首页> 外文期刊>Acta Physiologiae Plantarum >Temperature effects on the reactive oxygen species formation and antioxidant defence in roots of two cucurbit species with contrasting root zone temperature optima.
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Temperature effects on the reactive oxygen species formation and antioxidant defence in roots of two cucurbit species with contrasting root zone temperature optima.

机译:温度对两种葫芦科植物根系中活性氧的形成和抗氧化防御能力的影响与最佳的根区温度形成对比。

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摘要

Suboptimal root zone temperature (14 degrees C) was imposed on chilling-sensitive cucumber (Cucumis sativus L.) and chilling-tolerant figleaf gourd (Cucurbita ficifolia Bouche) plants. Exposure of roots to low temperature for up to 10 days caused a strong growth inhibition in cucumber compared with figleaf gourd. Physiological analysis showed that generation of reactive oxygen species (ROS) such as hydrogen peroxide and superoxide anion was significantly induced in cucumber plants as fast as 1 day after low root zone temperature treatment. In addition to the significant induction of antioxidant superoxide dismutase activity, low root zone temperature also increased the mitochondrial electron transport allocated to alternative pathway while decreased cytochrome pathway salicylhydroxamic acid-resistant respiration. However, these defense responses could not compensate for the ROS production, resulting in membrane lipid peroxidation and loss of root cell viability in the low root zone temperature treated cucumber roots. In contrast, 14 degrees C root zone temperature had no significant effects on figleaf gourd plant growth, antioxidant enzymes, ROS levels and alternative respiratory pathway. Hence, difference in ROS metabolism would be associated with the remarkable difference in adaptability of cucumber and figleaf gourd plants in response to suboptimal root zone temperature condition.
机译:低温敏感的黄瓜( L.)和耐寒的无花果葫芦( Bouche)植物的根区温度低于最佳温度(14摄氏度)。与无花果葫芦相比,将根部暴露于低温长达10天会对黄瓜产生强烈的生长抑制作用。生理分析表明,在低根区温度处理后的第1天,黄瓜植株中会明显诱导产生过氧化氢和超氧阴离子等活性氧(ROS)。除显着诱导抗氧化剂超氧化物歧化酶活性外,低的根区温度还增加了分配给替代途径的线粒体电子转运,同时降低了对水杨酸羟肟酸抗性的细胞色素途径。但是,这些防御反应无法补偿ROS的产生,从而导致膜脂过氧化和低根区温度处理的黄瓜根中根细胞活力的丧失。相比之下,14摄氏度的根区温度对无花葫芦植物的生长,抗氧化酶,ROS水平和替代呼吸途径没有显着影响。因此,ROS代谢的差异将与黄瓜和非洲葫芦植物对次优根区温度条件的适应性显着差异相关。

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