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Anthocyanin concentration and antioxidant activity in light-emitting diode (LED)-treated apples in a greenhouse environmental control system

机译:温室环境控制系统中发光二极管(LED)处理的苹果中的花色苷浓度和抗氧化活性

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Introduction. Anthocyanins are a group of flavonoids, and their synthesis is influenced by external and internal factors such as light, temperature, phytohormones and sugar concentration. A high anthocyanin concentration, which is related to redder coloration, is one of the factors of high-quality fruit. The effects of LED irradiation on the anthocyanin concentration and enzymatic and antioxidant activities in apple skin were studied. Materials and methods. Nine 8-year-old 'Tsugaru' apple trees (Malus domestica Borkh.) grafted onto Malling26 (M. 26 EMLA) rootstocks planted in 45-L plastic pots covered with polyvinyl film (90% transmittance) and grown in a greenhouse were used. The effects of red or blue light-emitting diode (LED) irradiation on anthocyanin accumulation, the expression of MdMYB10 and UDP-glucose-flavonoid 3-O-glucosyltransferase (MdUFGT) and superoxide anion radical (O-2(-)) scavenging activity in the skin of 'Tsugaru' apples were investigated under early heating cultivation in a greenhouse. Results and discussion. The anthocyanin concentrations in red LEDtreated apples were increased compared with those of the blue LEDtreated apples and the untreated control at 130 days after full bloom (DAFB). The relative expression of MdMYB10 and MdUFGT genes at 130 DAFB was also highest in the skin of apples treated with red LED light. The skin of apple fruits treated with red or blue LED light showed significantly low EC(50)values. Conclusion. These results suggest that red LED irradiation may be used in a controlled environment such as a greenhouse to increase the anthocyanin synthesis and antioxidant activity in apple skin.
机译:介绍。花青素是一组类黄酮,其合成受外部和内部因素(例如光,温度,植物激素和糖浓度)的影响。花色苷浓度高与变红有关,是高品质水果的因素之一。研究了LED辐射对苹果皮中花色苷浓度以及酶和抗氧化活性的影响。材料和方法。使用9棵8岁的'Tsugaru'苹果树(Malus domestica Borkh。)嫁接到Malling26(M.26 EMLA)砧木上,该砧木种植在覆盖有聚乙烯薄膜(透光率90%)的45 L塑料盆中,并在温室中生长。 。红色或蓝色发光二极管(LED)辐射对花色苷积累,MdMYB10和UDP-葡萄糖-类黄酮3-O-葡萄糖基转移酶(MdUFGT)的表达以及超氧阴离子自由基(O-2(-))清除活性的影响在“ Tsugaru”苹果皮中进行了早期温室加热栽培研究。结果与讨论。在盛开后130天(DAFB),红色LED处理过的苹果中的花青素浓度比蓝色LED处理过的苹果和未经处理的对照高。 MdMYB10和MdUFGT基因在130 DAFB的相对表达在用红色LED灯处理的苹果皮肤中也最高。用红色或蓝色LED灯处理的苹果果实的皮肤显示出极低的EC(50)值。结论。这些结果表明,红色LED辐射可用于受控环境(例如温室)中,以增加苹果皮中的花色苷合成和抗氧化活性。

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