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The Snapdragon LATE ELONGATED HYPOCOTYL Plays A Dual Role in Activating Floral Growth and Scent Emission

机译:Snapdragon晚细长的幼杆子在激活花卉生长和气味排放方面发挥了双重作用

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The plant circadian clock controls a large number of internal processes, including growth and metabolism. Scent emission displays a circadian pattern in many species such as the snapdragon. Here we show that knocking down LATE ELONGATED HYPOCOTYL in Antirrhinum majus affects growth and scent emission. In order to gain an understanding of the growth kinetics, we took a phenomic approach using in-house artificial vision systems, obtaining time-lapse videos. Wild type flowers showed a higher growth speed than knockdown plants. The maximal growth rate was decreased by 22% in plants with lower LHY expression. Floral volatiles were differentially affected as RNAi plants showed advanced emission of compounds synthesized from cinnamic acid and delayed emission of metabolites of benzoic acid. The monoterpenes myrcene and ocimene were delayed, whereas the sesquiterpene farnesene was advanced. Overall, transgenic lines showed an altered volatile emission pattern and displayed a modified scent profile. Our results show that AmLHY plays an important role in the quantitative and qualitative control of floral growth and scent emission.
机译:植物昼夜钟控制大量内部过程,包括生长和新陈代谢。香味排放在许多物种(如Snapdragon)上显示昼夜节奏模式。在这里,我们表明,突然敲击antIrrhinummum jajus的晚细长胚轴影响生长和气味排放。为了了解对生长动力学的理解,我们采用了一种使用内部人工视觉系统的现象方法,获得时间流逝视频。野生型花比敲低植物显示出更高的生长速度。 LHY表达较低的植物中,最大生长速率下降了22%。随着RNAi植物显示出从肉桂酸合成的化合物和苯甲酸代谢物的延迟排放的化合物的高级排放,花卉挥发物受到差异影响。单色杯牛丙烯和肾上腺素被延迟,而SesquiterPene endeneAne先进。总体而言,转基因线显示出改变的挥发性发射图案并显示了改进的气味曲线。我们的研究结果表明,Amlhy在花卉生长和气味排放的定量和定性控制中起着重要作用。

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