首页> 外文期刊>Journal of Agricultural and Food Chemistry >Anthocyanin Accumulation, Antioxidant Ability and Stability, and a Transcriptional Analysis of Anthocyanin Biosynthesis in Purple Heading Chinese Cabbage (Brassica rapa L. ssp pekinensis)
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Anthocyanin Accumulation, Antioxidant Ability and Stability, and a Transcriptional Analysis of Anthocyanin Biosynthesis in Purple Heading Chinese Cabbage (Brassica rapa L. ssp pekinensis)

机译:紫色抽穗大白菜(Brassica rapa L. ssp pekinensis)花色苷的积累,抗氧化能力和稳定性以及花色苷生物合成的转录分析

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摘要

Heading Chinese cabbage (Brassica rapa L. ssp. pekinensis) is a significant dietary vegetable for its edible heading leaves in Asia countries. The new purple anthocyanin-rich pure line (11S91) was successfully bred, and the anthocyanins were mainly distributed in 2-3 cell layers beneath the leaf epidermis, whereas siliques and stems accumulated only a cell layer of anthocyanins. The anthocyanins of 11S91 were more stable at pHs below 3.0 and temperatures below 45 degrees C. The total antioxidant ability was highly positive correlated with the anthocyanin content in 11S91. Thirty-two anthocyanins were separated and identified, and 70% of them were glycosylated and acylated cyanidins. The four major anthocyanins present were cyanidin-3-sophoroside(p-coumaroyl)-5-glucoside(malonyl), cyanidin-3-sophoroside(ferulyl)-5-glucoside(malonyl), cyanidin-3-sophoroside(sinapyl-p-coumaroyl)-5-glucoside(malonyl), and cyanidin-3-sophoroside-(sinapyl-ferulyl)-5-glucoside (malonyl). According to the expression of biosynthetic genes and the component profile of anthocyanins in 11S91 and its parents, regulatory genes BrMYB2 and BrTT8 probably activate the anthocyanin biosynthesis but other factors may govern the primary anthocyanins and the distribution.
机译:抽穗大白菜(Brassica rapa L. ssp。pekinensis)是一种重要的饮食性蔬菜,其在亚洲国家的食用抽穗叶。成功培育出新的富含紫色花青素的纯系(11S91),花青素主要分布在叶表皮下的2-3个细胞层中,而角果和茎仅积累了一个花青素的细胞层。 11S91的花青素在pH值低于3.0和温度低于45摄氏度时更稳定。总抗氧化能力与11S91中的花青素含量高度正相关。分离并鉴定了32个花青苷,其中70%是糖基化和酰化的花青素。存在的四种主要花色苷是花青素3-槐糖苷(对香豆酰基)-5-葡萄糖苷(丙二酰基),花青素3-槐糖苷(阿魏酸酯)-5-葡萄糖苷(丙二酰基),花青素3-槐糖苷(芥子酰基-p-香豆酰基)-5-葡萄糖苷(丙二酰基)和花青素-3-槐糖苷-(芥子基-阿魏酰基)-5-葡萄糖苷(丙二酰基)根据11S91及其亲本中生物合成基因的表达和花色苷的组成特征,调控基因BrMYB2和BrTT8可能会激活花色苷的生物合成,但其他因素可能会控制主要的花色苷及其分布。

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