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Analysis of the photosynthetic response induced by variation potential in geranium

机译:天竺葵变异电位诱导的光合作用响应分析

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摘要

Electrical signals (action and variation potentials) caused by environmental stimuli induce a number of physiological responses in plants including changes in photosynthesis; however, mechanisms of these changes remain unclear. We investigated the influence of the variation potential on photosynthesis in geranium (Pelargonium zonale) under different conditions (control, low external CO2 concentration, and actinic light absence). The variation potential caused by lamina burning induced a reduction in photosynthesis (decreases in effective quantum yields of photosystem I and II, CO2 assimilation rate, and stomatal conductance) in unstimulated leaves under control conditions. Changes in the majority of light-stage parameters (photosystem I and II quantum yields, coefficients of photochemical and non-photochemical quenching, quantum yield of non-photochemical energy dissipation in photosystem I due to donor-side limitation) were correlated with a decrease in CO2 assimilation rate. The changes were similar to those caused by lowering [CO2]; their magnitudes decreased both under low external CO2 concentration and without actinic light. These results support the hypothesis that Calvin cycle inactivation plays a key role in photosynthetic response induced by electrical signals. However, a decrease in electron transport through the PSI acceptor side also induced by variation potential was not correlated with a decrease in the CO2 assimilation rate and did not depend on the external CO2 concentration or actinic light intensity. Thus, we suggest that there are two different mechanisms of light-stage inactivation induced by the variation potential in geranium: one strongly dependent on dark-stage inactivation and one weakly dependent on dark-stage inactivation.
机译:环境刺激引起的电信号(动作和变异电位)在植物中引起许多生理反应,包括光合作用的改变;但是,这些变化的机制仍不清楚。我们研究了在不同条件下(控制,外部CO2浓度低和光化性光缺失)条件下,变化电位对天竺葵(天竺葵)光合作用的影响。在控制条件下,未刺激叶片的叶片燃烧引起的变异潜力导致光合作用降低(光系统I和II的有效量子效率,CO2吸收率和气孔导度降低)。大部分光阶段参数的变化(光系统I和II的量子产率,光化学和非光化学猝灭的系数,光系统I中非光化学能量耗散的量子产率(由于施主侧的限制))与降低二氧化碳的吸收率变化与降低[CO2 ]引起的变化相似;在外部低CO 2浓度和没有光化光的情况下,它们的强度都会降低。这些结果支持以下假设:卡尔文循环失活在电信号诱导的光合作用响应中起关键作用。然而,由变化电位引起的通过PSI受体一侧的电子传输的减少与CO2同化率的降低无关,并且不依赖于外部CO2浓度或光化强度。因此,我们提出了由天竺葵中的变化电位引起的光阶段失活的两种不同机制:一种强烈依赖于黑暗阶段的失活和一种弱依赖于黑暗阶段的失活。

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  • 来源
    《Planta》 |2012年第4期|p.703-712|共10页
  • 作者单位

    Department of Biophysics, N.I. Lobachevsky State University of Nizhny Novgorod, Gagarin Avenue, 23, Nizhny Novgorod, 603950, Russia;

    Department of Biophysics, N.I. Lobachevsky State University of Nizhny Novgorod, Gagarin Avenue, 23, Nizhny Novgorod, 603950, Russia;

    Department of Biophysics, N.I. Lobachevsky State University of Nizhny Novgorod, Gagarin Avenue, 23, Nizhny Novgorod, 603950, Russia;

    Department of Biochemistry and Plant Physiology, N.I. Lobachevsky State University of Nizhny Novgorod, Gagarin Avenue, 23, Nizhny Novgorod, 603950, Russia;

    Department of Biophysics, N.I. Lobachevsky State University of Nizhny Novgorod, Gagarin Avenue, 23, Nizhny Novgorod, 603950, Russia;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    Gas exchange; Pelargonium; Photosynthesis; Photosystem I; Photosystem II; Variation potential;

    机译:气体交换;天竺葵;光合作用;光系统I;光系统II;变异势;

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