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Wide genetic variation in phenolic compound content of seed coats among black soybean cultivars

机译:黑大豆品种种皮中酚类化合物含量的广泛遗传变异

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Black soybeans have been used as a food source and also in traditional medicine because their seed coats contain natural phenolic compounds such as proanthocyanidin and anthocyanin. The objective of this research is to reveal the genetic variation in the phenolic compound contents (PCCs) of seed coats in 227 black soybean cultivars, most of which were Japanese landraces and cultivars. Total phenolics were extracted from seed coats using an acidic acetone reagent and the proanthocyanidin content, monomeric anthocyanin content, total flavonoids content, total phenolics content, and radical scavenging activity were measured. The cultivars showed wide genetic variation in PCCs. Each of the contents was highly correlated with one another, and was closely associated with radical scavenging activity. PCCs were also moderately associated by flowering date but not associated by seed weight. Cultivars with purple flowers had a tendency to produce higher PCCs compared with cultivars with white flowers, suggesting that the W1 locus for flower color can affect phenolic compound composition and content. Our results suggest that developing black soybean cultivars with high functional phenolic compounds activity is feasible.
机译:黑大豆已被用作食物来源,也被用于传统医学中,因为它们的种皮中含有天然的酚类化合物,例如原花青素和花青素。这项研究的目的是揭示227种黑大豆品种(大多数是日本地方品种和品种)种皮中酚类化合物含量(PCCs)的遗传变异。使用酸性丙酮试剂从种皮中提取总酚,并测量原花青素含量,单体花青素含量,总黄酮含量,总酚含量和自由基清除活性。品种在PCC中显示出广泛的遗传变异。每种含量彼此高度相关,并且与自由基清除活性密切相关。 PCC还与开花日期相关,但与种子重量无关。与具有白色花朵的品种相比,具有紫色花朵的品种倾向于产生更高的PCC,这表明花朵颜色的W1基因座可以影响酚类化合物的成分和含量。我们的结果表明,开发具有高功能酚类化合物活性的黑大豆品种是可行的。

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