam Mickiewicz University, ul. Umultowska 89, 61-614 Poznań, Poland. Electronic address: grzesiek@amu.edu.pl.

摘要


The composition of LHCII trimers as well as excitation energy transfer and charge separation in grana cores of Arabidopsis thaliana mutant lacking chlorophyll a/b binding protein Lhcb3 have been investigated and compared to those in wild-type plants. In grana cores of lhcb3 plants we observed increased amounts of Lhcb1 and Lhcb2 apoproteins per PSII core. The additional copies of Lhcb1 and Lhcb2 are expected to substitute for Lhcb3 in LHCII trimers M as well as in the LHCII "extra" pool, which was found to be modestly enlarged as a result of the absence of Lhcb3. Time-resolved fluorescence measurements reveal a deceleration of the fast phase of excitation dynamics in grana cores of the mutant by ~15 ps, whereas the average fluorescence lifetime is not significantly altered. modeling predicts a slowing down of the mean hopping time and an increased stabilization of the primary charge separation in the mutant. Thus our data imply that absence of apoprotein Lhcb3 results in detectable differences in excitation energy transfer and charge separation.

KEYWORDS: Charge separation, Excitation energy transfer, Light Harvesting Complex II trimers, Monte Carlo simulation, Photosystem II

基因