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Growth and Phenolic Content of Sowthistle Grown in a Closed-type Plant Production System with a UV-A or UV-B Lamp

机译:在封闭型植物生产系统中使用UV-A或UV-B灯种植的ow草的生长和酚类含量

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This study was conducted to determine the effects of UV-A and UV-B wavelengths on the growth and content of antioxidant phenolic compounds in sowthistle (Ixeris dentata Nakai), a medicinal plant, grown in a closed plant-production system. In study I,sowthistle plants were continuously exposed to UV-A light. In study II, two UV treatments [repeated UV-B (R): 4 h.d~(-1) for 6 days, gradual UV-B (G): from 1 to 7 h.d~(-1) for 6 days] were applied to the sowthistle plants. As a result, contents of totalphenolics and antioxidants in UV-A-treated plants were significantly (50 and 30%, respectively) higher than those in the control plants after 3 d of UV treatment without growth inhibition. Moreover, plants continuously exposed to UV-A for 5 d had 50% higher total flavonoid content than the control. The phenylalanine ammonia-lyase (PAL) activity supported the accumulation of phytochemicals in plants exposed to UV-A. The UV-B (R) treatment led to a more rapid decrease in the chlorophyll fluorescence ratiothan UV-B (G) treatment. The UV-B (R) or UV-B (G) treatment produced more total phenolics, flavonoids, and antioxidants, although both UV-B treatments significantly inhibited plant growth measured at 2 days after treatment. The UV irradiation also enhanced PAL activity at 2 and 3 days after treatment, suggesting biosynthetic activation of secondary metabolites. Therefore, application of UV-A or UV-B light can be used as a strategy to improve antioxidant phenolic compounds of sowthistle plants grown inclosed plant production systems.
机译:进行这项研究是为了确定UV-A和UV-B波长对在封闭的植物生产系统中生长的药用植物长寿蓟(Ixeris dentata Nakai)中抗氧化剂酚类化合物的生长和含量的影响。在研究I中,s草植物不断暴露于UV-A光下。在研究II中,进行了两种紫外线处理[重复的UV-B(R):4 hd〜(-1)持续6天,逐渐的UV-B(G):从1到7 hd〜(-1)持续6天]。应用于豆草植物。结果,在没有生长抑制的情况下,经过UV-A处理的植物中3 d的总酚和抗氧化剂的含量显着高于对照植物(分别为50%和30%)。此外,连续暴露于UV-A 5天的植物的总黄酮含量比对照高50%。苯丙氨酸氨裂合酶(PAL)的活性支持了暴露于UV-A的植物中植物化学物质的积累。与UV-B(G)处理相比,UV-B(R)处理导致叶绿素荧光比率的下降更快。 UV-B(R)或UV-B(G)处理产生了更多的总酚,类黄酮和抗氧化剂,尽管两种UV-B处理均显着抑制了处理后2天的植物生长。在处理后的第2天和第3天,紫外线辐射还增强了PAL活性,表明次生代谢产物的生物合成活化。因此,UV-A或UV-B光的施加可以用作改善封闭植物生产系统中生长的so植物的抗氧化剂酚类化合物的策略。

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