首页> 外文期刊>The Philippine Agricultural Scientist >Changes in the morphology of the apical meristem and the levels of endogenous hormones during flower bud development of different lily (Lilium) cultivars.
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Changes in the morphology of the apical meristem and the levels of endogenous hormones during flower bud development of different lily (Lilium) cultivars.

机译:不同百合(Lilium)品种花芽发育过程中顶端分生组织的形态变化和内源激素水平的变化。

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摘要

The morphological and hormonal changes during flower bud differentiation and development in four important groups of modern lily (Lilium) cultivars (Oriental, Longiflorum, Asiatic and Oriental x Trumpet hybrids) were determined. The stem apices of eight lily hybrids ('Loreto', 'Tresor', 'Siberia', 'Sorbonne', 'Dolcetto', 'White Heaven', 'Candy Club' and 'Bonbini') were morphologically examined using a stereomicroscope. The levels of the endogenous hormones abscisic acid (ABA), indole-3-acetic acid (IAA), zeatin riboside (ZR) and gibberellic acid (GA3) were analyzed in a representative hybrid, the Oriental lily 'Sorbonne'. The morphological progress of flower bud differentiation varied considerably among the eight lily hybrids, particularly in terms of the onset of flower bud initiation. The earlier the flower bud initiation, the earlier the flowering. Data on the timing of flower bud initiation and development suggest the possible control of the processes by plant hormones. IAA and ZR may work synergistically during flower bud initiation while GA3 may enhance flower bud development. A decrease in the IAA and ZR levels before flower bud differentiation and an increase in the ABA and GA3 levels of the stem apices after flower bud differentiation may promote flower bud formation.
机译:确定了现代百合(Lilium)的四个重要组(东方,Longiflorum,Asiatic和Oriental x Trumpet杂种)中花蕾分化和发育过程中的形态和激素变化。使用体视显微镜对八种百合杂种(“洛雷托”,“特雷索”,“西伯利亚”,“索邦”,“多尔切托”,“白天堂”,“糖果俱乐部”和“邦比尼”)的茎尖进行了形态学检查。在代表性的杂交种Oriental中分析了内源激素脱落酸(ABA),吲哚-3-乙酸(IAA),玉米蛋白核糖苷(ZR)和赤霉素(GA 3 )的水平莉莉“索邦”。在八个百合杂种中,花芽分化的形态学进展差异很大,特别是在花芽萌发的开始方面。花芽萌芽越早,开花就越早。关于花芽萌芽和发育的时间的数据表明,植物激素可能控制了这些过程。 IAA和ZR可能在花蕾萌发期间协同工作,而GA 3 可能会促进花蕾发育。花芽分化前IAA和ZR水平降低,花芽分化后茎尖ABA和GA 3 水平升高可能促进花芽形成。

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