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首页> 外文期刊>Molecules >Solar Ultraviolet-B Radiation Increases Phenolic Content and Ferric Reducing Antioxidant Power in Avena sativa
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Solar Ultraviolet-B Radiation Increases Phenolic Content and Ferric Reducing Antioxidant Power in Avena sativa

机译:太阳紫外线B辐射可增加燕麦中酚的含量并降低铁的抗氧化能力

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We examined the influence of solar ultraviolet-B radiation (UV-B; 280-320 nm) on the maximum photochemical efficiency of photosystem II (Fv/Fm), bulk-soluble phenolic concentrations, ferric-reducing antioxidant power (FRAP) and growth of Avena sativa. Treatments involved placing filters on frames over potted plants that reduced levels of biologically effective UV-B by either 71% (reduced UV-B) or by 19% (near-ambient UV-B) over the 52 day experiment (04 July - 25 August 2002). Plants growing under near-ambient UV-B had 38% less total biomass than those under reduced UV-B. The reduction in biomass was mainly the result of a 24% lower leaf elongation rate, resulting in shorter leaves and less total leaf area than plants under reduced UV-B. In addition, plants growing under near-ambient UV-B had up to 17% lower Fv/Fm values early in the experiment, and this effect declined with plant age. Concentrations of bulk-soluble phenolics and FRAP values were 17 and 24% higher under near-ambient UV-B than under reduced UV-B, respectively. There was a positive relationship between bulk-soluble phenolic concentrations and FRAP values. There were no UV-B effects on concentrations of carotenoids (carotenes + xanthophylls).
机译:我们研究了太阳紫外线B辐射(UV-B; 280-320 nm)对光系统II的最大光化学效率(F v / F m )的影响,整体可溶性酚浓度,还原铁抗氧化能力(FRAP)和燕麦的生长。处理包括在盆栽植物上的框架上放置过滤器,从而在52天的实验(7月4日-25日)中将生物有效的UV-B含量降低71%(降低的UV-B)或19%(接近环境UV-B)。 2002年8月)。在接近室温的UV-B条件下生长的植物,其总生物量比减少UV-B的植物少38%。生物量的减少主要是由于叶片伸长率降低了24%,这导致在UV-B降低的情况下,叶片比植物短,叶片总面积减少。此外,在接近环境UV-B的条件下生长的植物在实验初期的F v / F m 值降低了17%,并且这种影响随着植物年龄的增长而降低。 。在接近环境的UV-B下,比在减少的UV-B下,本体可溶性酚和FRAP的浓度分别高17和24%。本体可溶性酚浓度与FRAP值之间呈正相关。 UV-B对类胡萝卜素(胡萝卜素+叶黄素)的浓度没有影响。

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