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Suboptimal Light Conditions Influence Source-Sink Metabolism during Flowering

机译:次优光照条件影响开花过程中的源库代谢

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摘要

Reliance on carbohydrates during flower forcing was investigated in one early and one late flowering cultivar of azalea (Rhododendron simsii hybrids). Carbohydrate accumulation, invertase activity, and expression of a purported sucrose synthase gene (RsSUS) was monitored during flower forcing under suboptimal (natural) and optimal (supplemental light) light conditions, after a cold treatment (7°C + dark) to break flower bud dormancy. Post-production sucrose metabolism and flowering quality was also assessed. Glucose and fructose concentrations and invertase activity increased in petals during flowering, while sucrose decreased. In suboptimal light conditions RsSUS expression in leaves increased as compared to optimal light conditions, indicating that plants in suboptimal light conditions have a strong demand for carbohydrates. However, carbohydrates in leaves were markedly lower in suboptimal light conditions compared to optimal light conditions. This resulted in poor flowering of plants in suboptimal light conditions. Post-production flowering relied on the stored leaf carbon, which could be accumulated under optimal light conditions in the greenhouse. These results show that flower opening in azalea relies on carbohydrates imported from leaves and is source-limiting under suboptimal light conditions.
机译:研究了在杜鹃花(杜鹃(Rhododendron simsii)杂种)的一种早期和晚期开花品种对强迫开花过程中碳水化合物的依赖性。在冷处理(7°C +暗)破坏花朵后,在次优(自然)和最佳(补充光照)光照条件下,在强迫开花期间监测碳水化合物的积累,转化酶活性和声称的蔗糖合酶基因(RsSUS)的表达。芽休眠。还评估了生产后的蔗糖代谢和开花质量。开花期间花瓣中的葡萄糖和果糖浓度以及转化酶活性增加,而蔗糖减少。在次优光照条件下,叶片中的RsSUS表达与最佳光照条件相比有所增加,这表明处于次优光照条件下的植物对碳水化合物的需求量很大。但是,与最佳光照条件相比,在次优光照条件下,叶片中的碳水化合物含量要低得多。这导致在次优光照条件下植物的开花不良。生产后的花期依赖于存储的叶片碳,碳可以在温室中最佳光照条件下积累。这些结果表明,杜鹃花的开花依赖于从叶片中导入的碳水化合物,并且在次优光照条件下是限制源的。

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