Department of Bioscience and Biotechnology, Konkuk University, Seoul 05029, Korea.
National Institute of Agricultural Sciences, Rural Development Administration, Wanju 55365, Korea.
Molecules. 2020 Oct 14;25(20):4714. doi: 10.3390/molecules25204714.
In order to achieve premium quality with crop production, techniques involving the adjustment of nutrient supply and/or supplemental lighting with specific light quality have been applied. To examine the effects of low mineral supply and supplemental lighting, we performed non-targeted metabolite profiling of leaves and stems of the medicinal herb , grown under a lower (0.75×) and lowest (0.1×) supply of different minerals (N, K, or Mg) and under supplemental light-emitting diode (LED) lighting (red, blue, or red-blue combination). The lowest N supply increased flavonoids, and the lowest K or Mg slightly increased rosmarinic acid and some flavonoids in the leaves and stems. Supplemental LED lighting conditions (red, blue, or red-blue combination) significantly increased the contents of chlorophyll, most cinnamic acid derivatives, and rosmarinic acid in the leaves. LED lighting with either blue or the red-blue combination increased antioxidant activity compared with the control group without LED supplementation. The present study demonstrates that the cultivation of under low mineral supply and supplemental LED lighting conditions affected metabolic compositions, and we carefully suggest that an adjustment of minerals and light sources could be applied to enhance the levels of targeted metabolites in perilla.
为了实现作物生产的优质目标,已经应用了涉及调整养分供应和/或补充特定光质的光照的技术。为了研究低矿物质供应和补充光照的影响,我们对在较低(0.75×)和最低(0.1×)供应不同矿物质(N、K 或 Mg)以及补充发光二极管(LED)照明(红、蓝或红蓝组合)下生长的药用植物 的叶片和茎进行了非靶向代谢物谱分析。最低 N 供应增加了类黄酮,而最低 K 或 Mg 略微增加了叶片和茎中的迷迭香酸和一些类黄酮。补充 LED 照明条件(红、蓝或红蓝组合)显著增加了叶片中叶绿素、大多数肉桂酸衍生物和迷迭香酸的含量。与没有 LED 补充的对照组相比,LED 照明中的蓝色或红蓝组合增加了抗氧化活性。本研究表明,在低矿物质供应和补充 LED 照明条件下栽培 会影响代谢成分,我们谨慎地建议可以调整矿物质和光源以提高紫苏中目标代谢物的水平。