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首页> 外文期刊>Acta Horticulturae >Effect of UV light on phytochemical accumulation and expression of anthocyanin biosynthesis genes in red leaf lettuce
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Effect of UV light on phytochemical accumulation and expression of anthocyanin biosynthesis genes in red leaf lettuce

机译:紫外线对红叶莴苣植物化学物质积累和花色苷生物合成基因表达的影响

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摘要

Light manipulation is a key environmental control method to increase functional phytochemical concentrations and antioxidant capacity in leaves of leafy vegetables. Here, we evaluated the effect of UV light on the accumulation of functional phytochemicals in the leaves of red leaf lettuce. We developed a novel lighting system, consisting of UV LEDs as a UV light source and red LEDs as a photosynthetic light source. Red leaf lettuce grown under white light was used as the plant material. Three peak wavelengths (310, 325, and 340 nm) of UV lights at 0.5 W m2 for 16 h were added to the white light for 3 d prior to harvest. Anthocyanin concentration and ORAC value of the leaves were measured every 8 h. mRNA gene expression of chalcone synthase (CHS) and the flavonoid 3-O-glucosyltransferase (UFGT) were also analyzed every 8 h. Anthocyanin concentration was significantly higher at 310 nm compared with 325 and 340 nm. Total ORAC values of the UV treatments were higher than in the control. CHS was highest at310 nm, followed by 325 nm. UFGT increased with time, similarly to the anthocyanin concentration. These results indicated that UV-B light stimulated the biosynthesis of anthocyanin and other antioxidant polyphenols. From this research, we concluded thataddition of UV light 1 to 3 d prior to harvest is effective for the production of functional phytochemical rich lettuce.
机译:调光是增加叶菜类蔬菜叶片功能性植物化学成分和抗氧化能力的关键环境控制方法。在这里,我们评估了紫外线对红叶生菜叶片中功能性植物化学物质积累的影响。我们开发了一种新颖的照明系统,该系统由作为紫外线光源的UV LED和作为光合作用光源的红色LED组成。在白光下生长的红色莴苣用作植物材料。在收获前,将0.5 W m2的16个小时的三个峰值波长(310、325和340 nm)的UV光添加到白光中持续3 d。每8小时测量一次叶片的花色苷浓度和ORAC值。每8 h还分析查尔酮合酶(CHS)和类黄酮3-O-葡萄糖转移酶(UFGT)的mRNA基因表达。与325和340 nm相比,在310 nm处的花青素浓度显着更高。紫外线处理的总ORAC值高于对照。 CHS在310 nm处最高,然后是325 nm。 UFGT随时间增加,与花青素浓度相似。这些结果表明,UV-B光刺激了花色苷和其他抗氧化剂多酚的生物合成。从这项研究中,我们得出结论,收获前1至3 d加入紫外线对于生产功能丰富的植物化学生菜是有效的。

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