城市室内种植系统中抗氧化剂含量高的小麦草微绿

Myrea Chalil, K. Meitha, R. E. Putra, Fathia Aulia Rahmah, Ridho R Sinatra, Anindha Ajeng Putri Winanta
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引用次数: 1

摘要

城市生活方式等同于紧张的生活和久坐不动的习惯,导致慢性疾病如糖尿病和心血管相关疾病的增加。抗氧化剂以在压力或感染条件下通过淬灭自由基来维持细胞功能而闻名。新鲜水果和蔬菜是抗氧化剂的主要来源,但采收后的长时间运输系统可能会降低对城市人口的益处。因此,我们设计了一种在城市室内种植系统中生产高抗氧化小麦草的栽培方法。一般来说,植物需要波长为663和642nm(红色)和430nm和453nm(蓝色)的光来进行光合作用和产生次生代谢物,如抗氧化剂。我们采用RGB比分别为91R/9B、83R/17B、47R/53B、35R/65B的LED灯,白光作为对照。结果表明,91R/9B降低了植株鲜质量和叶绿素含量,这可能与抑制光合能力有关。有趣的是,我们发现35R/65B和83R/17B光组合分别显著(p<0.05)提高了类胡萝卜素和类黄酮含量。然而,所有处理的总抗氧化剂能力相似。类胡萝卜素和类黄酮是抗氧化剂,在降低慢性疾病风险方面发挥着重要作用,并具有抗病毒作用。这种小麦微绿栽培系统有望为城市人口提供常规的类胡萝卜素和类黄酮。此外,它还被认为更环保,因为它可以在有限的土地上(垂直)进行,并且可能使用更少的能源进行分配。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wheatgrass microgreen with high antioxidants content in an urban indoor farming system
Urban lifestyle is identical to stressful life and sedentary habit, leading to the increase of chronic conditions such as diabetes and cardiovascular-related diseases. Antioxidants are renowned for maintaining cellular function by quenching radicals produced in stressful conditions or infection. Fresh fruits and vegetables are the primary sources of antioxidants, but the long postharvest and transport system may reduce the benefits for the urban population. Hence, we designed a cultivation method to produce wheatgrass microgreens with high antioxidants in an urban indoor farming system. Generally, plants require light at the wavelength of 663 and 642 nm (red) and 430 nm and 453 nm (blue) to allow photosynthesis and production of secondary metabolites, such as antioxidants. We applied the LED lights with an RGB ratio of 91R/9B, 83R/17B, 47R/53B, 35R/65B, and white florescent as the control. Our results showed that 91R/9B reduced fresh mass and chlorophyll content, which might be due to the suppression of photosynthesis capacity. Interestingly, we found a significant (p<0.05) increase in carotenoids and flavonoid contents due to light combinations of 35R/65B and 83R/17B, respectively. However, the total antioxidants capacity was similar among all treatments. Carotenoids and flavonoids are among the antioxidants with a significant role in decreasing the risks of chronic diseases and their potential as antiviral agents. This cultivation system of wheat microgreen could be a promising solution to routinely supply carotenoids and flavonoids to the urban population. Further, it is also considered more environmentally friendly as it could be performed in a limited amount of land (vertically) and potentially use less energy for distribution.
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