Institute of Applied Sciences and Intelligent Systems, National Council of Research of Italy (CNR), Pozzuoli, Italy.
Department of Pharmacy, University of Naples Federico II, Naples, Italy.
J Sci Food Agric. 2019 Dec;99(15):6931-6936. doi: 10.1002/jsfa.9980. Epub 2019 Sep 12.
The effects of ultraviolet B (UV-B) radiation on plants are well known and have recently attracted a great deal of attention due to the production of large quantities of secondary metabolites, which are very beneficial for human health. Recent studies have demonstrated the possibility of exploiting UV-B radiation to induce metabolic changes in fruit, vegetables, and herbs. The role of UV-B rays in inducing secondary plant metabolites is enhanced by new plastic films, which, as a result of their optical properties, permit the necessary dosage of UV-B to be transmitted into the greenhouse to stimulate such metabolites without altering the harvest.
The main goal of the present paper is to demonstrate that, by using a greenhouse plastic film with appropriate transmittance of UV-B for rocket salad cultivation, it is possible to increase the nutraceutical elements in comparison with the same species grown in absence of such radiation. Tests compared nutritional elements extracted from rocket salad grown under greenhouses covered with several plastic films differing in UV-B transmittance. We found that rocket salad grown under plastic with 27% UV-B transmittance exhibited very high luteolin and quercetin content in comparison with rocket salad cultivated under film blocking UV-B radiation.
Our experimental results confirm the possibility of exploiting UV-B radiation in the correct amounts by appropriate greenhouse plastic covers, to produce natural 'medicines' using the plants and to satisfy increasing consumer demand for natural health-promoting food products. © 2019 Society of Chemical Industry.
紫外线 B(UV-B)辐射对植物的影响是众所周知的,由于大量次生代谢物的产生,最近引起了极大的关注,这些次生代谢物对人类健康非常有益。最近的研究表明,利用 UV-B 辐射来诱导水果、蔬菜和草药的代谢变化是可行的。新型塑料薄膜增强了 UV-B 射线在诱导次生植物代谢物中的作用,由于其光学特性,这些薄膜允许必要剂量的 UV-B 透过温室,刺激这些代谢物的产生,而不会改变收获物。
本文的主要目的是证明,通过使用具有适当 UV-B 透射率的温室塑料薄膜来种植火箭生菜,可以与在没有这种辐射的情况下生长的同一种类相比,增加营养元素。测试比较了从在不同 UV-B 透射率的塑料薄膜覆盖的温室中生长的火箭生菜中提取的营养元素。我们发现,与在阻挡 UV-B 辐射的薄膜下种植的火箭生菜相比,在具有 27%UV-B 透射率的塑料下种植的火箭生菜中芦丁和槲皮素含量非常高。
我们的实验结果证实了通过适当的温室塑料覆盖物在正确的量上利用 UV-B 辐射的可能性,利用植物生产天然“药物”,并满足消费者对天然促进健康的食品的需求不断增长。© 2019 化学工业协会。