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光系统I产生的电致事件对光系统II叶绿素荧光的调节。

Modulation of photosystem II chlorophyll fluorescence by electrogenic events generated by photosystem I.

作者信息

Bulychev A A, Vredenberg W J

机构信息

Biophysics Department, Faculty of Biology, Moscow State University, Moscow 119899, Russia.

出版信息

Bioelectrochemistry. 2001 Nov;54(2):157-68. doi: 10.1016/s1567-5394(01)00124-4.

Abstract

In an attempt to uncover electric field interactions between PS I and PS II during their functioning, fluorescence induction curves were measured on hydroxylamine-treated thylakoids of Chenopodium album under conditions ensuring low and high levels of photogenerated membrane potentials. In parallel experiments with Peperomia metallica chloroplasts, the photocurrents were measured with patch-clamp electrodes and served as indicator of electrogenic activity of thylakoid membranes in continuous light. Inhibition of linear electron flow at PS II donor side by hydroxylamine (0.1 mM) eliminated a slow rise of chlorophyll fluorescence to a peak level and suppressed photoelectrogenesis. Activation of PS I-dependent electron transport using cofactors of either cyclic (phenazine methosulfate) or noncyclic electron transport (reduced TMPD or DCPIP in combination with methyl viologen) restored photoelectrogenesis in hydroxylamine-treated chloroplasts and led to reappearance of slow components in the fluorescence induction curve. Exposure of thylakoids to valinomycin reduced the peak fluorescence in the presence of KCl but not in the absence of KCl. Combined application of valinomycin and nigericin in the presence of KCl exerted stronger suppression of fluorescence than valinomycin alone but was ineffective in the absence of KCl. In samples treated with hydroxylamine and PS I cofactors (DCPIP/ascorbate and methyl viologen), preillumination with a single-turnover flash or a multiturnover pulse shifted the induction curves of both membrane potential and chlorophyll fluorescence to shorter times, which confirms the supposed influence of PS I-generated electrical field on PS II fluorescence. A model is presented that describes modulating effect of the membrane potential on chlorophyll fluorescence and roughly simulates the fluorescence induction curves measured at low and high membrane potentials.

摘要

为了揭示光系统I(PS I)和光系统II(PS II)在功能过程中的电场相互作用,在确保低水平和高水平光生膜电位的条件下,对经羟胺处理的藜叶绿体类囊体测量了荧光诱导曲线。在与豆瓣绿叶绿体的平行实验中,用膜片钳电极测量光电流,并将其作为连续光照下类囊体膜电致活性的指标。羟胺(0.1 mM)对PS II供体侧线性电子流的抑制消除了叶绿素荧光缓慢上升至峰值水平的现象,并抑制了光电子产生。使用循环(吩嗪硫酸甲酯)或非循环电子传递(还原的四甲基对苯二胺或二氯酚靛酚与甲基紫精组合)的辅因子激活依赖PS I的电子传递,恢复了经羟胺处理的叶绿体中的光电子产生,并导致荧光诱导曲线中慢成分的重新出现。类囊体暴露于缬氨霉素在有KCl存在时降低了峰值荧光,但在无KCl时则不然。在有KCl存在的情况下,联合应用缬氨霉素和尼日利亚菌素对荧光的抑制作用比单独使用缬氨霉素更强,但在无KCl时无效。在用羟胺和PS I辅因子(二氯酚靛酚/抗坏血酸和甲基紫精)处理的样品中,用单周转闪光或多周转脉冲预照射会使膜电位和叶绿素荧光的诱导曲线移至更短时间,这证实了PS I产生的电场对PS II荧光的假定影响。提出了一个模型,该模型描述了膜电位对叶绿素荧光的调节作用,并大致模拟了在低膜电位和高膜电位下测量的荧光诱导曲线。

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