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Structure‐reactivity relationships between the fluorescent chromophores and antioxidant activity of grain and sweet sorghum seeds

机译:谷物和甜高粱种子的荧光发色团与抗氧化活性之间的结构反应关系

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摘要

Polyphenolic structures are the putative cause of a variety of seed functions including bird/insect resistance and antioxidant activity. Structure‐reactivity relationships are necessary to understand the influence of polyphenolic chromophore structures on the tannin content and free radical quenching ability determined by the traditional calorimetric methods. This study investigated the relationships between the structural attributes of fluorescent chromophore and the following seed characterization methods: procyanidin (by acid‐butanol assay) and flavonoid (by vanillin assay) contents, radical quenching (by DPPH assay), electron‐donating capacity (by FeIII reduction), and λ max (by UV/visible spectrophotometry). Distinctively different response was observed for different seed categories: U.S. grain sorghum hybrids, African grain sorghum, and sweet sorghum. The U.S. grain sorghum varieties (low‐tannin to maximize the livestock digestion) responded only to the DPPH assay. For sweet sorghum and African grain sorghum, linear correlation was observed between (1) the antioxidant activity (2) the amounts of procyanidins and flavonoids, and (2) the aromaticity of fingerprint fluorescent structures.
机译:多酚结构是多种种子功能的推定原因,包括鸟类/昆虫的抗性和抗氧化活性。为了了解多酚发色团结构对传统量热法测定的单宁含量和自由基猝灭能力的影响,必须建立结构反应关系。这项研究调查了荧光发色团的结构属性与以下种子表征方法之间的关系:原花青素(通过酸-丁醇测定)和类黄酮(通过香兰素测定)含量,自由基猝灭(通过DPPH测定),供电子能力(通过Fe III 还原)和λmax(通过紫外/可见分光光度法)。对于不同的种子类别,观察到明显不同的响应:美国谷物高粱杂种,非洲谷物高粱和甜高粱。美国谷物高粱品种(低丹宁酸可最大程度地提高牲畜消化率)仅对DPPH测定有反应。对于甜高粱和非洲谷物高粱,在(1)抗氧化活性(2)原花青素和类黄酮的量与(2)指纹荧光结构的芳香性之间观察到线性相关。

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