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岷江百合与兰州百合鳞茎中多酚组分及其生物活性

靳磊 张瑞军 雅蓉 张萍

食品工业科技2018,Vol.39Issue(10):22-27,34,7.
食品工业科技2018,Vol.39Issue(10):22-27,34,7.DOI:10.13386/j.issn1002-0306.2018.10.005

岷江百合与兰州百合鳞茎中多酚组分及其生物活性

Polyphenolic compositions and their bioactivity in the bulb of Lilium regale and L.davidii var.unicolor

靳磊 1张瑞军 1雅蓉 1张萍1

作者信息

  • 1. 宁夏大学农学院,宁夏银川750021
  • 折叠

摘要

Abstract

To study the antioxidant and antibacterial activity of lily,using bulbs of Lilium regale and L.davidii var.unicolor as the experimental materials to investigate the contents of total polyphenol,flavone,flavanol and monomeric phenol of the bulb via colorimetry,high performance liquid chromatography and turbidimetry,and the antioxidant capacity and the antibacterial activity of that had been also stuied.The results demonstrated that there had a significant difference between the polyphenol contents in the bulbs of two Lilium species (p < 0.05).The contents of total polyphenol,flavonoid,flavanol from L.regale were 2.07,2.25 and 3.16 times higher than those of L.davidii var.unicolor,respectively.Fourteen monomeric phenolic compounds were identified from the two Lilium species,among them,the content of procyanidin B2 was the highest,reaching 37.60 mg· kg 1 and 20.60 mg· kg-1 in L.regale and L.davidii var.unicolor respectively,and the contents of which in the bulb of Lilium regale were 1.43 to 41.84 folds of those in L.davidii var.unicolor,except for the gallic acid content.Furthermore,the antioxidation and antibacterial activities of polyphenol extracts from Lilium regale were significantly 1.40~14.40 folds stronger than those from L.davidii var.unicolor(p < 0.05).These findings suggested that polyphenolic extract of Lilium regale would possesse a great potential application prospect in the antioxidative food development and bacteriostatic pharmaceutical industry.

关键词

岷江百合/多酚/抗氧化能力/抑菌活性

Key words

Lilium regale/polyphenol/antioxidant capacity/antibacterial activity

分类

轻工纺织

引用本文复制引用

靳磊,张瑞军,雅蓉,张萍..岷江百合与兰州百合鳞茎中多酚组分及其生物活性[J].食品工业科技,2018,39(10):22-27,34,7.

基金项目

宁夏自然科学基金项目(NZ1632). (NZ1632)

食品工业科技

OA北大核心CSTPCD

1002-0306

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