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首页> 外文期刊>Central European Journal of Biology >The impact of LED illumination on antioxidant properties of sprouted seeds.
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The impact of LED illumination on antioxidant properties of sprouted seeds.

机译:LED照明对发芽种子的抗氧化性能的影响。

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The objective of this study was to evaluate the effect of the light emitting diode (LED) spectra on the antioxidant properties of sprouted wheat (Triticum aestivum L.), radish (Raphanus sativus L.), and lentil (Lens esculenta Moenh.) seeds. Lighting experiments were performed under controlled conditions (PPFD - 100 micro mol m-2 s-1; 12 h photoperiod; 27 degrees C). The LED conditions used were: L1 - 638 nm; L2 - 455 nm, 638 nm, 669 nm, 731 nm (basal components); L3 - basal+385 nm; L4 - basal+510 nm and L5 - basal+595 nm. Wheat and lentil sprouts were shown to accumulate less phenolic compounds and were more sensitive to light spectral differences when compared to radish sprouts. The antioxidant properties and contents of antioxidant compounds in seeds germinated in the dark were significantly lower than LED treated seeds. The higher content of total phenols and significant increase in alpha-tocopherol and vitamin C concentration resulted in altered DPPH free-radical scavenging capacity. Therefore we conclude that the LED spectra, based on basal components supplemented with green (510 nm) light can improve the antioxidant properties of sprouted seeds of lentil and wheat. The highest antioxidant properties of radish seeds were caused by radiation with supplemental amber (595 nm) light.
机译:这项研究的目的是评估发光二极管(LED)光谱对发芽小麦( Triticum aestivum L.),萝卜( Raphanus sativus )抗氧化性能的影响。 > L.)和小扁豆( esculenta Moenh。)种子。在受控条件下(PPFD-100 micro mol m -2 s -1 ;光照时间为12 h; 27摄氏度)进行照明实验。使用的LED条件为:L1-638nm; L2-455 nm,638 nm,669 nm,731 nm(基本成分); L3-基底+385 nm; L4-基础+ 510nm和L5-基础+ 595nm。与萝卜芽相比,小麦和小扁豆芽中的酚类化合物含量更低,并且对光谱差异更敏感。在黑暗中发芽的种子中的抗氧化特性和抗氧化剂化合物的含量明显低于LED处理的种子。总酚含量较高,α-生育酚和维生素C浓度显着增加,导致DPPH自由基清除能力改变。因此,我们得出的结论是,基于基本成分并补充了绿色(510 nm)光的LED光谱可以改善小扁豆和小麦发芽种子的抗氧化性能。萝卜种子的最高抗氧化性能是由补充琥珀色(595 nm)光辐射引起的。

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