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首页> 外文期刊>Weed Science: Journal of the Weed Science Society of America >Pericarp-mediated chemical dormancy controls the fruit germination of the invasive hoary cress (Lepidium draba), but not of hairy whitetop (Lepidium appelianum)
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Pericarp-mediated chemical dormancy controls the fruit germination of the invasive hoary cress (Lepidium draba), but not of hairy whitetop (Lepidium appelianum)

机译:果皮介导的化学休眠控制侵袭性核心水芹(Lepidium Draba)的水果萌发,但不是毛茸茸的白白(lepidium appelianum)

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摘要

This study provides a comparative analysis of the dormancy and germination mechanisms of the indehiscent fruits of hoary cress (Lepidium draba L.) and hairy whitetop (Lepidium appelianum Al-Shehbaz), two invasive weeds of the Brassicaceae. Germination assays comparing isolated seeds (manually removed from the fruits) and intact indehiscent fruits showed that the isolated seeds are nondormant and provided full germination for both species. In contrast to this, the species differed in the germination properties of their indehiscent fruits, in that L. appelianum fruits were nondormant, while the L. draba fruit coat (pericarp) conferred a coat-imposed dormancy. The pericarp of L. draba fresh fruit was water permeable, and neither mechanical scarification nor surface sterilization affected germination, supporting the concept that pericarp-mediated dormancy was not due to water impermeability or mechanical constraint. Washing of L. draba fruits with water, afterripening (dry storage), and treatment with gibberellin (GA) stimulated the germination of this species, all of which are indicative of physiological dormancy. Analyses of endogenous abscisic acid (ABA) and GA levels combined with treatment experiments with wash water from fresh and afterripened L. draba pericarps and with ABA dose-response quantification of germination revealed that ABA is a key component of a pericarp-mediated chemical dormancy in this species. Consistent with this, pericarp ABA levels decreased during afterripening and upon fruit washing, and isolated fresh or afterripened seeds did not differ in their ABA sensitivities. The possible roles of the ABA-mediated pericarp dormancy for the germination ecophysiology and weed management of these species are discussed.
机译:本研究提供了对核心(Draba L.)和毛茸茸的白叶(Lepidium Appelianum Al-Shehbaz),两种侵入性杂草的休眠和发芽机制的比较分析。萌发测定比较分离的种子(从水果中手动除去)和完整的关注果实表明,分离的种子是Nondormant并为两个物种提供全面的萌发。与此相反,本物种在其关注果实的发芽性质中不同,因为含量的水果是Nondormant,而L. Draba Fruit Coat(Pericarp)则赋予涂层突出的休眠。 L. Draba新鲜水果的果皮是水可渗透的,既不是机械划痕,也不会影响萌发,支持果皮介导的休眠患者的概念不是由于不渗透性或机械约束。用水洗涤L. Draba果实,后表面(干燥储存),与吉布林素(GA)的治疗刺激了该物种的萌发,所有这些都表明了生理休眠。与新鲜和后后裂片L. Draba Pericarps的洗涤水和ABA剂量 - 响应量化的内源性脱落酸(ABA)和GA水平与治疗实验相结合的分析显示,ABA是渗透介导的化学休眠的关键组分这个物种。与此一致,果皮ABA水平在后表面和水果洗涤过程中减少,并且分离的新鲜或后裂片种子在其ABA敏感性中没有差异。讨论了ABA介导的PericaRP休眠对这些物种发芽生理学和杂草管理的可能作用。

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