Modeling chlorophyll a fluorescence transient: Relation to photosynthesis

被引:0
作者
A. Stirbet
G. Yu. Riznichenko
A. B. Rubin
机构
[1] Lomonosov Moscow State University,Faculty of Biology
[2] Department of Biochemistry and Center of Biophysics and Quantitative Biology,Department of Plant Biology
来源
Biochemistry (Moscow) | 2014年 / 79卷
关键词
chlorophyll ; fluorescence; Kautsky transient; mathematical simulation; nonphotochemical quenching (NPQ) of the excited state of chlorophyll; plastoquinone pool; state changes;
D O I
暂无
中图分类号
学科分类号
摘要
To honor Academician Alexander Abramovitch Krasnovsky, we present here an educational review on the relation of chlorophyll a fluorescence transient to various processes in photosynthesis. The initial event in oxygenic photosynthesis is light absorption by chlorophylls (Chls), carotenoids, and, in some cases, phycobilins; these pigments form the antenna. Most of the energy is transferred to reaction centers where it is used for charge separation. The small part of energy that is not used in photochemistry is dissipated as heat or re-emitted as fluorescence. When a photosynthetic sample is transferred from dark to light, Chl a fluorescence (ChlF) intensity shows characteristic changes in time called fluorescence transient, the OJIPSMT transient, where O (the origin) is for the first measured minimum fluorescence level; J and I for intermediate inflections; P for peak; S for semi-steady state level; M for maximum; and T for terminal steady state level. This transient is a real signature of photosynthesis, since diverse events can be related to it, such as: changes in redox states of components of the linear electron transport flow, involvement of alternative electron routes, the build-up of a transmembrane pH gradient and membrane potential, activation of different nonphotochemical quenching processes, activation of the Calvin-Benson cycle, and other processes. In this review, we present our views on how different segments of the OJIPSMT transient are influenced by various photosynthetic processes, and discuss a number of studies involving mathematical modeling and simulation of the ChlF transient. A special emphasis is given to the slower PSMT phase, for which many studies have been recently published, but they are less known than on the faster OJIP phase.
引用
收藏
页码:291 / 323
页数:32
相关论文
共 984 条
[1]  
Croce R(2011)undefined J. Photochem. Photobiol. B 104 142-153
[2]  
van Amerongen H(2012)undefined Biochim. Biophys. Acta 1817 44-65
[3]  
Muh F(2006)undefined Annu. Rev. Plant Biol. 57 521-565
[4]  
Glockner C(1956)undefined Science 124 585-586
[5]  
Hellmich J(1986)undefined Plant Physiol. 82 185-189
[6]  
Zouni A(2012)undefined Photosynth. Res. 113 63-74
[7]  
Nelson N(1931)undefined Naturwissenschaften 19 964-50
[8]  
Yocum C F(1971)undefined Photophysiology 6 1-160
[9]  
Latimer P(1995)undefined Aust. J. Plant Physiol. 22 131-35
[10]  
Bannister T T(2008)undefined PAM Appl. Notes 1 27-28