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Supplemental UV-A and UV-B Affect the Nutritional Quality of Lettuce and Tomato: Health-Promoting Phytochemicals and Essential Nutrients

机译:补充UV-A和UV-B会影响生菜和番茄的营养品质:健康促进植物化学和必需营养素

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UV radiation plays an important role not only in plant growth and development but also in the accumulation of essential nutrients and health-promoting phytochemicals in plants. The main objective of this study was to examine the effects of supplemental UV-A, UV-B, and UV-AB on the nutritional quality of lettuce ( Lactuca sativa , cv. red leaf “ New Red Fire ” and green leaf “ Two Star ” ) and tomato ( Solanum lycopersicum L., cv. BHN-589) grown in a greenhouse. Supplemental UV radiation was provided by UV lamps 5 - 6 days prior to harvest. Supplemental UV-A produced higher accumulation of total phenolic compounds and higher antioxidant capacity in red leaf lettuce compared to other treatments. Overall, supplemental UV-A produced a stronger response than other UV treatments and control in the accumulation of many phenolic compounds including luteolin-7-glucoside, quecetin-3-glucoside, and apigenin-3-glucoside in red leaf lettuce. However, UV-B and UV-AB had a negative response in the accumulation of many phenolic compounds including chlorogenic acid, luteolin-7-glucoside, quercetin-3-glucoside, and apigenin-3-glucoside in both red and green leaf lettuce varieties. In tomato fruits, supplemental UV-A had no effect on their total phenolic concentration. However, supplemental UV-B radiation for 3 h or UV-AB radiation for 9 h exposure produced higher total phenolic concentration in the fruits compared to other supplemental UV treatments. Supplemental UV-AB (3 hexposure) was generally more effective than other UV treatments in increasing the accumulation of a number of phenolic compounds including chlorogenic acid, caffeic acid, chicoric acid, luteolin-7-glucoside, and other flavonoids in ripe tomato fruits. Supplemental UV-A produced higher accumulation of carotenoids including lutein and β -carotene than other supplemental UV treatments, while supplemental UV-AB increased the accumulation of lycopene in fully ripe tomatoes. With regard to the essential nutrients, green leaf lettuce was more responsive to the supplemental UV treatments than red leaf lettuce. All the supplemental UV treatments produced an increase in protein concentration in the leaves of green leaf lettuce. However, supplemental UV-AB produced a stronger response compared to the control and other UV treatments in increasing the accumulation of many nutrients including protein, phosphorus, potassium, sulfur, and zinc in green leaf lettuce “ Two Star ” . Supplemental UV-treatments did not affect the accumulation of any essential nutrients in fully ripe tomato fruits. The results show that supplemental UV enhances the nutritional quality of lettuce in relation to both health-promoting phytochemicals and essential nutrients. Similarly, supplemental UV enhances nutritional quality in tomato fruits with higher accumulation of both phenolic compounds and carotenoids than does the control treatment.
机译:紫外线辐射不仅在植物生长和发展中发挥着重要作用,而且在植物中的基本营养素积累和促进植物中的植物化学植物的积累中起着重要作用。本研究的主要目的是研究补充紫外-A,UV-A,UV-A和UV-AB对莴苣营养品质的影响( Lactuca Sativa,CV。红叶“新的红火”和绿叶“两星”)和番茄(茄属植物蛋白 L.,CV。BHN-589)在温室中生长。补充紫外线辐射由UV灯在收获前5-6天提供。与其他治疗相比,补充紫外线-A在红叶莴苣中产生的总酚类化合物和更高的抗氧化能力。总体而言,补充紫外线 - A产生比其他UV治疗和控制在许多酚醛化合物的积累中产生的较强的反应,包括拉特琳-7-葡糖苷,Quecetin-3-葡糖苷和红叶莴苣中的Apigenin-3-葡糖苷。然而,UV-B和UV-AB在许多酚醛化合物的积累中具有负响应,包括绿原酸,叶氏菌素-7-葡糖苷,槲皮素-3-葡糖苷和红色和绿叶莴苣品种中的Apigenin-3-葡糖苷。 。在番茄果实中,补充紫外线对它们的总酚醛浓度没有影响。然而,与其他补充紫外治疗相比,辅助UV-B辐射为3小时或uV-AB辐射9小时暴露的辐射产生较高的酚醛浓度。补充uV-AB(3个壮观)通常比其他UV治疗更有效地增加了许多酚类化合物的累积,包括绿原酸,咖啡酸,芳香酸,葡萄黄素-7-葡糖苷和成熟番茄果实中的其他黄酮类化合物。补充紫外线-A产生的类胡萝卜素的较高积累,包括叶黄素和β-羧烯,而不是其他补充紫外治疗,而补充紫外线Ab增加了番茄红素的累积在完全成熟的西红柿中。关于基本营养素,绿叶莴苣比红叶生菜更响应补充紫外线治疗。所有补充紫外治疗均产生了绿叶莴苣叶片中蛋白质浓度的增加。然而,与对照和其他UV治疗相比,补充uV-AB产生了更强的反应,以及在增加许多营养素的积累,包括蛋白质,磷,钾,硫和锌的绿叶生菜“两星”中的锌。补充紫外线治疗不会影响完全成熟的番茄水果中任何必需营养素的积累。结果表明,补充紫外线提高了植物植物的营养质量,促进了促进植物植物化学和基本营养素。同样,补充紫外线增强番茄水果中的营养质量,酚类化合物和类胡萝卜素的积累量高于对照处理。

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