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首页> 外文期刊>Planta >Changes in endogenous abscisic acid levels during dormancy release and maintenance of mature seeds: studies with the Cape Verde Islands ecotype, the dormant model of Arabidopsis thaliana
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Changes in endogenous abscisic acid levels during dormancy release and maintenance of mature seeds: studies with the Cape Verde Islands ecotype, the dormant model of Arabidopsis thaliana

机译:休眠释放和维持成熟种子过程中内源脱落酸水平的变化:佛得角群岛生态型的研究,拟南芥的休眠模型

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摘要

Mature seeds of the Cape Verde Islands (Cvi) ecotype of Arabidopsis thaliana (L.) Heynh. show a very marked dormancy. Dormant (D) seeds completely fail to germinate in conditions that are favourable for germination whereas non-dormant (ND) seeds germinate easily. Cvi seed dormancy is alleviated by after-ripening, stratification, and also by nitrate or fluridone treatment. Addition of gibberellins to D seeds does not suppress dormancy efficiently, suggesting that gibberellins are not directly involved in the breaking of dormancy. Dormancy expression of Cvi seeds is strongly dependent on temperature: D seeds do not germinate at warm temperatures (20–27°C) but do so easily at a low temperature (13°C) or when a fluridone treatment is given to D seeds sown at high temperature. To investigate the role of abscisic acid (ABA) in dormancy release and maintenance, we measured the ABA content in both ND and D seeds imbibed using various dormancy-breaking conditions. It was found that dry D seeds contained higher amounts of ABA than dry ND after-ripened seeds. During early imbibition in standard conditions, there was a decrease in ABA content in both seeds, the rate of which was slower in D seeds. Three days after sowing, the ABA content in D seeds increased specifically and then remained at a high level. When imbibed with fluridone, nitrate or stratified, the ABA content of D seeds decreased and reached a level very near to that of ND seeds. In contrast, gibberellic acid (GA3) treatment caused a transient increase in ABA content. When D seeds were sown at low optimal temperature their ABA content also decreased to the level observed in ND seeds. The present study indicates that Cvi D and ND seeds can be easily distinguished by their ability to synthesize ABA following imbibition. Treatments used here to break dormancy reduced the ABA level in imbibed D seeds to the level observed in ND seeds, with the exception of GA3 treatment, which was active in promoting germination only when ABA synthesis was inhibited.
机译:佛得角群岛(Cvi)生态型拟南芥(L.)Heynh的成熟种子。显示非常明显的休眠状态。休眠(D)种子在有利于发芽的条件下完全无法发芽,而非休眠(ND)种子则容易发芽。熟成后,分层以及硝酸盐或氟啶酮处理可减轻Cvi种子的休眠。向D种子中添加赤霉素不能有效地抑制休眠,这表明赤霉素不直接参与休眠的打破。 Cvi种子的休眠表达在很大程度上取决于温度:D种子在温暖的温度(20–27°C)下不会发芽,但在低温(13°C)或播种的D种子经过氟啶酮处理后很容易发芽。在高温下。为了研究脱落酸(ABA)在休眠释放和维持中的作用,我们使用各种打破休眠条件测量了吸收的ND和D种子中的ABA含量。已发现,干燥后的D种子比干燥后的ND种子含有更多的ABA。在标准条件下的早期吸水期间,两种种子中的ABA含量均下降,而D种子中的ABA含量下降较慢。播种三天后,D种子中的ABA含量特别增加,然后保持较高水平。当与氟啶酮,硝酸盐或分层吸收时,D种子的ABA含量降低,并达到非常接近ND种子的ABA含量。相反,赤霉素(GA3 )处理导致ABA含量短暂增加。在较低的最佳温度下播种D种子时,其ABA含量也降至ND种子中观察到的水平。本研究表明,Cvi D和ND种子可以通过吸收后合成ABA的能力轻松区分。除GA3 处理外,此处使用的打破休眠的处理将吸收的D种子中的ABA水平降低到ND种子中观察到的ABA水平,GA3 处理仅在抑制ABA合成时才具有促进发芽的作用。

著录项

  • 来源
    《Planta 》 |2004年第3期| 479-488| 共10页
  • 作者单位

    UER de Physiologie Végétale INA-PG UMR INRA-INAPG Biologie des Semences;

    UER de Physiologie Végétale INA-PG UMR INRA-INAPG Biologie des Semences;

    GEVES-SNES;

    UMR de Physiologie Cellulaire et Moléculaire des Plantes Laboratoire de Physiologie du Développement des Plantes Université Pierre et Marie Curie (PVI);

    UMR de Physiologie Cellulaire et Moléculaire des Plantes Laboratoire de Physiologie du Développement des Plantes Université Pierre et Marie Curie (PVI);

    UER de Physiologie Végétale INA-PG UMR INRA-INAPG Biologie des SemencesUMR INRA-INAPG Biologie des Semences;

    UER de Physiologie Végétale INA-PG UMR INRA-INAPG Biologie des SemencesUMR INRA-INAPG Biologie des Semences;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Abscisic acid; Arabidopsis; Dormancy; Gibberellin; Nitrate; Temperature;

    机译:脱落酸;拟南芥;休眠;赤霉素;硝酸盐;温度;

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