首页> 外文期刊>Journal of pineal research >Melatonin applied to cucumber (Cucumis sativus L.) seeds improves germination during chilling stress.
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Melatonin applied to cucumber (Cucumis sativus L.) seeds improves germination during chilling stress.

机译:应用于黄瓜(Cucumis sativus L.)种子的褪黑素可改善寒冷胁迫下的发芽率。

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The relationship between germination and melatonin applied during osmo- and hydropriming was studied in cucumber seeds. The proportion of nuclei with different DNA contents, the mean ploidy and the (2C + 4C = 8C)/2C ratio in unprimed and primed, dry and imbibed at 10 degrees C seeds were established by flow cytometry. Thiobarbituric acid reactive substances and protein oxidation were also estimated. Melatonin and indole-3-acetic acid (IAA) concentrations in the seeds were determined using high-performance liquid chromatography with electrochemical detection. Being sensitive to chilling stress, seeds that germinated well (99%) at 25 degrees C showed only 30% germination at 15 degrees C, and almost no germination (4%) at 10 degrees C. Hydropriming in water improved seed germination to 50-60% at 15 degrees C and the addition of melatonin (25-100 M) also increased the rate of germination. Osmopriming in polyethylene glycol increased germination at 15 degrees C to 78%, and 98% when combined with 50 M melatonin. Osmoprimed seeds germinated even at 10 degrees C and reached 43%, and 83% when 50 M melatonin was applied. None of the treatments induced DNA synthesis, although during the first 24 hr of imbibition at 10 degrees C the mean ploidy and the (2C + 4C = 8C)/2C ratio increased, which is indicative of the advanced Phase II of germination. Hydro- and osmopriming slightly decreased IAA content in the seeds in most of the cases; only hydropriming with 100 and 500 M melatonin increased it. Melatonin protected membrane structure against peroxidation during chilling, but excessive melatonin levels in cucumber seeds (approximately 4 microg/g fresh weight) provoked oxidative changes in proteins. There is still lack of information explained clearly the role of melatonin in plant physiology. This molecule acts multidirectionally and usually is alliged to other compounds.
机译:在黄瓜种子中研究了渗透和加水引发过程中发芽与褪黑素之间的关系。通过流式细胞术确定了不同的DNA含量,平均倍性和在10摄氏度种子中未引发和引发,干燥和吸收的(2C + 4C = 8C)/ 2C比的核比例。还估计了硫代巴比妥酸的反应性物质和蛋白质的氧化。使用具有电化学检测功能的高效液相色谱法测定种子中的褪黑激素和吲哚-3-乙酸(IAA)浓度。对低温胁迫敏感,在25摄氏度发芽良好的种子(99%)在15摄氏度发芽的仅30%,而在10摄氏度发芽几乎没有发芽(4%)。加水引发将种子发芽提高至50-在15摄氏度下60%的温度和添加褪黑激素(25-100 M)也提高了发芽率。聚乙二醇中的渗透压可将15摄氏度的发芽率提高至78%,而与50 M褪黑素组合时发芽率则达到98%。渗透处理的种子即使在10摄氏度下也发芽,达到43%,而在施用50 M褪黑素时达到83%。尽管在10°C吸水的最初24小时内,平均倍性和(2C + 4C = 8C)/ 2C比值均增加,但没有任何一种处理能够诱导DNA合成,这表明萌发阶段II提前。在大多数情况下,注水和渗水可以使种子中的IAA含量略有降低。只有加100和500 M褪黑素的加氢引发可以增加它。褪黑素可保护膜结构在冷却过程中免受过氧化作用,但是黄瓜种子中过量的褪黑激素水平(约4微克/克鲜重)会引起蛋白质的氧化变化。仍然缺乏信息,清楚地解释了褪黑激素在植物生理中的作用。该分子具有多向作用,通常与其他化合物有关。

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