首页> 外文期刊>Journal of Agricultural and Food Chemistry >Ultraviolet-B and Photosynthetically Active Radiation Interactively Affect Yield and Pattern of Monoterpenes in Leaves of Peppermint (Mentha x piperita L.)
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Ultraviolet-B and Photosynthetically Active Radiation Interactively Affect Yield and Pattern of Monoterpenes in Leaves of Peppermint (Mentha x piperita L.)

机译:紫外线-B和光合有效辐射交互作用影响薄荷叶(Mentha x piperita L.)的单萜的产量和模式。

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Solar radiation is a key environmental signal in regulation of plant secondary metabolism. Since metabolic responses to light and ultraviolet (UV) radiation exposure are known to depend on the ratio of spectral ranges (e.g., UV-B/PAR), we examined effects of different UV-B radiation (280-315 nm) and photosynthetically active radiation (PAR, 400-700 nm) levels and ratios on yield and pattern of monoterpenoid essential oil of peppermint. Experiments were performed in exposure chambers, technically equipped for realistic simulation of natural climate and radiation. The experimental design comprised four irradiation regimes created by the combination of two PAR levels including or excluding UV-B radiation. During flowering, the highest essential oil yield was achieved at high PAR (1150 μmol m~(-2) s~(-1)) and approximate ambient UV-B radiation (0.6 W m~(-2)). Regarding the monoterpene pattern, low PAR (550 μmol m~(-2) s~(-1)) and the absence of UV-B radiation led to reduced menthol and increased menthone contents and thereby to a substantial decrease in oil quality. Essential oil yield could not be correlated with density or diameter of peltate glandular trichomes, the epidermal structures specialized on biosynthesis, and the accumulation of monoterpenes. The present results lead to the conclusion that production of high quality oils (fulfilling the requirements of the Pharmacopoeia Europaea) requires high levels of natural sunlight. In protected cultivation, the use of UV-B transmitting covering materials is therefore highly recommended.
机译:太阳辐射是调节植物次生代谢的关键环境信号。由于已知对光和紫外线(UV)辐射的代谢反应取决于光谱范围的比率(例如UV-B / PAR),因此我们研究了不同UV-B辐射(280-315 nm)和光合活性的影响薄荷的单萜类香精油的辐射(PAR,400-700 nm)水平和比例及比例。实验是在暴露室中进行的,暴露室的技术水平可以模拟自然气候和辐射。实验设计包括由两个PAR水平(包括或不包括UV-B辐射)的组合产生的四个辐照方案。在开花期间,在高PAR(1150μmolm〜(-2)s〜(-1))和近似环境UV-B辐射(0.6 W m〜(-2))下,香精油产量最高。关于单萜图案,低PAR(550μmolm〜(-2)s〜(-1))和不存在UV-B辐射导致薄荷醇减少和薄荷酮含量增加,从而导致油质大幅下降。精油产量与轮状腺毛状体的密度或直径,专门用于生物合成的表皮结构以及单萜的积累均无关。本结果得出这样的结论:生产高质量的油(满足欧洲药典的要求)需要大量的自然阳光。因此,在受保护的栽培中,强烈建议使用能透射UV-B的覆盖材料。

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