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A Novel Cropping Method for Production of High Functioning Crops by Utilizing On-site Solar Energy

机译:利用现场太阳能生产高功能农作物的新方法

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The utilization efficiency of solar energy through photosynthesis by crops is only a few percent at most. Therefore, most solar energy in the field (on-site) remains unused. Plants are, however, able to use certain types of monochromatic light as an environmental signal, and they exhibit various physiological responses to even small amounts of the light. In particular, the significant induction of secondary metabolite production by blue light is well documented. Here, we propose a novel cropping method where unused solar energy is captured on-site by solar cells and converted to monochromatic light by using LEDs. The crops are then irradiated to stimulate enhanced production of secondary metabolites, thus improving crop function without the need for an external energy source. In this study, the effect of blue light on the production of functional secondary metabolites was evaluated in perilla (Perilla frutescens var. crispa f. purpurea), a traditional medicinal crop in Japan. Perilla leaves contain several functional substances such as perillaldehyde, rosmarinic acid, and anthocyanins, which have notable stomachic, antipyretic, detoxification, sedation, and diuretic efficacy. Plants were grown under natural daylight supplemented with blue light irradiation (460 nm, approx. 10 umol/m~2/s, 24 h,) for 108 days before harvest. Control plants were grown without supplemental lighting. The content ratio of perillaldehyde in plants grown with blue light was 60% higher at harvest than in the controls. Moreover, in the vegetative growth stage, the perillaldehyde content increased significantly after only three days of blue light irradiation. These findings suggest that the present approach will benefit agricultural practices in developing countries through more efficient usage of on-site solar energy.
机译:作物通过光合作用对太阳能的利用效率最多仅为百分之几。因此,现场(现场)的大多数太阳能都未被使用。然而,植物能够将某些类型的单色光用作环境信号,并且它们甚至对少量的光也表现出各种生理反应。特别是,有充分的文献证明蓝光显着诱导了次级代谢产物的产生。在这里,我们提出了一种新颖的种植方法,其中未使用的太阳能被太阳能电池现场捕获,并通过使用LED转换为单色光。然后,对农作物进行辐照以刺激次生代谢产物的产生,从而改善农作物的功能,而无需外部能源。在这项研究中,对日本传统药用作物紫苏(Perilla frutescens var。crispa f。purpurea)中的蓝光对功能性次级代谢产物产生的影响进行了评估。紫苏叶含有几种功能性物质,例如紫苏醛,迷迭香酸和花色苷,具有显着的健胃,解热,排毒,镇静和利尿功效。在收获前,将植物在补充了蓝光(460 nm,约10 umol / m〜2 / s,24 h)的自然光下生长108天。对照植物在没有辅助照明的情况下生长。收获后,与对照相比,在蓝光下生长的植物中紫苏醛的含量比高60%。此外,在营养生长阶段,仅在蓝光照射三天后,紫苏醛含量显着增加。这些发现表明,通过更有效地利用现场太阳能,本方法将有益于发展中国家的农业实践。

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