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非光化学猝灭(q(N))组分的解析和定量方法。

Method for resolution and quantification of components of the non-photochemical quenching (q (N)).

作者信息

Rohácek Karel

机构信息

Biology Centre of the Academy of Sciences of the Czech Republic, p.r.i., Institute of Plant Molecular Biology, Branisovská 31, 370 05 Ceske Budejovice, Czech Republic.

出版信息

Photosynth Res. 2010 Aug;105(2):101-13. doi: 10.1007/s11120-010-9564-6. Epub 2010 Jun 11.

Abstract

A new method of the chlorophyll (Chl) a fluorescence quenching analysis is described, which allows the calculation of values of (at least) three components of the non-photochemical quenching of the variable Chl a fluorescence (q (N)) using a non-linear regression of a multi-exponential function within experimental data. Formulae for coefficients of the "energy"-dependent (DeltapH-dependent) quenching (q (E)), the state-transition quenching (q (T)) and the photo/inhibitory quenching (q (I)) of Chl a fluorescence were found on the basis of three assumptions: (i) the dark relaxation kinetics of q (N), as well as of all its components, is of an exponential nature, (ii) the superposition principle is valid for individual Chl a fluorescence quenching processes and (iii) the same reference fluorescence level (namely the maximum variable Chl a fluorescence yield in the dark-adapted state, F (V)) is used to define both q (N) and its components. All definitions as well as the algorithms for analytical recognition of the q (N) components are theoretically clarified and experimentally tested. The described theory results in a rather simple equation allowing to compute values for all q (N) components (q (E), q (T), q (I)) as well as the half-times of relaxation (tau(1/2)) of corresponding quenching processes. It is demonstrated that under the above assumptions it holds: q (N) = q (E) + q (T) + q (I). The theoretically derived equations are tested, and the results obtained are discussed for non-stressed and stressed photosynthetically active samples. Semi-empirical formulae for a fast estimation of values of the q (N) components from experimental data are also given.

摘要

本文描述了一种叶绿素(Chl)a荧光猝灭分析的新方法,该方法可通过对实验数据进行多指数函数的非线性回归来计算可变Chl a荧光非光化学猝灭(q (N))的(至少)三个组分的值。基于三个假设得出了Chl a荧光的“能量”依赖性(ΔpH依赖性)猝灭(q (E))、状态转换猝灭(q (T))和光/抑制猝灭(q (I))系数的公式:(i)q (N)及其所有组分的暗松弛动力学呈指数性质,(ii)叠加原理适用于单个Chl a荧光猝灭过程,(iii)使用相同的参考荧光水平(即暗适应状态下的最大可变Chl a荧光产额,F (V))来定义q (N)及其组分。所有定义以及q (N)组分的分析识别算法均在理论上得到了阐明并经过了实验测试。所描述的理论得出了一个相当简单的方程,可用于计算所有q (N)组分(q (E)、q (T)、q (I))的值以及相应猝灭过程的松弛半衰期(tau(1/2))。结果表明,在上述假设下成立:q (N) = q (E) + q (T) + q (I)。对理论推导的方程进行了测试,并针对非胁迫和胁迫光合活性样品讨论了所得结果。还给出了从实验数据快速估算q (N)组分值的半经验公式。

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