Department of Biophysics, N.I. Lobachevsky State University of Nizhny Novgorod, Gagarin Avenue, 23, Nizhny Novgorod, Russia, 603950.
Photosynth Res. 2018 May;136(2):215-228. doi: 10.1007/s11120-017-0460-1. Epub 2017 Oct 31.
Local damage (mainly burning, heating, and mechanical wounding) induces propagation of electrical signals, namely, variation potentials, which are important signals during the life of plants that regulate different physiological processes, including photosynthesis. It is known that the variation potential decreases the rate of CO assimilation by the Calvin-Benson cycle; however, its influence on light reactions has been poorly investigated. The aim of our work was to investigate the influence of the variation potential on the light energy flow that is absorbed, trapped and dissipated per active reaction centre in photosystem II and on the flow of electrons through the chloroplast electron transport chain. We analysed chlorophyll fluorescence in pea leaves using JIP-test and PAM-fluorometry; we also investigated delayed fluorescence. The electrical signals were registered using extracellular electrodes. We showed that the burning-induced variation potential stimulated a nonphotochemical loss of energy in photosystem II under dark conditions. It was also shown that the variation potential gradually increased the flow of light energy absorbed, trapped and dissipated by photosystem II. These changes were likely caused by an increase in the fraction of absorbed light distributed to photosystem II. In addition, the variation potential induced a transient increase in electron flow through the photosynthetic electron transport chain. Some probable mechanisms for the influence of the variation potential on the light reactions of photosynthesis (including the potential role of intracellular pH decrease) are discussed in the work.
局部损伤(主要是灼伤、加热和机械创伤)会引发电信号的传播,即变化电位,这是植物生命过程中调节不同生理过程(包括光合作用)的重要信号。已知变化电位会降低卡尔文-本森循环中 CO2 同化的速率,但它对光反应的影响尚未得到充分研究。我们的工作旨在研究变化电位对吸收、捕获和耗散每个光系统 II 活性反应中心的光能以及电子在叶绿体电子传递链中流动的影响。我们使用 JIP-test 和 PAM 荧光仪分析了豌豆叶片的叶绿素荧光;我们还研究了延迟荧光。使用细胞外电极记录电信号。我们表明,灼伤引起的变化电位在黑暗条件下刺激光系统 II 中非光化学能量损失。还表明,变化电位逐渐增加了光系统 II 吸收、捕获和耗散的光能流。这些变化可能是由于吸收光的分数分布到光系统 II 增加所致。此外,变化电位诱导光合电子传递链中电子流的瞬时增加。本文讨论了变化电位对光合作用光反应的影响的一些可能机制(包括细胞内 pH 值降低的潜在作用)。