Protective dissipation of excess absorbed energy by photosynthetic apparatus of cyanobacteria: role of antenna terminal emitters

被引:51
作者
Karapetyan, Navassard V. [1 ]
机构
[1] Russian Acad Sci, AN Bakh Biochem Inst, Moscow 119071, Russia
关键词
energy dissipation; fluorescence quenching; long-wavelength chlorophyll; phycobilisomes; photosystem I; terminal emitter;
D O I
10.1007/s11120-008-9336-8
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Two mechanisms of photoprotective dissipation of the excessively absorbed energy by photosynthetic apparatus of cyanobacteria are described that divert energy from reaction centers. Energy dissipation, monitored as nonphotochemical fluorescence quenching, occurs at different steps of energy transfer within the phycobilisomes or core antenna of photosystem I. Although these mechanisms differ significantly, in both cases, energy dissipates mainly from terminal emitters: allophycocyanin B or core membrane linker protein (L-CM) in phycobilisomes, or the longest-wavelength chlorophylls in photosystem I antenna. It is supposed that carotenoid-induced energy dissipation in phycobilisomes is triggered by light-induced transformation of the nonquenched state of antenna into quenched state due to conformation changes caused by orange carotinoid-binding protein (OCP)-phycobilisome interaction. Fluorescence of the longest-wavelength chlorophylls of photosystem I antenna is strongly quenched by P700 cation radical or by P700 triplet state, dependent on redox state of the acceptor side cofactors of photosystem I.
引用
收藏
页码:195 / 204
页数:10
相关论文
共 88 条
[1]   Elucidation of the molecular structures of components of the phycobilisome: reconstructing a giant [J].
Adir, N .
PHOTOSYNTHESIS RESEARCH, 2005, 85 (01) :15-32
[2]   A GENERAL-MODEL FOR REGULATION OF PHOTOSYNTHETIC UNIT FUNCTION BY PROTEIN-PHOSPHORYLATION [J].
ALLEN, JF ;
HOLMES, NG .
FEBS LETTERS, 1986, 202 (02) :175-181
[3]   PHOTOINHIBITION OF PHOTOSYSTEM-2 - INACTIVATION, PROTEIN DAMAGE AND TURNOVER [J].
ARO, EM ;
VIRGIN, I ;
ANDERSSON, B .
BIOCHIMICA ET BIOPHYSICA ACTA, 1993, 1143 (02) :113-134
[4]   The occurrence of rapidly reversible non-photochemical quenching of chlorophyll a fluorescence in cyanobacteria [J].
Bailey, S ;
Mann, NH ;
Robinson, C ;
Scanlan, DJ .
FEBS LETTERS, 2005, 579 (01) :275-280
[5]   Supramolecular architecture of cyanobacterial thylakoid membranes: How is the phycobilisome connected with the photosystems? [J].
Bald, D ;
Kruip, J ;
Rogner, M .
PHOTOSYNTHESIS RESEARCH, 1996, 49 (02) :103-118
[6]  
Barber James, 2006, V24, P99
[7]  
Barth C, 2001, PLANT CELL ENVIRON, V24, P163, DOI 10.1111/j.1365-3040.2001.00673.x
[8]   REGULATION OF EXCITATION-ENERGY TRANSFER IN ORGANISMS CONTAINING PHYCOBILINS [J].
BIGGINS, J ;
BRUCE, D .
PHOTOSYNTHESIS RESEARCH, 1989, 20 (01) :1-34
[9]  
BITTERSMANN E, 1991, BIOCHIM BIOPHYS ACTA, V1098, P105
[10]   ORIGIN AND EARLY EVOLUTION OF PHOTOSYNTHESIS [J].
BLANKENSHIP, RE .
PHOTOSYNTHESIS RESEARCH, 1992, 33 (02) :91-111