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在低温下发生光抑制的黄瓜叶片中,P700(+)暗还原速率增强。

Enhanced rates of P700(+) dark-reduction in leaves of Cucumis sativus L photoinhibited at chilling temperature.

作者信息

Bukhov Nikolai G, Govindachary Sridharan, Rajagopal Subramanyam, Joly David, Carpentier Robert

机构信息

Groupe de Recherche en Energie et Information Biomoléculaires, Université du Québec à Trois-Rivières, G9A 5H7, Québec, Canada.

出版信息

Planta. 2004 Mar;218(5):852-61. doi: 10.1007/s00425-003-1165-6. Epub 2003 Dec 18.

Abstract

The changes in electron transport within photosystem I (PSI) were studied in detached leaves of Cucumis sativus L. during the course of irradiation with moderate white light (300 micromol photons m(-2) s(-1)) at 4 degrees C. When intact leaves were exposed to the combination of moderate light and low temperature, the amplitude of far-red light-induced P700 absorbance changes at 820 nm (deltaA(820)), a relative measure of PSI, progressively decreased as the light treatment time increased. Almost no oxidation of P700 was noticeable after 5 h. Methyl viologen accelerated the oxidation of P700 to a steady-state level and also increased the magnitudes of deltaA(820) changes in photoinhibited leaves, reflecting the rapid removal of electrons from native carriers. Photoinhibition under moderate light and chilling temperature also accelerated the rate of P700(+) reduction after far-red light excitation as the half-times of the two exponential components of P700(+) decay curves decreased relative to the control ones. A detailed analysis of the kinetics of P700(+) reduction using diuron alone or the combination of diuron and methyl viologen strongly favours an increased rate of electron donation from stromal reductants to PSI through the plastoquinone pool following photoinhibitory treatment. Importantly, the marked acceleration of P700(+) re-reduction is the consequence of the irradiation of leaf segments at low temperature and not caused by chilling stress alone.

摘要

在4℃下用中等强度白光(300微摩尔光子·米⁻²·秒⁻¹)照射黄瓜离体叶片的过程中,对光系统I(PSI)内的电子传递变化进行了研究。当完整叶片暴露于中等光照和低温的组合条件下时,作为PSI相对测量指标的远红光诱导的820 nm处P700吸光度变化幅度(ΔA(820))随着光照处理时间的增加而逐渐降低。5小时后几乎没有明显的P700氧化现象。甲基紫精加速了P700氧化至稳态水平,并且还增加了光抑制叶片中ΔA(820)变化的幅度,这反映了电子从天然载体中的快速移除。中等光照和低温下的光抑制还加速了远红光激发后P700⁺还原的速率,因为P700⁺衰减曲线的两个指数成分的半衰期相对于对照有所缩短。使用敌草隆单独处理或敌草隆与甲基紫精联合处理对P700⁺还原动力学进行的详细分析有力地表明,光抑制处理后通过质体醌库从基质还原剂向PSI的电子供体速率增加。重要的是,P700⁺再还原的显著加速是叶片片段在低温下照射的结果,而不仅仅是由冷胁迫引起的。

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