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首页> 外文期刊>The Journal of Horticultural Science & Biotechnology >Role of carbohydrates in flower bud opening in rose (Rosa hybrida L.).
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Role of carbohydrates in flower bud opening in rose (Rosa hybrida L.).

机译:碳水化合物在玫瑰(Rosa hybrida L.)花蕾开放中的作用。

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摘要

To explore the relationship between carbohydrate metabolism and flower bud opening in roses, experiments were conducted between 2003-2005 on two cultivars of cut-rose (Rosa hybrida L.), 'Grandgala' and 'First Red'. Flower stems were harvested at different developmental stages. Petals were separated from seven different petal whorls in flowers (outermost-to-innermost) of 'Grandgala' and 'First Red' at six developmental stages [S1, S2 and S3 represented attached blooms, and S4, S5 and S6 were detached (vase) blooms]. A substantial increase in starch accumulation was observed during the first three stages (S1-S3) of flower bud development, while a pattern of starch degradation was observed in the later developmental stages. Differential patterns of sugar accumulation were noted in the expanding petals of rose. Levels of non-reducing sugars and sucrose increased gradually with flower bud development up to stage S3 of flower bud opening. In contrast, levels of reducing sugars increased continuously during all six stages of flower bud development. The total sugar content of flower petals followed a similar pattern to that observed for reducing sugars. A close relationship was observed between sucrose accumulation and the activity of sucrose phosphate synthase (SPS). This is the first report of high SPS activity in rose petals, and provides preliminary evidence for differential enzyme activity during flower bud opening. Collectively, these data support the hypothesis that carbohydrates play an important role in flower bud opening in rose..
机译:为了探究玫瑰糖中碳水化合物代谢与花蕾开放之间的关系,在2003年至2005年之间对两个月季切花(Rosa hybrida L。),“ Grandgala”和“ First Red”品种进行了实验。花茎在不同的发育阶段收获。在六个发育阶段中,从“ Grandgala”和“ First Red”的花朵(从最外到内)的七个不同的花瓣螺纹中分离出花瓣,S1,S2和S3代表附着的花朵,S4,S5和S6脱离(花瓶)。在花芽发育的前三个阶段(S1-S3)观察到淀粉积累的显着增加,而在随后的发育阶段观察到淀粉降解的模式。在玫瑰的花瓣中发现了糖分积累的差异模式。随着花蕾的发育直至花蕾开放的S3期,非还原糖和蔗糖的含量逐渐增加。相反,在花芽发育的所有六个阶段中,还原糖的含量持续增加。花瓣中的总糖含量遵循与减少糖含量相似的模式。观察到蔗糖积累与蔗糖磷酸合酶(SPS)的活性之间存在密切关系。这是玫瑰花瓣中高SPS活性的第一份报道,并为花蕾开放过程中不同的酶活性提供了初步证据。总的来说,这些数据支持以下假设:碳水化合物在玫瑰的花蕾开放中起重要作用。

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