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Xie Guo-Fang, Xu Xiao-Yan, Wang Rui, Liu Zhi-Gang, Zhou Xiao-Li, Yang Han-Tao. Analysis of phenolic, Vc and antioxidant activity of fruits and leaves of Rosa sterilis D. Shi[J]. Plant Science Journal, 2017, 35(1): 122-127. DOI: 10.11913/PSJ.2095-0837.2017.10122
Citation: Xie Guo-Fang, Xu Xiao-Yan, Wang Rui, Liu Zhi-Gang, Zhou Xiao-Li, Yang Han-Tao. Analysis of phenolic, Vc and antioxidant activity of fruits and leaves of Rosa sterilis D. Shi[J]. Plant Science Journal, 2017, 35(1): 122-127. DOI: 10.11913/PSJ.2095-0837.2017.10122

Analysis of phenolic, Vc and antioxidant activity of fruits and leaves of Rosa sterilis D. Shi

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This work was supported by grants from the Science and Technology Project of Department of Science and Technology of Guizhou Province (China) (LH[2014]7179), National Undergraduate Training Programs for Innovation and Entrepreneurship (201510976022), Natural Science Project of Department of Education of Guizhou Province (China) (KY[2014]276), and Scientific and Technological Innovation Team for Guizhou Fruit Processing and Storage, China ([2013]4028).

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  • Received Date: May 29, 2016
  • Available Online: October 31, 2022
  • Published Date: February 27, 2017
  • The bioactive compounds and antioxidant activity of the fruits and leaves of Rosa sterilis D. Shi in Guizhou province were analyzed using correlation analysis. The results indicated that gallic acid, rutin, quercetin, catechin, ellagic acid, chlorogenic acid, and ferulic acid were the major phenolic compounds in the fruits and leaves. The contents of bioactive compounds were significantly different between the fruit and leaves (P<0.05). The contents of p-coumaric acid, polyphenols and flavonoids were the highest in the fruit. However, the contents of gallic acid, catechin, chlorogenic acid, epicatechin, ferulic acid, ellagic acid, rutin, quercetin and polyphenols were higher in the leaves. The antioxidant activities of fruit were significantly higher than that of the leaves (P<0.05), flavonoids had a strong contribution to the total reducing power assay (TRPA) value, ascorbic acid had a strong contribution to the ferric ion reducing antioxidant power (FRAP) value, and quercetin had a strong contribution to the ABTS value. The fruits and leaves of R. sterilis D. Shi are of high value for the development of medicinal and edible resources.
  • [1]
    郑元, 辛培尧, 高健, 张德国, 李永和. 无籽刺梨的研究与应用现状及展望[J]. 贵州林业科技, 2013, 41(2):62-64.

    Zheng Y, Xin PY, Gao J, Zhang DG, Li YH. The current situation and outlook of research and development of Rosa sterilis[J]. Guizhou Forestry Science and Technology, 2013, 41(2):62-64.
    [2]
    林源, 唐军荣, 田斌, 王大玮, 辛培尧. 无籽刺梨的研究现状及发展建议[J]. 江苏农业科学, 2014, 42(4):122-124.
    [3]
    刘松, 赵德刚. 无籽刺梨(Rosa kweichonensis var. sterlis)研究进展[J]. 山地农业生物学报, 2014, 33(1):76-80.

    Liu S, Zhao DG. Research progress of seedless chestnut Rose (Rosa kweichonensis var. sterilis)[J]. Journal of Mountain Agriculture and Biology, 2014, 33(1):76-80.
    [4]
    刘芳舒, 张瑜, 罗昱, 丁筑红. 无籽刺梨复合果酱配方工艺技术研究[J]. 食品科技, 2015(1):107-111.

    Liu FS, Zhang Y, Luo Y, Ding ZH. Compound jam of Rosa sterilis S. D. Shi formulation technolog[J]. Food Science and Technology, 2015(1):107-111.
    [5]
    严晓月, 刘星, 李永福, 陈琴芳, 钟耀广, 王正武. 无籽刺梨酸奶含片工艺研究[J]. 食品与机械, 2015(1):226-230.

    Yan XY, Liu X, Li YF, Chen QF, Zhong YG, Wang ZW. Processing technology of rosa strilis yoghourt buccal tablets[J]. Food & Machinery, 2015(1):226-230.
    [6]
    贺红早, 张玉武, 刘盈盈, 孙超, 任春光. 无籽刺梨果酒酿制工艺优化初探[J]. 酿酒科技, 2015(11):91-93.

    He HZ, Zang YW, Liu YY, Sun C, Ren CG. Optimization of the production techniques of seedless Rosa sterilis fruit wine[J]. Liquor-Making Science & Technology, 2015(11):91-93.
    [7]
    罗昱, 王亮, 丁筑红. 浑浊型无籽刺梨果汁饮料的研制[J]. 食品科技, 2014(11):91-96.

    Luo Y, Wang L, Ding ZH. Development of muddy type on Rosa sterilis beverages[J]. Food Science and Techno-logy, 2014(11):91-96.
    [8]
    张丹, 韦广鑫, 王文, 冯飞, 曾凡坤. 安顺普定刺梨与无籽刺梨营养成分及香气物质比较研究[J]. 食品工业科技,2016,37(12):149-154.

    Zhang D, Wei GX, Wang W, Feng F, Zeng FK. Comparative research on basic ingredients and volatile aroma compounds of Rosa roxburghii Tratt and Rosa sterilis D. Shi[J]. Science and Technology of Food Industry, 2016, 37(12):149-154.
    [9]
    鲁敏, 安华明, 赵小红. 无籽刺梨与刺梨果实中氨基酸分析[J]. 食品科学, 2015, 36(14):118-121.

    Lu M, An HH, Zhao XH. Analysis of amino acids in Rosa sterilis and Rosa roxburghii fruits[J]. Food Science, 2015, 36(14):118-121.
    [10]
    姜永新, 高健, 赵平, 张德国, 李永和. 无籽刺梨新鲜果实挥发性成分的GC-MS分析[J]. 食品研究与开发, 2013, 34(14):91-94.

    Jiang YX, Gao J, Zhao P, Zhang DG, Li YH. GC-MS analysis of volatile components from the fresh fruits of Rosa sterilis[J]. Food Research and Development, 2013, 34(14):91-94.
    [11]
    吴小琼, 罗会, 金吉林, 解璞, 王松松, 杨胜杰. 超临界CO2萃取无籽刺梨挥发油及GC-MS分析[J]. 中国实验方剂学杂志, 2014, 20(10):98-101.

    Wu XQ, Luo H, Jin JL, Xie P, Wang SS, Yang SJ. GC-MS analysis of volatile oil from Rosa sterilis by supercritical CO2 extraction[J]. Chinese Journal of Experimental Traditional Medical Formulae, 2014, 20(10):98-101.
    [12]
    吴洪娥, 金平, 周艳, 朱立, 周洪英. 刺梨与无籽刺梨的果实特性及其主要营养成分差异[J].贵州农业科学, 2014, 42(8):221-223.

    Wu HE, Jin P, Zhou Y, Zhu L, Zhou HY. Characteristics and main nutrition components of R. roxburghii and R. sterilis fruits[J]. Guizhou Agricultural Sciences, 2014, 42(8):221-223.
    [13]
    白鸽, 郭玉蓉, 陈磊, 张晓瑞. 苹果着色与冷藏期间多酚及相关酶活性的关系[J]. 食品科学, 2015, 36(6):246-250.

    Bai G, Guo YR, Chen L, Zhang XR. Relationship of coloration with polyphenols and related enzyme activities during low-temperature storage of apple[J]. Food Science, 2015, 36(6):246-250.
    [14]
    Dragović-uzela V, SavićZ, Brala A, Levaj B, Kovačevic DB, Biško A. Evaluation of phenolic content and antioxidant capacity of blueberry cultivars (Vaccinium corymbosum L.) grown in the northwest Croatia[J]. Food Technol Biotech, 2010, 48(2):214-221.
    [15]
    Nuncio-jáuregui N, Munera-picazo S, Calín-sánchez Á, Wojdyło A, Hernandez F, Carbonell-Barrachina AA. Bioactive compound composition of pomegranate fruits removed during thinning[J]. J Food Compos Anal, 2015, 37:11-19.
    [16]
    Xie GF, Tan SM. Effect of Cultivar on quality of the common bean during storage[J]. Int Agr Eng J, 2015, 24(2):69-78.
    [17]
    Tauchen J, Marsik P, Kvasnicova M, Maghradze D, Kokoska L, Vanek T, Landa P. In vitro antioxidant activity and phenolic composition of Georgian, central and west european wines[J]. J Food Compos Anal, 2015, 41:113-121.
    [18]
    Oliveira I, Baptista P, Malheiro R, Casal S, Bento A, Pereira JA. Influence of strawberry tree (Arbutus unedo L.) fruit ripening stage on chemical composition and antioxidant activity[J]. Food Res Int, 2011, 44(5):1401-1407.
    [19]
    Schaich K M, Tian X, Xie J. Hurdles and pitfalls in measuring antioxidant efficacy:A critical evaluation of ABTS, DPPH, and ORAC assays[J]. J Functional Foods, 2015, 14:111-125.
    [20]
    李福明, 汪洋, 韦敏. 刺梨叶醇提物体外抗氧化活性和α-葡萄糖苷酶抑制活性研究[J]. 中国现代应用药学, 2015(6):685-688.

    Li FM, Wang Y, Wei M. Study on in vitro antioxidant and α-glucosidase inhibitory activities of ethanol extract from Rosae roxburghii leaves[J]. Chinese Journal of Modern Applied Pharmacy, 2015(6):685-688.
    [21]
    张汇慧, 吴彩娥, 范龚健, 应瑞峰, 李婷婷. 刺梨黄酮的精制及其抗氧化活性比较[J]. 南京林业大学学报:自然科学版, 2015(3):101-105.

    Zhang HH, Wu CE, Fan GJ, Ying RF, Li TT. Refining and antioxidant activity of flavonoids from Rosa roxburghii Tratt[J]. Journal of Nanjing Forestry University:Natural Sciences Edition, 2015(3):101-105.
    [22]
    沈静, 王敏, 苟茜, 冀晓龙, 王猛, 汪有科. 不同成熟期灵武长枣酚类组分及抗氧化活性差异分析[J]. 食品科学, 2015, 36(8):191-195.

    Shen J, Wang M, Gou Q, Ji XL, Wang M, Wang YK. Changes in phenolic components and antioxidant activity of jujube fruits (Zizyphus jujuba Mill. cv. Lingwuchangzao) during different growth stages[J]. Food Science, 2015, 36(8):191-195.
    [23]
    张华, 周志钦, 席万鹏. 15种柑橘果实主要酚类物质的体外抗氧化活性比较[J]. 食品科学, 2015, 36(11):64-70.

    Zhang H,Zhou ZX,Xi WP. Comparison of antioxidant activity in vitro of 15 major phenolic compounds in citrus fruits[J]. Food Science, 2015, 36(11):64-70.
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