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Single Wavelengths of LED Light Supplement Promote the Biosynthesis of Major Cyclic Monoterpenes in Japanese Mint

机译:LED灯补充的单波长促进了日本薄荷的主要循环单调的生物合成

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摘要

Environmental light conditions influence the biosynthesis of monoterpenes in the mint plant. Cyclic terpenes, such as menthol, menthone, pulegone, and menthofuran, are major odor components synthesized in mint leaves. However, it is unclear how light for cultivation affects the contents of these compounds. Artificial lighting using light-emitting diodes (LEDs) for plant cultivation has the advantage of preferential wavelength control. Here, we monitored monoterpene contents in hydroponically cultivated Japanese mint leaves under blue, red, or far-red wavelengths of LED light supplements. Volatile cyclic monoterpenes, pulegone, menthone, menthol, and menthofuran were quantified using the head-space solid phase microextraction method. As a result, all light wavelengths promoted the biosynthesis of the compounds. Remarkably, two weeks of blue-light supplement increased all compounds: pulegone (362% increase compared to the control), menthofuran (285%), menthone (223%), and menthol (389%). Red light slightly promoted pulegone (256%), menthofuran (178%), and menthol (197%). Interestingly, the accumulation of menthone (229%) or menthofuran (339%) was observed with far-red light treatment. The quantification of glandular trichomes density revealed that no increase under light supplement was confirmed. Blue light treatment even suppressed the glandular trichome formation. No promotion of photosynthesis was observed by pulse-amplitude-modulation (PAM) fluorometry. The present result indicates that light supplements directly promoted the biosynthetic pathways of cyclic monoterpenes.
机译:环境光照条件影响薄荷植物中单萜的生物合成。循环萜烯,例如薄荷醇,灯盏花,瓜德酮和薄荷呋喃,是在薄荷叶中合成的主要气味成分。然而,目前尚不清楚培养的光线如何影响这些化合物的内容物。用于植物栽培的发光二极管(LED)的人工照明具有优先波长控制的优点。在这里,我们在LED灯补充剂的蓝色,红色或远红色波长下监测了在水块栽培日本薄荷叶中的单萜烯内容物。使用头部空间固相微萃取方法量化挥发性环状单波萜,瓜德酮,薄荷酮,薄荷醇和椎间呋喃。结果,所有光波长促进了化合物的生物合成。值得注意的是,两周的蓝光补充剂增加了所有化合物:瓜德酮(与对照相比362%),薄荷呋喃(285%),薄荷酮(223%)和薄荷醇(389%)。红光略有促进瓜德酮(256%),薄荷呋喃(178%)和薄荷醇(197%)。有趣的是,用远红光处理观察薄荷酮(229%)或薄荷呋喃(339%)的积累。腺体胎儿密度的定量表明,确认了在轻质补充下的增加。蓝光治疗甚至抑制了腺体的滴毛组。通过脉冲幅度调制(PAM)荧光测定法未观察到光合作用促进。本结果表明,光补充剂直接促进了环状单波通的生物合成途径。

著录项

  • 期刊名称 Plants
  • 作者单位
  • 年(卷),期 2021(10),7
  • 年度 2021
  • 页码 1420
  • 总页数 12
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:薄荷;单萜;固相微萃取(SPME);水培;LED补充;

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