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Elucidation of structure-function relationships in plant major light-harvesting complex (LHC II) by nonlinear spectroscopy

  • Conventional linear and time-resolved spectroscopic techniques are often not appropriate to elucidate specific pigment-pigment interactions in light-harvesting pigment-protein complexes (LHCs). Nonlinear (laser-) spectroscopic techniques, including nonlinear polarization spectroscopy in the frequency domain (NLPF) as well as step-wise (resonant) and simultaneous (non-resonant) two-photon excitation spectroscopies may be advantageous in this regard. Nonlinear spectroscopies have been used to elucidate substructure(s) of very complex spectra, including analyses of strong excitonic couplings between chlorophylls and of interactions between (bacterio) chlorophylls and "optically dark'' states of carotenoids in LHCs, including the major antenna complex of higher plants, LHC II. This article shortly reviews our previous study and outlines perspectives regarding the application of selected nonlinear laser-spectroscopic techniques to disentangle structure-function relationships in LHCs and other pigment-protein complexes.

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Author details:Heiko Lokstein, Alexander Betke, Maria Krikunova, Klaus Teuchner, Bernd Voigt
DOI:https://doi.org/10.1007/s11120-011-9700-y
ISSN:0166-8595
Title of parent work (English):Photosynthesis research
Publisher:Springer
Place of publishing:Dordrecht
Publication type:Review
Language:English
Year of first publication:2012
Publication year:2012
Release date:2017/03/26
Tag:Excitonic interactions; Laser spectroscopy; Light-harvesting complex (LHC II)
Volume:111
Issue:1-2
Number of pages:9
First page:227
Last Page:235
Funding institution:Deutsche Forschungsgemeinschaft [SFB 429, TP A2]
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Biochemie und Biologie
Peer review:Referiert
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