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Modelling of light-induced chlorophyll a fluorescence rise (O-J-I-P transient) and changes in 820 nm-transmittance signal of photosynthesis

机译:光诱导的叶绿素a荧光上升(O-J-I-P瞬态)和光合作用的820 nm透射信号变化的建模

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摘要

Theoretical modelling is often overlooked in photosynthesis research even if it can significantly help with understanding of explored system. A new model of light-induced photosynthetic reactions occurring in and around thylakoid membrane is introduced here and used for theoretical modelling of not only the light-induced chlorophyll (Chl) a fluorescence rise (FLR; the O-J-I-P transient), reflecting function of photosystem II (PSII), but also of the 820 nmtransmittance signal (I820), reflecting function of photosystem I (PSI) and plastocyanin (PC), paralleling the FLR. Correctness of the model was verified by successful simulations of the FLR and I820 signal as measured with the control (no treatment) sample but also as measured with 2,5-dibromo-3-methyl-6-isopropyl-p-benzoquinone- (inhibits electron transport in cytochrome b 6/f) and methylviologen- (accepts electrons from iron-sulphur cluster of PSI) treated samples and with the control sample upon different intensities of excitation light. From the simulations performed for the control sample, contribution of the oxidised donor of PSI, P700, and oxidised PC to the I820 signal minimum (reflects maximal accumulations of the two components) was estimated to be 75% and 25%, respectively. Further in silico experiments showed that PC must be reduced in the dark, cyclic electron transport around PSI must be considered in the model and activation of ferredoxin-NADP+-oxidoreductase (FNR) also affects the FLR. Correct simulations of the FLR and I820 signal demonstrate robustness of the model, confirm that the electron transport reactions occurring beyond PSII affect the shape of the FLR, and show usefulness and perspective of theoretical approach in studying of the light-induced photosynthetic reactions.
机译:理论建模通常在光合作用研究中被忽略,即使它可以极大地帮助理解探索的系统。本文介绍了类囊体膜内及其周围发生的光诱导光合作用反应的新模型,该模型不仅用于光诱导的叶绿素(Chl),荧光上升(FLR; OJIP瞬变)的理论建模,还反映了光系统II的功能。 (PSII),还有820 nm透射信号(I 820 ),反映了光系统I(PSI)和质体蓝素(PC)的功能,与FLR平行。该模型的正确性通过对FLR和I 820 信号的成功模拟进行了验证,该信号由对照(未处理)样品测量,也由2,5-二溴-3-甲基-6-异丙基-对-苯醌-(抑制细胞色素b 6 / f中的电子传输)和甲基紫精-(接受PSI的铁-硫簇中的电子)处理的样品以及与对照样品不同激发强度的样品光。从对照样品的模拟结果来看,PSI,P700和PC的氧化供体对I 820 信号最小值(反映了两个组分的最大积累)的贡献估计为75%和25%。进一步的计算机模拟实验表明,必须在黑暗中还原PC,在模型中必须考虑到PSI周围的循环电子传输,并且铁氧还蛋白-NADP + -氧化还原酶(FNR)的激活也会影响FLR。对FLR和I 820 信号的正确仿真证明了该模型的鲁棒性,证实了PSII以外发生的电子传输反应会影响FLR的形状,并显示出有用的方法和理论方法对光诱导的光合作用反应。

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    《Photosynthetica》 |2009年第4期|p.483-498|共16页
  • 作者

    D. Lazár;

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