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水杨酸可能会间接影响光合作用电子传递。

Salicylic acid may indirectly influence the photosynthetic electron transport.

机构信息

Institute of Plant Biology, Biological Research Centre of the Hungarian Academy of Sciences, 6701 Szeged, POB 521, Hungary.

出版信息

J Plant Physiol. 2012 Jul 1;169(10):971-8. doi: 10.1016/j.jplph.2012.02.020. Epub 2012 May 11.

Abstract

Salicylic acid (SA) is a phenolic phytohormone with important roles in plant development, transpiration, endogenous signaling and defense against pathogens. One of the pathways of SA biosynthesis is located in the chloroplasts. The aim of the present work was to investigate the possible regulatory effects of SA on photosynthetic electron transport processes. Here we show that SA also affects leaf photosynthesis, via inducing stomatal closure and also by slowing down Photosystem II (PS II) electron transport. Photosynthetic CO₂ incorporation and stomatal conductivity (measured with an infrared gas analyzer) were much lower in SA-infiltrated tobacco leaves than in untreated or water-infiltrated controls. PS II electron transport (calculated from PAM chlorophyll fluorescence data) was more sensitive to SA than Photosystem I (PS I) (measured with far red absorption). Direct probing of PS II charge separation and stabilization (measured with thermoluminescence), however, showed that these events were less affected in isolated thylakoid membranes than in leaves, suggesting that the effect of SA on PS II is indirect and different from similar effects of phenolic herbicides.

摘要

水杨酸(SA)是一种酚类植物激素,在植物发育、蒸腾、内源性信号传递和防御病原体方面具有重要作用。SA 生物合成的途径之一位于叶绿体中。本工作的目的是研究 SA 对光合作用电子传递过程的可能调节作用。本文表明,SA 还通过诱导气孔关闭和减缓光系统 II(PS II)电子传递来影响叶片光合作用。与未经处理或水渗透处理的对照相比,渗透 SA 的烟草叶片中的光合 CO₂ 固定和气孔电导率(用红外气体分析仪测量)要低得多。PS II 电子传递(根据 PAM 叶绿素荧光数据计算)对 SA 的敏感性高于 PS I(用远红吸收测量)。然而,直接探测 PS II 电荷分离和稳定(用热致发光测量)表明,这些事件在分离的类囊体膜中比在叶片中受影响较小,这表明 SA 对 PS II 的影响是间接的,与酚类除草剂的类似影响不同。

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