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UV-B 和 UV-C 光谱补充对生菜品种抗氧化特性和光合作用活性的影响。

Effects of UV-B and UV-C Spectrum Supplementation on the Antioxidant Properties and Photosynthetic Activity of Lettuce Cultivars.

机构信息

Department of Environmental Biology, Jan Kochanowski University of Kielce, Uniwersytecka 7, 25-406 Kielce, Poland.

Institute of Chemistry, Jan Kochanowski University of Kielce, Uniwersytecka 7, 25-406 Kielce, Poland.

出版信息

Int J Mol Sci. 2024 Aug 27;25(17):9298. doi: 10.3390/ijms25179298.

Abstract

Indoor farming systems enable plant production in precisely controlled environments. However, implementing stable growth conditions and the absence of stress stimulants can weaken plants' defense responses and limit the accumulation of bioactive, health-beneficial phytochemicals. A potential solution is the controlled application of stressors, such as supplemental ultraviolet (UV) light. To this end, we analyzed the efficiency of short-term pre-harvest supplementation of the red-green-blue (RGB, LED) spectrum with ultraviolet B (UV-B) or C (UV-C) light to boost phytochemical synthesis. Additionally, given the biological harm of UV radiation due to high-energy photons, we monitored plants' photosynthetic activity during treatment and their morphology as well as sensory attributes after the treatment. Our analyses showed that UV-B radiation did not negatively impact photosynthetic activity while significantly increasing the overall antioxidant potential of lettuce through enhanced levels of secondary metabolites (total phenolics, flavonoids, anthocyanins), carotenoids, and ascorbic acid. On the contrary, UV-C radiation-induced anthocyanin accumulation in the green leaf cultivar significantly harmed the photosynthetic apparatus and limited plant growth. Taken together, we showed that short-term UV-B light supplementation is an efficient method for lettuce biofortification with healthy phytochemicals, while UV-C treatment is not recommended due to the negative impact on the quality (morphology, sensory properties) of the obtained leafy products. These results are crucial for understanding the potential of UV light supplementation for producing functional plants.

摘要

室内种植系统能够在精确控制的环境中进行植物生产。然而,实施稳定的生长条件和消除胁迫刺激物可能会削弱植物的防御反应,并限制生物活性、有益健康的植物化学物质的积累。一种潜在的解决方案是控制应用胁迫物,如补充紫外(UV)光。为此,我们分析了在收获前短期补充红-绿-蓝(RGB,LED)光谱与 UV-B 或 UV-C 光以促进植物化学物质合成的效率。此外,鉴于高能光子的 UV 辐射的生物学危害,我们在处理过程中监测了植物的光合作用活性,以及处理后它们的形态和感官属性。我们的分析表明,UV-B 辐射不会对光合作用活性产生负面影响,同时通过增强次生代谢物(总酚类、类黄酮、花青素)、类胡萝卜素和抗坏血酸的水平,显著提高生菜的整体抗氧化能力。相反,UV-C 辐射诱导绿叶品种的花青素积累显著损害了光合作用装置并限制了植物生长。总之,我们表明,短期 UV-B 光补充是生菜生物强化与健康植物化学物质的有效方法,而由于对获得的叶菜产品的质量(形态、感官特性)的负面影响,不建议使用 UV-C 处理。这些结果对于理解 UV 光补充生产功能性植物的潜力至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a68d/11394776/4b4485426a48/ijms-25-09298-g001.jpg

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