[Reactive oxygen forms and Ca ions as possible intermediaries under the induction of heat resistance of plant cells by jasmonic acid].

I. V. Karpets, Iu E Kolupaev, T. O. Iastreb, A. I. Oboznyi, N. V. Shvidenko, A. A. Lugovaia, A. Vainer
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引用次数: 4

Abstract

The participation of reactive oxygen species (ROS) and calcium ions in realization of influence of exogenous jasmonic acid (JA) on the heat resistance of wheat coleoptiles has been investigated. Influence of 1 microM JA caused the transitional intensifying of generation of superoxide anion-radical (O2*-) and hydrogen peroxide in coleoptiles with the maximum within 15-30 minutes after the treatment beginning. Within the first hour after the beginning of coleoptiles treatment with JA the increase of superoxide dismutase (SOD) activity was noted. Later on (within 5-24 hours after the treatment beginning) there was the lowering of ROS generation by coleoptiles of experimental variant, and the SOD activity approached the control value. Intensifying of generation of superoxide radical induced by JA was suppressed by the antioxidant ionol and was partially levelled by imidazole (inhibitor of NADPH-oxidase), EGTA (chelator of extracellular calcium) and lanthanum chloride (calcium channels blocker). Pretreatment of coleoptiles with the ionol, imidazole, EGTA and LaC3l3 also partially removed the effect of increase of their resistance to the damaging heating caused by exogenous JA. It is supposed that the ROS generated with participation NADPH-oxidase, which activity depends on the receipt of calcium ions from extracellular space in the cytosol, are involved in realization of physiological effects of JA.
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[茉莉酸诱导植物细胞耐热性的活性氧形式和钙离子作为可能的中介]。
研究了活性氧(ROS)和钙离子参与实现外源茉莉酸(JA)对小麦胚囊耐热性的影响。1 μ m茉莉酸的影响使胚囊中超氧阴离子自由基(O2*-)和过氧化氢的生成过渡性增强,并在处理开始后15-30分钟内达到最大值。在JA处理胚芽后1小时内,超氧化物歧化酶(SOD)活性明显升高。随后(处理开始后5-24小时内),实验变异体胚囊ROS生成降低,SOD活性接近控制值。抗氧化离子醇可抑制JA诱导的超氧自由基生成,而咪唑(nadph氧化酶抑制剂)、EGTA(细胞外钙螯合剂)和氯化镧(钙通道阻滞剂)可部分抑制JA诱导的超氧自由基生成。用离子醇、咪唑、EGTA和LaC3l3对胚芽包进行预处理,也部分地消除了外源JA对胚芽包抗热损伤的影响。据推测,在nadph氧化酶参与下产生的ROS参与了JA生理作用的实现,其活性依赖于细胞质中从胞外空间接收钙离子。
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