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中国精品科技期刊2020
张亚兰,赵建诚,杨振亚,等. 不同品种箬竹叶生化成分及抗氧化能力分析[J]. 食品工业科技,2022,43(9):93−100. doi: 10.13386/j.issn1002-0306.2021080246.
引用本文: 张亚兰,赵建诚,杨振亚,等. 不同品种箬竹叶生化成分及抗氧化能力分析[J]. 食品工业科技,2022,43(9):93−100. doi: 10.13386/j.issn1002-0306.2021080246.
ZHANG Yalan, ZHAO Jiancheng, YANG Zhenya, et al. Analysis of Biochemical Components and Antioxidant Capacity of Indocalamus Leaves of Different Varieties[J]. Science and Technology of Food Industry, 2022, 43(9): 93−100. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2021080246.
Citation: ZHANG Yalan, ZHAO Jiancheng, YANG Zhenya, et al. Analysis of Biochemical Components and Antioxidant Capacity of Indocalamus Leaves of Different Varieties[J]. Science and Technology of Food Industry, 2022, 43(9): 93−100. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2021080246.

不同品种箬竹叶生化成分及抗氧化能力分析

Analysis of Biochemical Components and Antioxidant Capacity of Indocalamus Leaves of Different Varieties

  • 摘要: 目的:研究同一地区不同品种箬竹叶资源功能性成分含量及抗氧化能力的差异。方法:以现有的11种箬竹叶资源为原料,对其基本营养成分、黄酮、多糖、多酚、挥发油等功能组分进行含量及醇提取物抗氧化能力进行评价,最后对数据进行权重分析并综合评分。结果:同一地区不同品种箬竹叶的基本营养成分含量差异显著,水分、粗蛋白、粗脂肪和灰分四种成分的变异系数,只有粗蛋白的为13.93%,其他三种变异系数不超过10%。黄酮、多糖、多酚和挥发油四种功能性成分含量也存在显著差异,其黄酮含量和多酚含量变异系数分别为34.47%和38.04%;多糖和挥发油含量变异系数分别为28.03%和22.36%,较黄酮和多酚含量差异小。其中长节箬竹叶的黄酮(0.68%)和多酚含量最高(0.62%),髯毛箬竹叶多糖含量最高(0.69%),阔叶箬竹挥发油含量最高(0.64%)。抗氧化能力的结果显示不同箬竹叶的抗氧化能力差异较小,DPPH自由基、超氧阴离子、羟自由基三种清除率的变异系数均不超过10%。从四种功能性成分含量及抗氧化能力的权重分析分析结果看,天目箬竹的综合评分最高(0.8108),可作为箬竹叶开发利用的首选材料。本研究的结果,综合功能性成分含量及抗氧化能力的综合评分为箬竹叶的开发选品提供重要参考。

     

    Abstract: Objective: To study the contents of functional components and antioxidant capacity of different varieties of Indocalamus leaves in same area. Methods: Using 11 existing species of Indocalamus leaves resources as raw materials, the contents of basic nutrients, flavonoids, polyphenols, polysaccharides, volatile oil and other functional components were evaluated as well as the antioxidant capacity of alcohol extracts. Then the data were analyzed by weight and scored comprehensively. Results: The results showed that there were significant differences among the content of basic nutrients in leaves of different Indocalamus varieties in the same area. The coefficient of variation of four components was 13.93% only for crude protein, and the coefficient of variation among the other three was no more than 10%. Same phenomenon was found in the four functional components as well. The variation coefficients of flavonoids and polyphenols were calculated for 34.47% and 38.04%, 28.03% and 22.36% were for that of polysaccharide and volatile oil contents, in which the difference was smaller than that of flavonoids and polyphenols. Among them, the contents of flavonoids (0.68%) and polyphenols (0.62%) in the leaves of Indocalamus elongatus were the highest. Polysaccharide (0.69%) in leaves of Indocalamus barbatus was the highest. And the content of volatile oil (0.64%) in broad-leaved Indocalamus broad-leaved was the highest. The antioxidant capacity assay indicated that there was indistinctively difference in antioxidant activity among those Indocalamus leaves, and the coefficient of variation among the scavenging rates of DPPH radical, superoxide anion and hydroxyl radical was less than 10%. From the weight analysis containing the content of four functional components and antioxidant activity, the comprehensive score of Indocalamus Tianmu was the highest (0.8108), which might be used as the preferred material for the development and utilization of Indocalamus leaves. From the above studies, this finding would provide an important information for the utilization of Indocalamus leaves.

     

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