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首页> 外文期刊>Plant physiology >Role of Smoke Stimulatory and Inhibitory Biomolecules in Phytochrome-Regulated Seed Germination of Lactuca sativa
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Role of Smoke Stimulatory and Inhibitory Biomolecules in Phytochrome-Regulated Seed Germination of Lactuca sativa

机译:烟雾刺激和抑制生物分子在Lactuca Sativa植物调节种子萌发中的作用

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摘要

The biologically active molecules karrikinolide (KAR(1)) and trimethylbutenolide (TMB) present in wildfire smoke play a key role in regulating seed germination of many plant species. To elucidate the physiological mechanism by which smoke-water (SW), KAR(1), and TMB regulate seed germination in photosensitive 'Grand Rapids' lettuce (Lactuca sativa), we investigated levels of the dormancy-inducing hormone abscisic acid (ABA), three auxin catabolites, and cytokinins (26 isoprenoid and four aromatic) in response to these compounds. Activity of the hydrolytic enzymes a-amylase and lipase along with stored food reserves (lipids, carbohydrate, starch, and protein) were also assessed. The smoke compounds precisely regulated ABA and hydrolytic enzymes under all light conditions. ABA levels under red (R) light were not significantly different in seeds treated with TMB or water. However, TMBtreated seeds showed significantly inhibited germination (33%) compared with water controls (100%). KAR(1) significantly enhanced total isoprenoid cytokinins under dark conditions in comparison with other treatments; however, there was no significant effect under R light. Enhanced levels of indole-3-aspartic acid (an indicator of high indole-3-acetic acid accumulation, which inhibits lettuce seed germination) and absence of trans-zeatin and trans-zeatin riboside (the most active cytokinins) in TMB-treated seeds might be responsible for reduced germination under R light. Our results demonstrate that SW and KAR(1) significantly promote lettuce seed germination by reducing levels of ABA and enhancing the activity of hydrolytic enzymes, which aids in mobilizing stored reserves. However, TMB inhibits germination by enhancing ABA levels and reducing the activity of hydrolytic enzymes.
机译:存在于野火烟雾中的生物活性分子Karrikinolide(Kar(1))和三甲基丁醇(TMB)在调节许多植物种类的种子萌发中起着关键作用。为了阐明烟雾水(SW),KAR(1)和TMB在光敏'Grand Rapids'生菜中调节种子萌发(Lactuca sativa)的生理机制,我们研究了诱导休眠诱导激素脱落酸(ABA)的水平,三种助体蛋白分解代谢物和细胞蛋白(26个异戊二烯和四个芳香),响应这些化合物。还评估了水解酶的活性酶A-淀粉酶和脂肪酶以及储存的食物储备(脂质,碳水化合物,淀粉和蛋白质)。烟雾化合物在所有光条件下精确地调节ABA和水解酶。红色(R)光下的ABA水平在用TMB或水处理的种子中没有显着差异。然而,与水对照(100%)相比,Tmbtreated Seeds显示出显着抑制的发芽(33%)。与其他治疗相比,KAR(1)显着增强了暗条件下的异戊二烯ins;但是,在r光下没有显着影响。增强吲哚-3-天冬氨酸的水平(高吲哚-3-乙酸积累的指标,抑制莴苣种子萌发)和在TMB处理的种子中没有反式酶和反式扎带核苷(最活跃的细胞质素)可能负责降低r光线的发芽。我们的结果表明,SW和KAR(1)通过降低ABA水平并增强水解酶的活性来显着促进生菜种子萌发,这有助于动员储存储存。然而,TMB通过增强ABA水平并降低水解酶的活性来抑制萌发。

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  • 来源
    《Plant physiology》 |2019年第2期|共13页
  • 作者单位

    Univ KwaZulu Natal Pietermaritzburg Sch Life Sci Res Ctr Plant Growth &

    Dev ZA-3209 Scottsville South Africa;

    Czech Acad Sci Inst Expt Bot Lab Growth Regulators CZ-78371 Olomouc Czech Republic;

    Univ KwaZulu Natal Pietermaritzburg Sch Life Sci Res Ctr Plant Growth &

    Dev ZA-3209 Scottsville South Africa;

    Czech Acad Sci Inst Expt Bot Lab Growth Regulators CZ-78371 Olomouc Czech Republic;

    Univ KwaZulu Natal Pietermaritzburg Sch Life Sci Res Ctr Plant Growth &

    Dev ZA-3209 Scottsville South Africa;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物生理学;
  • 关键词

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