Bulletin of Botanical Research ›› 2025, Vol. 45 ›› Issue (1): 66-76.doi: 10.7525/j.issn.1673-5102.2025.01.008
• Original Paper • Previous Articles Next Articles
Yunze YU1,2, Ying YU1,2, Shuwen ZHAO3, Yinping JIN1,2, Shifeng PANG1,2, Hao ZHANG1,2, Liwei XING4, Yuyang SUN5, Jing GUO1,2()
Received:
2024-09-16
Online:
2025-01-20
Published:
2025-01-23
Contact:
Jing GUO
E-mail:172830132 @qq.com
CLC Number:
Yunze YU, Ying YU, Shuwen ZHAO, Yinping JIN, Shifeng PANG, Hao ZHANG, Liwei XING, Yuyang SUN, Jing GUO. Comparative Analysis of Differential Components of Three Origins ofAsari Radix et Rhizoma in Changbai Mountain Forest Region[J]. Bulletin of Botanical Research, 2025, 45(1): 66-76.
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URL: https://bbr.nefu.edu.cn/EN/10.7525/j.issn.1673-5102.2025.01.008
Table 1
The information of Asari Radix et Rhizoma samples
样品编号 Sample number | 基原 Origin | 原产地 Place of origin |
---|---|---|
S1 | 北细辛(CA) | 吉林省通化县富源村 |
S2 | 北细辛(CA) | 吉林省通化县富裕村 |
S3 | 北细辛(CA) | 吉林省通化县碱场村 |
S4 | 北细辛(CA) | 吉林省通化县大西城村 |
S5 | 北细辛(CA) | 吉林省通化县原泉沟村 |
S6 | 北细辛(CA) | 吉林省柳河县五凤楼村 |
S7 | 北细辛(CA) | 吉林省柳河县边沿村 |
S8 | 北细辛(CA) | 吉林省柳河县向阳镇 |
S9 | 北细辛(CA) | 吉林省柳河县金厂沟村 |
S10 | 北细辛(CA) | 辽宁省新宾县冯家村 |
S11 | 北细辛(CA) | 辽宁省新宾县火石村 |
S12 | 北细辛(CA) | 辽宁省新宾县宝汤村 |
S13 | 北细辛(CA) | 辽宁省新宾县旺清门镇 |
S14 | 北细辛(CA) | 辽宁省新宾县旧门村 |
S15 | 北细辛(CA) | 辽宁省新宾县善道村 |
S16 | 北细辛(CA) | 辽宁省清源县大苏河村 |
S17 | 北细辛(CA) | 吉林省吉林市左家镇 |
S18 | 华细辛(CB) | 陕西省毛坝河镇 |
S19 | 华细辛(CB) | 陕西省三道河镇 |
S20 | 华细辛(CB) | 陕西省铁锁关镇 |
S21 | 华细辛(CB) | 陕西省巴山镇 |
S22 | 华细辛(CB) | 陕西省二郎坝镇 |
S23 | 汉城细辛(CC) | 吉林省磐石市 |
S24 | 汉城细辛(CC) | 吉林省磐石市 |
S25 | 汉城细辛(CC) | 吉林省吉林市左家镇 |
Table 4
Volatile components of the three origins of Asari Radix et Rhizoma
编号 No. | 化合物名称 Representative compounds | 化学物质登录号 CAS | 保留时间 tR/min | 平均相对质量分数 Relative content/% | ||
---|---|---|---|---|---|---|
北细辛 CA | 华细辛 CB | 汉城细辛 CC | ||||
1 | β-松油烯 β-Pinene | 99-84-3 | 9.55 | 3.864 | 1.738 | 1.578 |
2 | 莰烯 Camphene | 79-92-5 | 10.28 | 1.120 | 0.112 | 0.284 |
3 | 甲位葑烯 α-Fenchene | 4695-62-9 | 11.27 | — | 0.893 | 1.080 |
4 | β-月桂烯 β-Myrcene | 123-35-3 | 11.93 | 0.520 | 0.197 | 0.614 |
5 | (+)-3-蒈烯 (+)-3-Carene | 13466-78-9 | 12.17 | 2.135 | — | 1.255 |
6 | β-罗勒烯 (E)-β-Ocimene | 13877-91-3 | 12.17 | 1.848 | 0.089 | 2.940 |
7 | 2,3-Dehydro-1,8-cineole | 92760-25-3 | 12.27 | — | 0.059 | — |
8 | 水芹烯 α-Phellandrene | 99-83-2 | 12.38 | 0.627 | 0.893 | 2.963 |
9 | 柠檬烯 Limonene | 138-86-3 | 13.05 | 0.825 | 0.210 | 0.799 |
10 | (+)-柠檬烯 (+)-Limonene | 5989-27-5 | 13.09 | — | 0.065 | — |
11 | β-侧柏烯 Bicyclo[3.1.0]hex-2-ene,4- | 1384736-11-1 | 13.35 | 1.089 | 1.572 | 0.599 |
12 | 3,6,6-三甲基-双环(3.1.1)庚-2-烯 3,6,6-Trimethyl-bicyclo(3.1.1)hept-2-ene | 80-56-8 | 13.47 | 0.122 | — | — |
13 | P-伞花烃 P-Cymene | 99-87-6 | 13.59 | — | — | 0.118 |
14 | 邻伞花烃 o-Cymene | 527-84-4 | 13.61 | 0.505 | 0.075 | 0.490 |
15 | 桉树脑 Cineole | 470-82-6 | 13.63 | 1.142 | 6.967 | 1.474 |
16 | 2(3H)-Benzofuranone,Hexahydro-7a-methyl- | 553-86-6 | 13.64 | — | 5.137 | — |
17 | γ-松油烯 γ-Terpinene | 99-85-4 | 14.09 | 0.039 | 0.210 | — |
18 | 顺式-4-蒈烯 4(5)-Carene | 5208-49-1 | 14.86 | 0.604 | 0.050 | 1.066 |
19 | 草酸环己基丙基酯 Cyclohexanehexanoic acid, 2-Propenyl ester | 1000309-30-3 | 14.87 | 0.026 | — | — |
20 | 优葛缕酮 2,6,6-Trimethylcyclohepta-2,4-dien-1-one | 503-93-5 | 18.99 | 3.673 | — | 11.382 |
21 | 右旋樟脑 (+)-Camphor | 464-49-3 | 19.14 | 0.264 | — | — |
22 | (-)-4-萜品醇 (-)-Terpinen-4-ol | 20126-76-5 | 19.38 | 0.408 | 1.855 | 0.116 |
23 | 冰片 Borneol | 507-70-0 | 19.97 | 0.790 | — | — |
24 | 合成右旋龙脑 (-)-Borneol | 464-45-9 | 19.97 | 0.516 | 0.594 | 0.260 |
25 | 双环[2.2.1]-2-庚醇 2-Norborneol | 1632-68-4 | 19.97 | 0.516 | 0.594 | 0.260 |
26 | 草蒿脑 Estragole | 140-67-0 | 19.99 | 1.034 | — | 5.860 |
27 | 茴香脑 cis-Anethol | 104-46-1 | 19.99 | 0.039 | — | — |
28 | 2-异丙基-5-甲基茴香醚 2-Isopropyl-5-methylanisole | 1076-56-8 | 20.27 | 0.021 | — | 0.835 |
29 | α-松油醇 α-Terpineol | 98-55-5 | 20.32 | 0.479 | 2.886 | 0.192 |
30 | 3,5-二甲氧基甲苯 3,5-Dimethoxytoluene | 4179-19-5 | 22.64 | 5.833 | 0.358 | 3.622 |
31 | 黄樟醚 Safrole | 94-59-7 | 22.75 | 18.172 | 19.358 | 1.554 |
32 | 乙酸松油酯 Terpinyl acetate | 80-26-2 | 23.66 | — | — | 0.156 |
33 | 丁香三环烯 (-)-Clovene | 469-92-1 | 24.47 | 0.070 | — | — |
34 | 白菖烯 (+)-Calarene | 17334-55-3 | 24.48 | 0.102 | — | 0.461 |
35 | 乙位古芸烯 (-)-α-Gurjunene | 17334-55-3 | 24.49 | 0.102 | — | 0.461 |
36 | 马兜铃烯 (-)-Aristolene | 6831-16-9 | 24.8 | 0.069 | — | — |
37 | 香树烯 Alloaromadendrene | 25246-27-9 | 24.8 | 0.045 | — | — |
38 | α-衣兰油烯 α-Muurolene | 31983-22-9 | 24.80 | 0.096 | — | 0.502 |
39 | 1(10)-马兜铃烯-2-酮 1(10)-Aristolen-2-one | 6831-16-9 | 24.80 | 0.069 | — | — |
40 | 1-十七烷醇 1-Heptadecanol | 1454-85-9 | 25.45 | — | 0.073 | — |
41 | 正十五烷 Pentadecane | 629-62-9 | 25.56 | 0.156 | — | — |
42 | 3-甲基-5-丙基壬烷 3-Methyl-5-propylnonane | 31081-18-2 | 25.56 | — | 0.489 | — |
43 | (-)-异喇叭烯 (-)-Isoledene | 1000156-10-8 | 25.85 | 0.050 | — | — |
44 | (-)-Alpha-荜澄茄油烯 (-)-α-Cubebene | 17699-14-8 | 25.85 | 0.027 | — | 0.367 |
45 | α-广藿香烯 α-Patchoulene | 515-17-3 | 25.93 | 0.013 | — | — |
46 | 甲基丁香酚 Methyleugenol | 93-15-2 | 26.21 | 15.178 | 0.788 | 20.937 |
47 | 二氢沉香呋喃 Dihydroagarofuran | 20053-66-1 | 26.22 | 0.147 | — | — |
48 | 反式甲基异丁香酚 (E)-Methyl isoeugenol | 93-16-3 | 26.29 | — | — | 12.343 |
49 | 1,2,3-三甲氧基-5-甲基苯 1,2,3-Trimethoxy-5-methylbenzene | 6443-69-2 | 26.55 | 8.821 | 0.296 | 2.046 |
50 | γ-榄香烯 γ-Elemene | 39029-41-9 | 26.68 | — | — | 0.293 |
51 | 肉豆蔻醚 Myristicin | 607-91-0 | 28.38 | 2.130 | 15.309 | 0.199 |
52 | 橙花叔醇 Nerolidol | 7212-44-4 | 29.47 | 0.015 | — | — |
53 | 榄香素 Elemicin | 487-11-6 | 30.15 | 0.467 | — | 2.630 |
54 | 3,4-(亚甲基二氧)苯丙酮 3,4-Methylenedioxyphenyl ethyl ketone | 28281-49-4 | 30.70 | 0.386 | — | — |
55 | 4′,6′-二甲氧基-2′-羟基苯乙酮 Xanthoxylin | 90-24-4 | 30.83 | 0.031 | — | — |
56 | 3-乙基-7-羟基苯酞 1(3H)-Isobenzofuranone,3-ethyl-7-hydroxy-,(3S)- | 485-26-7 | 30.85 | 0.188 | — | — |
57 | 百秋李醇 Patchouli alcohol | 5986-55-0 | 32.18 | 0.257 | — | — |
58 | 2′,4′-二甲氧基-3′-甲基苯丙酮 2′,4′-Dimethoxypropiophenone | 487-11-6 | 33.10 | 0.046 | — | — |
59 | 卡枯醇 Kakuol | 18607-90-4 | 33.12 | 1.291 | 0.352 | — |
1 | 国家药典委员会.中华人民共和国药典:一部[M].北京:中国医药科技出版社,2015:230-231. |
Chinese Pharmacopoeia Commission.Pharmacopoeia of the People’s Republic of China:Part Ⅰ[M].Beijing:China Medical Science and Technology Press,2015:230-231. | |
2 | 苏桂云,刘国通.细辛的分类品种与伪品特征[J].首都医药,2013,20(5):40. |
SU G Y, LIU G T.Classification varieties and adulterant characteristics of Asarum [J].Capital Medicine,2013,20(5):40. | |
3 | 戎玲勤.细辛的药理作用及临床应用[J].海峡药学,2011,23(2):94-95. |
RONG L Q.Pharmacological effects and clinical applications of Asarum [J].Strait Pharmaceutical Journal,2011,23(2):94-95. | |
4 | 韩俊艳,孙川力,纪明山.中药细辛的研究进展[J].中国农学通报,2011,27(9):46-50. |
HAN J Y, SUN C L, JI M S.Recent advance of Chinese herb-Asarum [J].Chinese Agricultural Science Bulletin,2011,27(9):46-50. | |
5 | HUANG J, WANG H Q, ZHANG C,et al.A new tetrahydrofuran-type lignan with anti-inflammatory activity from Asarum heterotropoides Fr.Schmidt var.mandshuricum [J].Journal of Asian Natural Products Research,2014,16(4):387-392. |
6 | 王波,蒋斌,沈夕坤,等.细辛挥发性成分的气相色谱/质谱分析[J].中华中医药学刊,2014,32(11):2726-2729. |
WANG B, JIANG B, SHEN X K,et al.Analysis of volatiles from Asarum heterotropoides by Gas Chromatography-Mass Spectroscopy[J].Chinese Archives of Traditional Chinese Medicine,2014,32(11):2726-2729. | |
7 | 李君辉,闫微,崔恩姬,等.不同产地细辛挥发油成分的GC-MS分析[J].时珍国医国药,2019,30(1):188-190. |
LI J H, YAN W, CUI E J,et al.GC-MS analysis of the volatile oil components of Asarum from different producing areas[J].Lishizhen Medicine and Materia Medica Research,2019,30(1):188-190. | |
8 | 刘东吉,刘春生.不同产地栽培辽细辛的挥发油研 究[J].中国实验方剂学杂志,2010,16(9):79-82. |
LIU D J, LIU C S.Chemical components of volatile oil chemical of cultivated Asarum produced in different places[J].Chinese Journal of Experimental Traditional Medical Formulae,2010,16(9):79-82. | |
9 | LI C, XU F, CAO C,et al.Comparative analysis of two species of Asari Radix et Rhizoma by electronic nose,headspace GC-MS and chemometrics[J].Journal of Pharmaceutical and Biomedical Analysis,2013,85:231-238. |
10 | 钱深思,刘美怡,容蓉,等.细辛挥发油的化学成分及其药理和毒理现代研究进展[J].中国药物警戒,2021,18(4):388-395. |
QIAN S S, LIU M Y, RONG R,et al.Research progress in chemical constituents,pharmacology and toxicology of volatile oil in Asarum [J].Chinese Journal of Pharmacovigilance,2021,18(4):388-395. | |
11 | 吴昊,温晓茵,颜鹏,等.细辛的化学成分及药理作用研究进展[J].中国实验方剂学杂志,2021,27(4):186-195. |
WU H, WEN X Y, YAN P,et al.Research progress on chemical constituents and pharmacological effects of Asari Radix et Rhizoma[J].Chinese Journal of Experimental Traditional Medical Formulae,2021,27(4):186-195. | |
12 | 刘美婷,王连嵋,孟晶,等.细辛的化学成分、药理及毒理研究进展[J].中国实验方剂学杂志,2023,29(10):224-234. |
LIU M T, WANG L M, MENG J,et al.Chemical constituents,pharmacology,and toxicology of Asari Radix et Rhizoma:a review[J].Chinese Journal of Experimental Traditional Medical Formulae,2023,29(10):224-234. | |
13 | 焉学倩.细辛炮制工艺及质量评价研究[D].长春:吉林农业大学,2022. |
YAN X Q.Study on processing technology and quality evaluation of Asari Radix et Rhizoma[D].Changchun:Jilin Agricultural University,2022. | |
14 | LIU J J, XU C, ZHANG L H,et al.Comparative transcriptomics analysis for gene mining and identification of a cinnamyl alcohol dehydrogenase involved in methyleugenol biosynthesis from Asarum sieboldii Miq[J].Molecules,2018,23(12):3184. |
15 | HERWALDT E J, RIVETT E D, WHITE A J,et al.Cox15 interacts with the cytochrome bc1 dimer within respiratory supercomplexes as well as in the absence of cytochrome c oxidase[J].Journal of Biological Chemistry,2018,293(42):16426-16439. |
16 | 王风,李楠,李雪,等.HS-SPME/GC-MS法测定北细辛挥发性成分[J].日用化学工业,2021,51(11):1150-1157. |
WANG F, LI N, LI X,et al.Analysis of volatile components in Asarum heterotropoides by HS-SPME/GC-MS[J].China Surfactant Detergent & Cosmetics,2021,51(11):1150-1157. | |
17 | 柴士伟,苗欣欣,姚广哲,等.不同产地细辛中挥发油GC-MS指纹图谱的建立及其化学模式识别研究[J].现代药物与临床,2023,38(1):71-76. |
CHAI S W, MIAO X X, YAO G Z,et al.GC-MS fingerprints and chemical pattern recognition of volatile oil in Asari Herba from different origins[J].Drugs & Clinic,2023,38(1):71-76. | |
18 | JEONG J, COHU C, KERKEB L,et al.Chloroplast Fe(Ⅲ) chelate reductase activity is essential for seedling viability under iron limiting conditions[J].Proceedings of the National Academy of Sciences of the United States of America,2008,105(30):10619-10624. |
19 | 匡艳辉,廖丰蕴,李雯珊,等.一测多评法测定细辛中5种成分含量[J].中药材,2019,42(9):2091-2095. |
KUANG Y H, LIAO F Y, LI W S,et al.Determination of the contents of five components in Asarum by the quantitative analysis of multi-components by single marker (QAMS)[J].Journal of Chinese Medicinal Materials,2019,42(9):2091-2095. | |
20 | 宋双红,色林格,陈蓓,等.HPLC法测定4种细辛中马兜铃酸Ⅰ和细辛脂素[J].中成药,2014,36(8):1711-1715. |
SONG S H, SE L G, CHEN B,et al.Determination of aristolochic acid Ⅰ and asarinin in four species of Asari Radix et Rhizoma by HPLC[J].Chinese Traditional Patent Medicine,2014,36(8):1711-1715. |
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