JIANG Wei, SHU Xiaoyan, WANG Yuxia, et al. Analysis on Fruit Quality of Different Varieties of Prunus mume in Sichuan[J]. Science and Technology of Food Industry, 2023, 44(16): 321−330. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2022100129.
Citation: JIANG Wei, SHU Xiaoyan, WANG Yuxia, et al. Analysis on Fruit Quality of Different Varieties of Prunus mume in Sichuan[J]. Science and Technology of Food Industry, 2023, 44(16): 321−330. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2022100129.

Analysis on Fruit Quality of Different Varieties of Prunus mume in Sichuan

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  • Received Date: October 13, 2022
  • Available Online: June 07, 2023
  • To compare the quality differences of Prunus mume from main producing areas of Sichuan Province, related basic physio-chemical properties, trace elements, total flavonoids, total phenols and organic acids contents were determined. Furthermore, the volatile flavor components of Prunus mume were analyzed by headspace solid-phase microextraction (HS-SPME) coupled with gas chromatography-mass spectrometry (GC-MS). Additionally, principal component and cluster analysis were applied to compare and sort the 8 varieties of Prunus mume samples based on the quality data. The results revealed significant differences in the fruit quality of 8 cultivars of Prunus mume. Among them, the single fruit weight of Damei No.1, Pingwu Nangao and Mabian Dabaimei was more than 30 g, and the flesh rate was more than 90%, which belonged to the extremely large fruit in Prunus mume, the maximum protein content of Damei No.2 was 1.24 g/100 g FW, the sugar acid ratio of 8 varieties of Prunus mume was 0.25~0.58, the content of Fe in Dayi Daqingmei was the highest, which was 187.28 mg/kg DW. The five varieties of Prunus mume in Dachuan, Dayi and Mabian had higher content of Se, with an average content of 0.28 mg/kg DW. The contents of total flavonoids and total phenols in Dayi Yingsu were the highest, which were 84.53 and 36.03 mg/g DW, respectively, which were significantly higher than those of other varieties (P<0.05). The highest citric acid content of Dayi Daqingmei was 414.23 mg/g, and the highest malic acid content of Pingwu apricot was 85.51 mg/g. The contents of high succinic acid and fumaric acid in Pingwu Nangao were the highest, which were 54.15 and 0.79 mg/g DW, respectively. A total of 81 volatile substances were detected in 8 varieties of Prunus mume, and 9 common substances were detected. Among them, Yingsu and Nangao had the highest proportion of aldehydes, mainly hexanal and 2-hexenal, while the other six varieties of Prunus mume had the highest proportion of esters, especially butyl acetate. In summary, the four varieties of Prunus mume in Mabian County and Pingwu County were suitable for making Fructus mume. Dayi Yingsu, Dayi Daqingmei and Damei No.2 were suitable for deep processing, and Damei No.1 was an excellent variety for edible processing.
  • [1]
    宋爽. 梅果实提取液抑菌、抗氧化活性成分鉴定与功能分析[D]. 南京: 南京农业大学, 2016.

    SONG S. Identification and function analysis of Japanese apricot fruit extraction’s bacteriostatic and antioxidative active ingredient[D]. Nanjing: Nanjing Agricultural University, 2016.
    [2]
    邹波, 徐玉娟, 杨帆, 等. 青梅中梅素的化学结构表征及其生物活性研究进展[J]. 现代食品科技,2020,36(12):314−319. [ZOU B, XU Y J, YANG F, et al. Research progress on chemical structure characterization and biological activity of plumin in Prunus mume[J]. Modern Food Technology,2020,36(12):314−319.

    ZOU B, XU Y J, YANG F, et al. Research progress on chemical structure characterization and biological activity of plumin in Prunus mume [J]. Modern Food Technology, 2020, 36(12): 314-319.
    [3]
    WANG X N, DU J C, ZHOU J Z. Antibiotic activities of extracts from Prunus mume fruit against food-borne bacterial pathogens and its active components[J]. Industrial Crops & Products,2019,133:409−413.
    [4]
    MORIMOTO T K Y, MURAI Y Y, YAMAUCHI R, et al. Phenotypic diversity of organic acids, sugars and volatile compounds associated with subpopulations in Japanese apricot (Prunus mume) cultivars[J]. The Horticulture Journal,2022,91(1):33−41. doi: 10.2503/hortj.UTD-301
    [5]
    NISHI K, TSUNODA T, UCHIDA Y, et al. MK615 suppresses hypoxia tolerance by up-regulation of E-cadherin in colorectal cancer cells with mutant KRAS[J]. Anticancer Research,2020,40(8):4687−4694. doi: 10.21873/anticanres.14468
    [6]
    ZHANG B, LIN H, TANG Y, et al. Efficacy of a Fructus mume extract combination with stable chlorine in preventing bacterial contamination in frozen mackerel (Scomber japonicus) fillets[J]. Journal of Aquatic Food Product Technology,2016,25(4):458−470. doi: 10.1080/10498850.2013.869290
    [7]
    李莹, 吴莎莎, 曹璨, 等. 山楂、乌梅、葡萄皮、枸杞、桑葚复方组合物的体内降血脂作用[J]. 食品工业科技,2022,43(18):365−370. [LI Y, WU S S, CAO C, et al. In vivo hypolipidemic effect of the compound composition of crataegus, ume, grape skin, wolfberry and mulberry[J]. Science and Technology of Food Industry,2022,43(18):365−370. doi: 10.13386/j.issn1002-0306.2021110291

    LI Y, WU S S, CAO C, et al. In Vivo hypolipidemic effect of the compound composition of crataegus, Ume, grape skin, wolfberry and mulberry[J]. Science and Technology of Food Industry, 2022, 43(18): 365−370. doi: 10.13386/j.issn1002-0306.2021110291
    [8]
    JU-HUI K, JANG H. K, JONG-BANG E, et al. Optimization of spray drying process of Japanese apricot (Prunus mume Sieb. et Zucc.) juice powder using nondigestible maltodextrin by response surface methodology (RSM)[J]. Journal of Food Science and Technology,2021(8):1−11.
    [9]
    高志红, 侍婷, 倪照君, 等. 梅种质资源与分子生物学研究进展[J]. 南京农业大学学报,2019,42(6):975−985. [GAO Z H, SHI T, NI Z J, et al. Research progress on germplasm and molecular biology in Japanese apricot[J]. Journal of Nanjing Agricultural University,2019,42(6):975−985.

    GAO Z H, SHI T, NI Z J, et al. Research progress on germplasm and molecular biology in Japanese apricot[J]. Journal of Nanjing Agricultural University, 2019, 42(6): 975-985.
    [10]
    伍勇, 冯政, 袁开福, 等. 对达川区乌梅种植的思考与建议[J]. 现代园艺,2015,13(7):28−29. [WU Y, FENG Z, YUAN K F, et al. Thoughts and suggestions on black plum planting in Dachuan District[J]. Modern horticulture,2015,13(7):28−29.

    WU Y, FENG Z, YUAN K F, et al. Thoughts and suggestions on black plum planting in Dachuan district[J]. Modern horticulture, 2015, 13(7): 28-29.
    [11]
    刘兴艳, 蒲彪, 刘云, 等. 大邑果梅基础营养成分含量的测定和研究[J]. 食品研究与开发,2007,28(6):146−148. [LIU X Y, PU B, LIU Y, et al. Determination of the basic nutritional ingredient of plums (Prunus mume Sieb. et Zucc.) in Dayi[J]. Food Research and Development,2007,28(6):146−148. doi: 10.3969/j.issn.1005-6521.2007.06.045

    LIU X Y, PU B, LIU Y, et al. Determination of the basic Nutritional ingredient of plums (Prunus mume sieb. et zucc) in Dayi[J]. Food Research and Development, 2007, 28(6): 146-148. doi: 10.3969/j.issn.1005-6521.2007.06.045
    [12]
    康毅, 曾凡骏, 邹华雄. 果梅的研究——Ⅰ. 果梅营养成分的测定和研究[J]. 天然产物研究与开发,1994,6(4):62−66. [KANG Y, ZENG F J, ZOU H X. Research on Prunus mume I, measurement of nutritional ingredients[J]. Natural Product Research,1994,6(4):62−66.

    KANG Y, ZENG F J, ZOU H X. Research on Prunus mume I, measurement of nutritional ingredients[J]. Natural Product R&amp, 1994, 6(4): 62-66.
    [13]
    郭晶, 张佰良, 王嘉豪, 等. 广东省不同产地不同品种花生的营养成分研究[J]. 食品工业科技,2022,43(9):293−300. [GUO J, ZHANG B L, WANG J H, et al. Study on nutrient components of different peanut varieties in different producing areas in Guangdong Province[J]. Science and Technology of Food Industry,2022,43(9):293−300.

    GUO J, ZHANG B L, WANG J H, et al. Study on nutrient components of different peanut varieties in different producing areas in Guangdong province[J]. Science and Technology of Food Industry, 2022, 43(9): 293−300.
    [14]
    SOUHEILA G, HACÈNE N. Impact of variety and extraction process on physico-chemical and sensory characteristics of virgin olive oil[J]. Acta Scientifica Naturalis,2021,8(1):80−90. doi: 10.2478/asn-2021-0007
    [15]
    王佩芬, 池源, 王丽波. 蒽酮-硫酸比色法测定南瓜籽多糖含量[J]. 食品研究与开发,2014,35(24):121−125. [WANG P F, CHI Y, WANG L B. Determination of pumpkin seed polysaccharide content by anthrone-sulphuric acid colorimetry[J]. Food Research and Development,2014,35(24):121−125. doi: 10.3969/j.issn.1005-6521.2014.24.031

    WANG P F, CHI Y, WANG L B. Determination of pumpkin seed polysaccharide content by anthrone-sulphuric acid colorimetry[J]. Food Research and Development, 2014, 35(24): 121-125. doi: 10.3969/j.issn.1005-6521.2014.24.031
    [16]
    魏晋梅, 刘彩云, 方彦, 等. 沙棘果油脂肪酸与微量元素测定[J]. 食品与发酵工业,2021,47(2):268−273. [WEI J M, LIU C Y, FANG Y, et al. Determination of fatty acid compositions and trace elements in seabuckthorn fruit oil[J]. Food and Fermentation Industries,2021,47(2):268−273.

    WEI J M, LIU C Y, FANG Y, et al. Determination of fatty acid compositions and trace elements in seabuckthorn fruit oil[J]. Food and Fermentation Industries, 2021, 47(2): 268-273.
    [17]
    LIU L, HU C, ZOU M, et al. A comparative study of the total phenol and flavonoid contents and biological activities of different medicinal parts of Penthorum chinense Pursh[J]. Journal of Food Measurement and Characterization,2021,15:3274−3283. doi: 10.1007/s11694-021-00904-y
    [18]
    WARAS N, NUR S P D, HUANAWATI H, et al. Total flavonoid content and antioxidant activity of ethanol and ethyl acetate extracts from accessions of Amomum compactum fruits[J]. Annals of Agricultural Sciences,2021,66(1):58−62. doi: 10.1016/j.aoas.2021.04.001
    [19]
    国家药典委员会. 中华人民共和国药典[S]. 一部. 北京: 中国医药科技出版社, 2020: 81.

    National Pharmacopoeia Commission. Pharmacopoeia of the People’s Republic of China[S]. Part one. Beijing: China Pharmaceutical Science and Technology Press, 2020: 81.
    [20]
    林耀盛, 刘学铭, 李升锋, 等. 青梅腌制过程中的风味物质变化[J]. 热带作物学报,2015,36(8):1530−1535. [LIN Y S, LIU X M, LI S F, et al. Changes of volatile flavor compounds of Prunus mume during pickling[J]. Chinese Journal of Tropical Crops,2015,36(8):1530−1535. doi: 10.3969/j.issn.1000-2561.2015.08.028

    LIN Y S, LIU X M, LI S F, et al. Changes of volatile flavor compounds of Prunus mume during pickling[J]. Chinese Journal of Tropical Crops, 2015, 36(8): 1530-1535. doi: 10.3969/j.issn.1000-2561.2015.08.028
    [21]
    房经贵, 乔玉山, 章镇, 等. 我国果梅品种资源若干果实性状的数量分布及其评价标准探讨[J]. 果树学报,2002,19(3):175−179. [FANG J G, QIAO Y S, ZHANG Z, et al. Study on the quantitative distribution of some fruit qualitative characters of Japanese apricot (Armeniaca mume Sieb.) cultivars and their evaluation criteria[J]. Journal of Fruit Science,2002,19(3):175−179.

    FANG J G, QIAO Y S, ZHANG Z, et al. Study on the quantitative distribution of some fruit qualitative charac-ters of Japanese Apricot (Armeniaca mume Sieb. ) cultivars and their e-valuation criteria[J]. Journal of Fruit Science, 2002, 19(3): 175-179.
    [22]
    欧金梅, 王瑞, 程庆兵, 等. ICP-MS法测定不同产地乌梅无机元素含量[J]. 中草药,2020,51(2):482−489. [OU J M, WANG R, CHENG Q B, et al. Simultaneous determination of inorganic elements in Mume Fructus from different regions by ICP-MS[J]. Chinese Traditional and Herbal Drugs,2020,51(2):482−489. doi: 10.7501/j.issn.0253-2670.2020.02.027

    OU J M, WANG R, CHENG Q B, et al. Simultaneous determination of inorganic elements in Mume Fructus from different regions by ICP-MS[J]. Chinese Traditional and Herbal Drugs, 2020, 51(2): 482-489. doi: 10.7501/j.issn.0253-2670.2020.02.027
    [23]
    韩文娜, 李喜贵, 刘焕, 等. 富硒和非富硒雪樱子中健康有益成分的对比分析[J]. 食品科学,2021,42(22):208−215. [HAN W N, LI X G, LIU H, et al. Comparative analysis of health-benefiting components in selenium-enriched and non-selenium-enriched Amaranthus caudatus L doi: 10.7506/spkx1002-6630-20201204-054

    J]. Food Science,2021,42(22):208−215. doi: 10.7506/spkx1002-6630-20201204-054
    [24]
    JING W, JING L W, CHONG D W, et al. Characteristics and valorization potential of fermentation waste of greengage (Prunus mume)[J]. Applied Sciences,2021,11(18):8296. doi: 10.3390/app11188296
    [25]
    郭瑛, 肖朝萍, 王红, 等. 高效液相色谱法测定乌梅有机酸[J]. 分析化学,2004,32(12):1624−1626. [GUO Y, XIAO C P, WANG H, et al. Determination of organic acids in Fructus mume by high performance liquid chromatography[J]. Chinese Journal of Analytical Chemistry,2004,32(12):1624−1626. doi: 10.3321/j.issn:0253-3820.2004.12.014

    GUO Y, XIAO C P, WANG H, et al. Determination of organic acids in Fructus mume by high performance liquid chromatography[J]. Chinese Journal of Analytical Chemistry, 2004, 32(12): 1624-1626. doi: 10.3321/j.issn:0253-3820.2004.12.014
    [26]
    李沛瑾, 刘丽星, 王前, 等. 乌梅丸治疗恶性肿瘤寒热错杂阶段的经验探析[J]. 辽宁中医杂志,2021,48(1):153−155. [LI P J, LIU L X, WANG Q, et al. Experience of Wumei pill in treatment of malignant tumors at cold-heat complex stage[J]. Liaoning Journal of Traditional Chinese Medicine,2021,48(1):153−155.

    LI P J, LIU L X, WANG Q, et al. Experience of Wumei pill in treatment of malignant tumors at cold-heat complex stage[J]. Liaoning Journal of Traditional Chinese Medicine, 2021, 48(1): 153-155.
    [27]
    ZONG Y X, XUE L Z, WEN Y W, et al. Fructus mume (Wumei) attenuates acetic acid-induced ulcerative colitis by regulating inflammatory cytokine, reactive oxygen species, and neuropeptide levels in model rats[J]. Journal of Medicinal Food,2022,25(4):389−401. doi: 10.1089/jmf.2021.K.0155
    [28]
    姜翠翠, 叶新福, 林炎娟, 等. 福建省4个果梅主栽品种果实营养品质、香气成分分析与评价[J]. 食品科学,2021,42(10):276−283. [JIANG C C, YE X F, LIN Y J, et al. Analysis and evaluation of fruit nutritional quality and aroma components of four major Japanese apricot (Prunus mume Sieb. et Zucc.) cultivars in Fujian Province[J]. Food Science,2021,42(10):276−283. doi: 10.7506/spkx1002-6630-20200511-111

    JIANG C C, YE X F, LIN Y J, et al. Analysis and evaluation of fruit nutritional quality and aroma components of four major Japanese apricot (Prunus mume Sieb. et Zucc. ) cultivars in Fujian Province[J]. Food Science, 2021, 42(10): 276-283. doi: 10.7506/spkx1002-6630-20200511-111
    [29]
    LIU B D, JIAO W X, WANG B G, et al. Near freezing point storage compared with conventional low temperature storage on apricot fruit flavor quality (volatile, sugar, organic acid) promotion during storage and related shelf life[J]. Scientia Horticulturae,2019,249:100−109. doi: 10.1016/j.scienta.2019.01.048
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