[1] 国家药典委员会. 中华人民共和国药典-一部: 2020年版[M]. 北京: 中国医药科技出版社, 2020: 8.
[2] CHEN C F, CHIOU W F, ZHANG J T. Comparison of the pharmacological effects of Panax ginseng and Panax quinquefolium[J]. Acta Pharmacol Sin, 2008, 29(9): 1103-1108.
[3] LIU H B, LU X Y, HU Y, et al. Chemical constituents of Panax ginseng and Panax notoginseng explain why they differ in therapeutic efficacy[J]. Pharmacol Res, 2020, 161: 105263.
[4] 李伟, 李佳慧, 王建强. 人参食品开发现状与发展趋势[J]. 吉林农业大学学报, 2023, 45(6): 656-663. doi:  10.13327/j.jjlau.2023.20363
[5] 李家磊, 卢淑雯, 任传英, 等. 鲜西洋参饮料加工工艺的研究[J]. 中国酿造, 2015, 34(8): 82-85.
[6] 梁慧慧, 张世亮. 基于网络药理学探究人参-三七药对改善无症状性心肌缺血作用机制[J]. 世界中医药, 2022, 17(2): 167-171.
[7] PIAO X M, ZHANG H, KANG J P, et al. Advances in saponin diversity of Panax ginseng[J]. Molecules, 2020, 25(15): 3452.
[8] LI X, LIU J, ZUO T T, et al. Advances and challenges in ginseng research from 2011 to 2020: the phytochemistry, quality control, metabolism, and biosynthesis[J]. Nat Prod Rep, 2022, 39(4): 875-909.
[9] QI L W, WANG C Z, YUAN C S. Isolation and analysis of ginseng: advances and challenges[J]. Nat Prod Rep, 2011, 28(3): 467-495.
[10] SHI X J, YANG W Z, QIU S, et al. An in-source multiple collision-neutral loss filtering based nontargeted metabolomics approach for the comprehensive analysis of malonyl-ginsenosides from Panax ginseng, P. quinquefolius, and P. notoginseng[J]. Anal Chim Acta, 2017, 952: 59-70.
[11] WANG Y S, JIN Y P, GAO W, et al. Complete (1) H-NMR and (13) C-NMR spectral assignment of five malonyl ginsenosides from the fresh flower buds of Panax ginseng[J]. J Ginseng Res, 2016, 40(3): 245-250.
[12] 孙光芝, 王继彦, 刘志, 等. 正交试验优选人参中丙二酰基人参皂苷的提取工艺研究[J]. 中草药, 2006(8): 1194-1195.
[13] BAI Y X, CAI G Z, GUO N, et al. UHPLC–HRMS based saponins profiling of three morphological regions in American ginseng (Panax quinquefolium L. ) and their correlation with the antioxidant activity[J]. Food Sci Biotechnol, 2023, 33(7): 1685-1696.
[14] 李嘉欣. 西洋参花蕾中丙二酰基人参皂苷对2型糖尿病小鼠降糖作用及机制研究[D]. 长春: 吉林农业大学, 2021.
[15] LIU X, LIU Y Y, XU X P, et al. Molecular characterization and structure basis of a malonyltransferase with both substrate promiscuity and catalytic regiospecificity from Cistanche tubulosa[J]. Acta Pharm Sin B, 2024, 14(5): 2333-2348.
[16] LIU Y Y, WANG X H, MO T, et al. Identification and functional application of a new malonyltransferase NbMaT1 towards diverse aromatic glycosides from Nicotiana benthamiana[J]. RSC Adv, 2017, 7(34): 21028-21035.
[17] XU X F, XU S Y, ZHANG Y, et al. Chemical comparison of two drying methods of mountain cultivated ginseng by UPLC-QTOF-MS/MS and multivariate statistical analysis[J]. Molecules, 2017, 22(5): 717.
[18] QIU S, YANG W Z, YAO C L, et al. Malonylginsenosides with potential antidiabetic activities from the flower buds of Panax ginseng[J]. J Nat Prod, 2017, 80(4): 899-908.
[19] QIU S, YANG W Z, YAO C L, et al. Nontargeted metabolomic analysis and “commercial-homophyletic” comparison-induced biomarkers verification for the systematic chemical differentiation of five different parts of Panax ginseng[J]. J Chromatogr A, 2016, 1453: 78-87.
[20] 张单丽, 李梦瑶, 王东升, 等. 不同加热方式对丙二酰基人参皂苷降解的影响及抗氧化活性的变化[J]. 吉林农业大学学报, 2023, 45(6): 773-780.
[21] 李芳, 李乔, 宋丹, 等. 不同干燥方法对人参花和西洋参花皂苷类成分的影响[J]. 中草药, 2015, 46(19): 2937-2942.