首页> 外文期刊>Journal of Plant Growth Regulation >The Cold Awakening of Doritaenopsis 'Tinny Tender' Orchid Flowers: The Role of Leaves in Cold-induced Bud Dormancy Release
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The Cold Awakening of Doritaenopsis 'Tinny Tender' Orchid Flowers: The Role of Leaves in Cold-induced Bud Dormancy Release

机译:Doritaenopsis'Tinny温柔'兰花花的冷唤醒:叶子在冷诱导的芽休眠释放中的作用

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摘要

Massive flowering of tropical Phalaenopsis orchids is coordinated by the cold-induced release of reproductive bud dormancy. Light and temperature are the two key factors integrated by the dormancy mechanism to both stop and reactivate the meristem development of many other angiosperm species, including fruit trees and ornamental plants. It is well established that leaves and roots play a major role in inducing flower development; however, currently, knowledge of molecular events associated with reproductive bud dormancy release in organs other than the bud is limited. Using differential gene expression, we have shown that the leaves of a hybrid of Phalaenopsis species, Doritaenopsis 'Tinny Tender', undergo major metabolic modifications. These changes result in the production of sucrose and amino acids, both of which can sustain bud outgrowth, and auxin and ethylene, which may play important roles in awaking the dormant buds. Intake of abscisic acid and synthesis of the hormone jasmonate may also explain the inhibition of vegetative growth that coincides with bud growth. Interestingly, many genes that were upregulated by cold treatment are homologous for genes involved in flower induction and vernalization in Arabidopsis, indicating that processes regulating flowering induction and those regulating reproductive bud dormancy release may use similar pathways and effector molecules.
机译:热带蝴蝶兰兰花的大量开花与冷诱导的生殖芽休眠释放有关。光和温度是休眠机制整合的两个关键因素,它们既阻止又激活了许多其他被子植物的分生组织发育,包括果树和观赏植物。众所周知,叶和根在诱导花的发育中起主要作用。然而,目前,与芽以外的器官中的生殖芽休眠释放相关的分子事件的知识是有限的。使用差异基因表达,我们已经证明蝴蝶兰物种的杂种,Doritaenopsis'Tinny Tender'的叶子经历了主要的代谢修饰。这些变化导致蔗糖和氨基酸(两者都可以维持芽的生长)以及生长素和乙烯的产生,这可能在唤醒休眠芽中起重要作用。摄入脱落酸和茉莉酸激素的合成也可以解释对与芽生长同时发生的营养生长的抑制。有趣的是,许多通过冷处理上调的基因与拟南芥中涉及花诱导和春化的基因同源,这表明调节开花诱导的过程和调节生殖芽休眠释放的过程可能使用相似的途径和效应分子。

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