| Literature DB >> 35520206 |
Mei Gao1, Xiaomin Han2, Ying Sun1, Hongjiang Chen3, Yun Yang4, Yangyang Liu4, Hui Meng4, Zhihui Gao1, Yanhong Xu1, Zheng Zhang1, Jianping Han1.
Abstract
The main chemical constituents of agarwood are sesquiterpenes and chromones, which can be divided into different categories depending on their molecular skeletons. Agarwoods are obtained from different plant species: Aquilaria sinensis, A. malaccensis, A. crassna, and A. subintegra. In this review, we systematically summarized the structures of 367 compounds isolated from agarwoods originating from four main species. We structurally classified all the components into 11 different types and summarized the number of compounds in each type. Different and identical components were obtained by enumerating the chemical compositions of the different species. Knowledge regarding the chemical constituents of agarwoods of different species will aid understanding of the chemical compositions of agarwoods and will subsequently identify similar compounds that can serve as standards for quality control to provide a reference for future studies on agarwoods from different species and to increase their usefulness. This journal is © The Royal Society of Chemistry.Entities:
Year: 2019 PMID: 35520206 PMCID: PMC9060603 DOI: 10.1039/c8ra09409h
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Species in the genus Aquilaria (accepted names) (The Plant List, 2013)
| Species | Authorship |
|---|---|
|
| Merr., 1922 |
|
| Pierre ex Lecomte, 1915 |
|
| P. H. Hô, 1986 |
|
| P. H. Hô, 1986 |
|
| Tiegh., 1893 |
|
| (Merr.) Hallier L, 1922 |
|
| (Elmer) Hallier L, 1922 |
|
| Pierre ex Lecomte, 1915 |
|
| (Decne.) Ridl., 1901 |
|
| Hallier L, 1922 |
|
| (Oken) Merr., 1950 |
|
| Ridl., 1901 |
|
| Hallier L, 1922 |
|
| Lam., 1783 |
|
| Baill., 1875 |
|
| (Quisumb) Ding Hou, 1960 |
|
| Ridl., 1924 |
|
| K. Le-Cong and Kessler, 2005 |
|
| (Lour.) Spreng., 1825 |
|
| Ding Hou, 1964 |
|
| (Elmer) Hallier L, 1922 |
|
| S. C. Huang, 1985 |
Scheme 1Different types of sesquiterpenes in agarwood.
Sesquiterpenes from different speciesa,b,c
| No. | Compounds and names | Species | |||
|---|---|---|---|---|---|
|
|
|
|
| ||
|
| |||||
| F1 | α-Agarofuran |
|
|
| — |
| F2 | β-Agarofuran |
|
|
|
|
| F3 | Dihydro-β-agarofuran |
|
|
|
|
| F4 | Epoxy-β-agarofuran | — |
| — | — |
| F5 | 4-Hydroxy-dihydro-agarofuran |
|
| — | — |
| F6 | 3,4-Dihydroxydihydroagarofuran | — |
| — | — |
| F7 | Baimuxinol |
| — | — | — |
| F8 | Isobaimuxinol |
| — | — | — |
| F9 | Dehydrobaimuxinol |
| — | — | — |
| F10 | (1 | — |
| — | — |
| F11 | Baimuxifuranic acid |
| — | — | — |
| F12 | (1 | — |
| — | — |
| F13 | (1 | — |
| — | — |
| F14 | Nor-keto-agarofuran | — |
|
|
|
| F15 | 4-Hydroxyl-baimuxinol |
| — | — | — |
|
| |||||
| S1 | (2 |
|
|
|
|
| S2 | Isoagarospirol | — |
| — | — |
| S3 | Oxo-agarospirol (baimuxinal) |
|
|
|
|
| S4 | Baimuxinic acid (Bai Mu Xiang acid) |
| — | — | — |
| S5 |
| — |
| — | — |
| S6 |
| — |
| — | — |
| S7 |
| — |
| — | — |
| S8 |
| — |
| — | — |
| S9 | (4 |
|
| — | — |
| S10 | Hinesol |
| — | — | — |
| S11 | Acorenone B | — |
|
|
|
| S12 | 4- |
| — | — | — |
| S13 | 4- |
| — | — | — |
| S14 | 15-Hydroxyacorenone |
| |||
|
| |||||
| E1 | 10- |
|
|
|
|
| E2 | (5 | — |
|
|
|
| E3 | (5 | — |
|
|
|
| E4 | Selina-3,11-dien-14-al |
|
|
| |
| E5 | Selina-3,11-dien-14-oic acid (as methyl ester) | — |
| — | — |
| E6 | Selina-4,11-dien-14-al | — |
|
|
|
| E7 | Selina-4,11-dien-14-oic acid (as methyl ester) | — |
| — | — |
| E8 | 9-Hydroxy-selina-4,11-dien-14-oic acid (as methylester) | — |
| — | — |
| E9 | ( |
|
| — | — |
| E10 | ( |
|
| — | — |
| E11 | (2 |
|
| — | — |
| E12 | (2 | — |
| — | — |
| E13 | Agarol (11(13)-eudesmen-12-ol) | — |
| — | — |
| E14 | Selina-3,11-dien-14-ol | — | — |
|
|
| E15 | Isolongifolene |
| — | — | — |
| E16 | α-Eudesmol |
| — | — | — |
| E17 | α-Copaen-11-ol |
| — | — | — |
| E18 | β-Eudesmol |
|
|
|
|
| E19 | γ-Selinene |
| — | — | — |
| E20 | δ-Selinene |
| — | — | — |
| E21 | α-Copaene-8-ol |
| — | — | — |
| E22 | β-Maaliene |
| — | — | — |
| E23 | β-Eudesmol acetate | — | — |
|
|
| E24 | α-Selinene |
| — |
| — |
| E25 | Eudesm-7(11)-en-4 |
| — | — | — |
| E26 | Naphthalene, decahydro-7-isopropenyl-4 | — |
| — | — |
| E27 | 6-Isopropenyl-4,8 |
| — | — | — |
| E28 | Acetic acid, 3-hydroxy-6-isopropenyl-4,8 |
| — | — | — |
| E29 | 5-Desoxylongilobol |
| — |
| — |
| E30 | Eudesma-4-en-8,11-diol | — | — |
| — |
| E31 | Eudesma-4-en-11,15-diol |
| — |
| — |
| E32 | Methyl-15-oxo-eudesmane-4,11(13)-dien-12-oate | — | — |
| — |
| E33 | Selina-3,11-dien-9,15-diol |
| — | — | — |
| E34 | (7 |
| — | — | — |
| E35 | (7 |
| — | — | — |
| E36 | (5 |
| — | — | — |
| E37 | (5 |
| — | — | — |
| E38 | (5 |
| — | — | — |
| E39 | Selina-3,11-diene-12,15-dial (=12,15-dioxo-α-selinen) |
| — | — | — |
| E40 | (4αβ,7β,8αβ)-3,4,4α,5,6,7,8,8α-Octahydro-7-[1-(hydroxymethyl)ethenyl]-4α-methylnaphthalene-1-carboxaldehyde |
|
| — | — |
| E41 | Eudesmane-1β,5α,11-triol |
| — | — | — |
| E42 | (−)-7β |
| — | — | — |
| E43 |
|
| — | — | — |
| E44 | 15-Hydroxyl-12-oxo-α-selinen |
| — | — | — |
| E45 | Selina-4,11-diene-12,15-dial |
|
| — | — |
| E46 | (+)-Eudesma-4(14),11(13)-dien-8α,9β-diol |
| — | — | — |
| E47 | (+)-9β-Hydroxyeudesma-4,11(13)-dien-12-al |
| — | — | — |
| E48 | (+)-Eudesma-4,11(13)-dien-8α,9β-diol |
| — | — | — |
| E49 | 12,15-Dioxo-selina-4,11-dine |
| — | — | — |
| E50 | 12-Hydroxy-4(5),11(13)-eudesmadien-15-al |
| — | — | — |
| E51 | (+)-8α-Hydroxyeudesma-3,11(13)-dien-14-al |
| — | — | — |
| E52 | (+)-Eudesma-3,11(13)-dien-8α,9β-diol |
| — | — | — |
| E53 | (4 |
| — | — | — |
| E54 | Selin-11-en-4α-ol |
| — | — | — |
| E55 | Eudesm-4-ene-11,15-diol |
|
| — | — |
|
| |||||
| P1 | (+)-(4 |
|
| — | — |
| P2 | (+)-(4 | — |
|
|
|
| P3 | Eremophila-9,11-dien-8-one (neopetasane) |
|
|
|
|
| P4 |
| — |
| — | — |
| P5 | 8,12-Epoxy-eremophila-9,11(13)-diene |
|
| — | — |
| P6 | (−)-(4 |
|
|
|
|
| P7 | Dehydro-jinkoh-eremol | — |
|
|
|
| P8 | (+)-(4 |
|
|
|
|
| P9 |
| — |
| — | — |
| P10 | Valenc- or eremophil-9-en-12-al(tentative) | — |
| — | — |
| P11 | Calarene | — |
| — | — |
| P12 | 2, | — |
| — | — |
| P13 | Valencene |
| — |
| — |
| P14 | Aristolone | — | — |
| — |
| P15 | Aristolene |
| — | — | — |
| P16 | Nootkatone |
| — | — | — |
| P17 | Calarene | — | — |
| — |
| P18 | 7 |
| — | — | — |
| P19 | 7α- |
| — |
| — |
| P20 | 11,13-Dihydroxy-9(10)-ene-8β,12-epoxyemophilane | — | — |
| — |
| P21 | (4 | — | — |
| — |
| P22 | 2-[(2β,8β,8 | — | — |
| — |
| P23 | 2-[(2β,8α,8 | — | — |
| — |
| P24 | (1β,3α,4 | — | — |
| — |
| P25 | (−)-Eremophila-9-en-8β,11-diol |
| — |
| — |
| P26 | 11-Hydroxy-valenc-1(10)-en-2-one |
| — | — | — |
| P27 | (1β,4αβ,7β,8αβ)-Octahydro-7-[1-(hydroxymethyl)ethenyl]-1,8α-dimethylnaphthalen-4α(2 |
|
| — | — |
| P28 | Ligudicin C |
| — | — | — |
| P29 | (+)-9β,10β-Epoxyeremophila-11(13)-en |
| — | — | — |
| P30 | (+)-11-Hydroxyvalenc-1(10),8-dien-2-one |
| — | — | — |
| P31 | 2-[(2β,4αβ,8β,8αβ)-Decahydro-4α-hydroxy-8,8α-dimethylnaphthalen-2-yl]prop-2-enal |
|
| — | — |
| P32 | (1αβ,2β,3β,4αβ,5β,8αβ)-Octahydro-4α,5-dimethyl-3-(1-methylethenyl)-3 | — |
| — | — |
|
| |||||
| G1 | α-Guaiene | — |
|
|
|
| G2 | α-Bulnesene | — |
|
|
|
| G3 | (−)-Epoxyguai-11-ene (epoxybulnesene) | — |
|
|
|
| G4 | (−)-Guaia-1(10),11-dien-15-ol | — |
|
|
|
| G5 | (−)-Guaia-1(10),11-dien-15-al | — |
| — | — |
| G6 | (−)-Guaia-1(10),11-diene-15-carboxylic acid | — |
| — | — |
| G7 | Methyl guaia-1(10),11-diene-15-carboxylate | — |
| — | — |
| G8 | (−)-Guaia-1(10),11-dien-15,2-olide | — |
| — | — |
| G9 | (−)-2α-Hydroxyguaia-1(10),11-dien-15-oic acid (identified in acidic fraction as Me-ester) | — |
| — | — |
| G10 | (+)-Guaia-1(10),11-dien-9-one | — |
| — | — |
| G11 | Rotundone | — |
| — | — |
| G12 | (+)-1,5-Epoxy-nor-ketoguaiene | — |
| — | — |
| G13 |
|
| — | — | — |
| G14 | Sinenofuranol |
| — | — | — |
| G15 | Sinenofuranal |
| — | — | — |
| G16 | Viridiflorol |
| — | — | — |
| G17 | Ledol |
| — | — | — |
| G18 | γ-Gurjunene |
| — | — | — |
| G19 | Longifolene |
| — | — | — |
| G20 | Aromadendrene | — | — |
| — |
| G21 | Guaiol |
| — | — | — |
| G22 | δ-Guaiene | — | — |
| — |
| G23 | 3,3,7-Trimethyltri-cycloundecan-8-one |
| — | — | — |
| G24 | Cyperotundone | — | — |
|
|
| G25 | Cyclocolorenone | — |
|
|
|
| G26 | α-Cedrol |
| — | — | — |
| G27 | 11β-Hydroxy-13-isopropyl-dihydrodehydrocostus lactone |
| — | — | — |
| G28 | Jumping | — | — |
| — |
| G29 | α-Patchoulene |
| — | — | — |
| G30 | Velleral |
| — | — | — |
| G31 | Isoaromadendrene epoxide |
| — | — | — |
| G32 | Aromadendrene oxide-(1) |
| — | — | — |
| G33 | Aromadendrene oxide-(2) |
| — | — | — |
| G34 | Diepi-α-cederene epoxide |
| — | — | — |
| G35 | 1 | — |
| — | — |
| G36 | α-Gurjunene | — | — |
| — |
| G37 | Chamaejasmone E | — |
| — | — |
| G38 | Chamaejasmone D | — |
| — | — |
| G39 | Auranticanol A | — |
| — | — |
| G40 | Qinanol A |
| — | — | — |
| G41 | Qinanol B |
| — | — | — |
| G42 | Qinanol C |
| — | — | — |
| G43 | Qinanol D |
| — | — | — |
| G44 | Qinanol E |
| — | — | — |
| G45 | Sinenofuranol |
| — | — | — |
| G46 | 3-Oxo-7-hydroxylholosericin A |
| — | — | — |
| G47 | 1,5;8,12-Diepoxyguaia-12-one |
| — | — | — |
| G48 | Qinanlactone |
| — | — | — |
| G49 | Qinan-guaiane-one |
| — | — | — |
| G50 | 7 |
| — | — | — |
| G51 | 1,10-Dioxo-4α |
| — | — | — |
| G52 | 1α-Hydroxy-4β |
| — | — | — |
| G53 | 1α-Hydroxy-4α,10α-dimethyl-5βH-octahydro-azulen-8-one |
| — | — | — |
|
| |||||
| C1 | 8β | — |
| — | — |
| C2 | Gmelofuran | — |
| — | — |
| C3 | (7β,8β,9β)-8,9-Epoxycalamenen-10-one | — | — |
| — |
|
| |||||
| R1 | Jinkohol | — |
| — | — |
| R2 | Jinkohol II | — |
| — | — |
| R3 | Daphnauranol B | — |
| — | — |
| R4 | Daphnauranol C | — |
| — | — |
| R5 | Daphnauranol D | — |
| — | — |
|
| |||||
| O1 | Patchoulialcohol |
| — | — | — |
| O2 | (+)-8β-Hydroxy-longicamphenylone |
| — | — | — |
| O3 | Valerenol | — | — |
| — |
| O4 | Valerenic acid |
| — |
| — |
| O5 | Valerenal |
| — |
| — |
| O6 | Dihydro-neoclovene | — | — |
| — |
| O7 | 2,6-Dimethyl-10-methylene-12-oxatricyclo[7.3.1.0(1,6)]tridec-2-ene |
| — | — | — |
| O8 | β-Elemene | — | — |
|
|
| O9 | α-Bisabolol acetate | — | — | — |
|
| O10 | β-Caryophyllene |
| — | — | — |
| O11 | α-Humulene |
| — | — | — |
| O12 | Humulene diepoxide A |
| — | — | — |
| O13 | Kobusone |
| — | — | — |
| O14 | Santalol |
| — | — | — |
| O15 | ( | — |
|
|
|
| O16 | Caryophyllenol-II |
| — | — | — |
| O17 | Caryophylleneoxide |
|
| — | — |
| O18 | Baldrinal |
| — | — | — |
| O19 | α-Muurolene |
| — | — | — |
| O20 | Elemol |
| — | — | — |
| O21 |
|
| — | — | — |
| O22 | Cubenol |
| — | — | — |
| O23 | 1,2,5,5,8 |
| — | — | — |
| O24 | 1,5,9-Trimethyl-1,5,9-cyclododecatriene |
| — | — | — |
| O25 | Aquilanol A | — |
| — | — |
| O26 | Aquilanol B | — |
| — | — |
| O27 | 12-Hydroxyhumula-2 | — |
| — | — |
| O28 | 14-Hydroxy-α-humulene |
| — | — | — |
A. s, A. m, A. c, and A. su indicate A. sinensis, A. malaccensis, A. crassna, and A. subintegra, respectively.
The reference was not found.
“*” indicates that the agarwood in this article was artificial agarwood.
Scheme 2Different types of chromone derivatives in agarwood.
Chromones from different speciesa,b,c
| No. | Compounds and names | Species | ||
|---|---|---|---|---|
|
|
|
| ||
|
| ||||
| 1 | 2-(2-Phenylethyl)chromone (flindersiachromone) |
|
| — |
| 2 | 6-Hydroxy-2-(2-phenylethyl)chromone (AH3) |
|
|
|
| 3 | 6-Methoxy-2-(2-phenylethyl)chromone (AH4) |
|
| — |
| 4 | 6-Hydroxy-2-[2-(4-methoxyphenyl)ethyl]chromone |
| — | — |
| 5 | 6-Methoxy-2-[2-(3-methoxyphenyl)ethyl]chromone (AH5) |
|
| — |
| 6 | 6,7-Dimethoxy-2-(2-phenylethyl)chromone (AH6) |
|
| — |
| 7 | 5,8-Dihydroxy-2-(2-phenylethyl)chromone (AH7) |
|
| — |
| 8 | 5,8-Dihydroxy-2-[2-(4-methoxyphenyl)ethyl]chromone |
| — | |
| 9 | 6,7-Dimethoxy-2-[2-(4′-methoxyphenyl)ethyl]chromone (AH8) |
|
| — |
| 10 | 6-Methoxy-2-[2-(3-methoxy-4-hydroxyphenyl)ethyl]chromone |
|
| — |
| 11 | 6,8-Dihydroxy-2-[2-(3-methoxy-4-hydroxyphenyl)ethyl]chromone |
| — | — |
| 12 | 6-Hydroxy-2-[2-(3-methoxy-4-hydroxyphenyl)ethyl]chromone |
| — | — |
| 13 | 6-Hydroxy-2-(2′-hydroxy-2-phenylethyl)chromone |
| — | — |
| 14 | 5-Hydroxy-6-methoxy-2-(2-phenylethyl)chromone |
| — | — |
| 15 | 6-Hydroxy-7-methoxy-2-[2-(3′-hydroxy-4′-methoxyphenyl)ethyl]chromone |
| — | — |
| 16 | 6,7-Dimethoxy-2-[2-(3′-hydroxy-4′-methoxyphenyl)ethyl]chromone |
| — | — |
| 17 | 7-Hydroxy-6-methoxy-2-[2-(3′-hydroxy-4′-methoxy-phenyl)ethyl]chromone |
| — | — |
| 18 | 6,7-Dimethoxy-2-[2-(4′-hydroxy-3′-methoxyphenyl)ethyl]chromone |
| — | — |
| 19 | 6,7-Dihydroxy-2-[2-(4′-methoxyphenyl)ethyl]chromone |
| — | — |
| 20 | 6-Hydroxy-7-methoxy-2-[2-(4′-hydroxyphenyl)ethyl]chromone |
| — | — |
| 21 | 6,8-Dihydroxy-2-[2-(3′-hydroxy-4′-methoxyphenyl)ethyl]chromone |
| — | — |
| 22 | 6-Hydroxy-2-[2-(4′-hydroxy-3′-methoxyphenyl)ethenyl]chromone |
| — | — |
| 23 | 2-[2-(4′-Methoxyphenyl)ethyl]chromone |
|
| — |
| 24 | 6-Methoxy-2-[2-(4′-methoxyphenyl)ethyl]chromone |
|
| — |
| 25 | 7,8-Dimethoxy-2-[2-(3′-acetoxyphenyl)ethyl]chromone | — |
| — |
| 26 | 7-Hydroxy-2-(2-phenylethyl)chromone | — |
| — |
| 27 | 6-Hydroxy-2-[2-(4-hydroxyphenyl)ethyl]chromone | — |
| — |
| 28 | 6,8-Dihydroxy-2-(2-phenylethyl)chromone |
|
| — |
| 29 | 6-Hydroxy-7-methoxy-2-(2-phenylethyl)chromone |
|
| — |
| 30 | 5-Hydroxy-6-methoxy-2-[2-(3-hydroxy-4-methoxyphenyl)ethyl]chromone |
| — | — |
| 31 | 6-Methoxy-2-[2-(3-hydroxy-4-methoxyphenyl)ethyl]chromone |
| — | — |
| 32 | 5-Hydroxy-6-methoxy-2-[2-(4-methoxyphenyl)ethyl]chromone |
| — | — |
| 33 | 6-Methoxy-2-[2-(4′-hydroxyphenyl)ethyl]chromone |
| — | — |
| 34 | ( | — | — |
|
| 35 | ( | — | — |
|
| 36 | 2-[2-(3-Methoxy-4-hydroxyphenyl)ethyl]chromone (qinanones B) |
| — |
|
| 37 | 2-[2-(3-Hydroxy-4-methoxyphenyl)ethyl]chromone (qinanones A) |
| — | — |
| 38 | 2-[2-(2-Hydroxy-4-methoxyphenyl)ethyl]chromone (qinanones C) |
| — |
|
| 39 | 2-[2-(4-Hydroxyphenyl)ethyl]chromone (qinanones D) |
| — | — |
| 40 | 2-[2-(3-Hydroxyphenyl)ethyl]chromone (qinanones E) |
| — | — |
| 41 | Qinanone F |
| — | — |
| 42 | 6-Hydroxy-2-[2-(3-hydroxy-4-methoxyphenyl)ethyl]chromone |
| — | — |
| 43 | 5-Hydroxy-6,7-dimethoxy-2-[2-(4′-methoxyphenyl)ethyl]chromone |
| — | — |
| 44 | 5-Hydroxyl-7-methoxy-2-[2-(4′-methoxyphenyl)ethyl]chromone |
| — | — |
| 45 | 5,8-Dihydroxy-6-methoxy-2-(2-phenylethyl)chromone |
| — | — |
| 46 | 6-Methoxy-2-[2-(2′,3′,4′-trihydroxy)phenylethyl]chromone |
| — | — |
| 47 | 6-Hydroxy-7-methoxy-2-[2-(4-methoxyphenyl)ethyl]chromone |
| — | — |
| 48 | 6-Hydroxy-2-[2-(3,4-dimethoxyphenyl)ethyl]chromone |
| — | — |
| 49 | 6,8-Dihydroxy-2-[2-(4-methoxyphenyl)ethyl]chromone |
| — | — |
| 50 | 8-Chloro-6-hydroxy-2-[2-(3-methoxy-4-hydroxyphenyl)ethyl]chromone |
| — | — |
| 51 | 5-Methoxy-6-hydroxy-2-[2-(3-methoxy-4-hydroxyphenyl)ethyl]chromone |
| — | — |
| 52 | ( |
| — | — |
| 53 | ( |
| — | — |
| 54 | 7-Methoxy-2-[2-(4′-hydroxy-phenyl)ethyl]chromone |
| — | — |
| 55 | 7-Hydroxy-2-[2-(4′-methoxyphenyl)ethyl]chromone |
| — | — |
| 56 | 5,6-Dihydroxy-2-[2-(3′-hydroxy-4′-methoxyphenyl)ethyl]chromone |
| — | — |
| 57 | 6-Hydroxy-5-methoxy-2-(2-phenyl-ethyl)chromone |
| — | — |
| 58 | 7-Methoxy-2-(2-phenylethyl)chromone |
|
| — |
| 59 | 8-Chloro-6-hydroxy-2-(2-phenylethyl)chromone |
| — | — |
| 60 | 5-Hydroxy-2-(2-phenylethyl)chromone |
| — | — |
| 61 | 6,7-Dimethoxy-2-[2-(4-hydroxyphenyl)ethyl]chromone |
| — | — |
| 62 | 6,7-Dimethoxy-2-[2-(3-methoxy-4-hydroxyphenyl)ethyl]chromone |
| — | — |
| 63 | 6-Methoxy-7-hydroxy-2-[2-(4-methoxyphenyl)ethyl]chromone |
| — | — |
| 64 | 4′,6-Dihydroxy-3′,7-dimethoxy-2-(2-phenyl)ethylchromone (aquilarone G) |
| — | — |
| 65 | 4′-Hydroxy-6-methoxy-2-(2-phenylethyl)chromone (aquilarone H) |
| — | — |
| 66 | 3′,6-Dihydroxy-4′-methoxy-2-(2-phenylethyl)chromone (aquilarone I) |
| — | — |
| 67 | 5-Hydroxy-6-methoxy-2-[2-(4-methoxyphenyl)ethyl]-4 | — |
| — |
| 68 | 7-Hydroxy-6-methoxy-2-[2-(4-methoxyphenyl)ethyl]-4 | — |
| — |
| 69 | 8-Chloro-6-hydroxy-2-[2-(4-methoxyphenyl)ethyl]chromone |
| — | — |
|
| ||||
| 70 | 6,7-Dihydroxy-2-(2-phenylethyl)-5,6,7,8-tetrahydrochromone |
| — | — |
| 71 | 8-Chloro-2-(2-phenylethyl)-5,6,7-trihydroxy-5,6,7,8-tetrahydrochromone |
| — | — |
| 72 | 8-Chloro-5,6,7-trihydroxy-2-(3-hydroxy-4-methoxyphenethyl)-5,6,7,8-tetrahydro-4 |
| — | — |
| 73 | 5,6,7,8-Tetrahydroxy-2-(3-hydroxy-4-methoxyphenethyl)-5,6,7,8-tetrahydro-4 |
| — | — |
| 74 | (5 |
| — | — |
| 75 | (5 |
|
| — |
| 76 | (5 |
|
| — |
| 77 | Agarotetrol (AH1) |
|
| — |
| 78 | (5 | — |
| — |
| 79 | (5 |
|
| — |
| 80 | 5α,6β,7β,8α-Tetrahydroxy-2-[2-(2-hydroxyphenyl)ethyl]-5,6,7,8-tetrahydrochromone (AH23) | — |
| — |
| 81 | 5α,6β,7β-Trihydroxy-8α-methoxy-2-(2-phenylethy)chromone (AH17) |
|
| — |
| 82 | 5α,6β,7α,8β-Tetrahydroxy-2-[2-(2-hydroxy-phenyl)ethyl]-5,6,7,8-tetrahydrochromone (AH2b) |
|
| — |
| 83 | 5α,6β,7α,8β-Tetrahydroxy-2-[2-(4-methoxy-phenyl)ethyl]-5,6,7,8-tetrahydrochromone (AH2a) | — |
| — |
| 84 | 5α,6β,7β,8α-Tetraacetoxy-2-[2-(4-methoxy-phenyl)ethyl)]-5,6,7,8-tetrahydrochromone (AH1A) | — |
| — |
| 85 | (5 | — |
| — |
| 86 | (5 |
| — | — |
| 87 | (5 |
| — | — |
| 88 | (5 |
| — | — |
| 89 | (5 |
| — | — |
| 90 | (5 |
| — | — |
| 91 | (5 |
| — | — |
| 92 | (5 |
| — | — |
| 93 | (5 |
| — | — |
| 94 | (5 |
| — | — |
| 95 | (5 |
| — | — |
| 96 | (5 |
| — | — |
| 97 |
|
|
| — |
| 98 | (5 |
| — | — |
| 99 | (5 |
| — | — |
| 100 | (5 |
| — | — |
| 101 | (5 |
| — | — |
| 102 | (5 |
| — | — |
| 103 | (5 |
| — | — |
| 104 | (5 |
| — | — |
| 105 | (5 |
| — | — |
| 106 | (5 |
| — | — |
| 107 |
| — |
| — |
| 108 |
| — |
| — |
| 109 |
| — |
| — |
|
| ||||
| 110 | 5,6:7,8-Diepoxy-2-(2-phenylethyl)-5,6,7,8-tetrahydrochromone (oxidoagarochromone A) |
|
|
|
| 111 | 5,6:7,8-Diepoxy-2-[2-(4-methoxyphenyl)ethyl]-5,6,7,8-tetrahydrochromone (oxidoagarochromone B) |
|
|
|
| 112 | 5,6:7,8-Diepoxy-2-[2-(3-hydroxy-4-methoxyphenyl)ethyl]-5,6,7,8-tetrahydrochromone (oxidoagarochromone C) |
|
|
|
| 113 | 5,6-Epoxy-7β-hydroxy-8β-methoxy-2-(2-phenylethyl)chromone |
| — | — |
| 114 | (5 |
| — | — |
| 115 | (5 |
| — | — |
| 116 | (5 |
| — | — |
| 117 | 5α,6α-Epoxy-7β,8α,3′-trihydroxy-4′-methoxy-2-(2-phenylethyl)chromone |
| — | — |
| 118 |
|
|
| — |
| 119 |
|
|
| — |
| 120 | Qinanmer |
| — | — |
| 121 | 2-[2-(4-Glucosyloxy-3-methoxyphenyl)ethyl]chromone |
| — | — |
| 122 | (5 | — |
| — |
| 123 | (5 | — |
| — |
| 124 | 2,2′-Di-(2-phenylethyl)-8,6′-dihydroxy-5,5′-bichromone (AH11) | — |
| — |
| 125 | (5 | — |
| — |
| 126 | (5 | — |
| — |
| 127 | (5 | — |
| — |
| 128 | Dioxin-linked bi-2-(2-phenylethyl)chromone (AH21) | — |
| — |
| 129 | Bi-(5 | — |
| — |
| 130 | AH19a | — |
| — |
| 131 | AH19b | — |
| — |
| 132 | AH20 | — |
| — |
| 133 | (5 |
| — | — |
| 134 | (5 |
| — | — |
| 135 | (5 |
| — | — |
| 136 | (5 |
| — | — |
| 137 | Crassin A | — | — |
|
| 138 | (5 | — | — |
|
| 139 | (5 | — | — |
|
| 140 | Crassin D | — | — |
|
| 141 | Aquilacrassnin A | — | — |
|
| 142 | Aquilacrassnin B | — | — |
|
| 143 | Aquilacrassnin C | — | — |
|
| 144 | Aquilacrassnin D | — | — |
|
| 145 | Aquilacrassnin E | — | — |
|
| 146 | Aquilacrassnin F | — | — |
|
| 147 | (5 |
| — | — |
| 148 | (5 |
| — | — |
| 149 | (5 |
| — | — |
| 150 | (5 |
| — | — |
| 151 | (5 |
| — | — |
| 152 | (5 |
| — | — |
| 153 | (5 |
| — | — |
| 154 | (5 |
| — | — |
| 155 | (5 |
| — | — |
| 156 | (5 |
| — | — |
| 157 | (5 |
| — | — |
| 158 | (5 |
| — | — |
| 159 | (5 |
| — | — |
| 160 | (5 |
| — | — |
| 161 | (5 |
| — | — |
| 162 | (+)-4′-Methoxyaquisinenone G |
| — | — |
A. s, A. m, and A. c indicate A. sinensis, A. malaccensis, and A. crassna, respectively.
The reference was not found.
“*” indicates that the agarwood in this article was artificial agarwood.
Fig. 1(a) The number of different types of sesquiterpenes in agarwood; (b) the number of different types of chromone derivatives in agarwood ((a) 2-(2-phenylethyl)chromones; (b) 5,6,7,8-tetrahydro-2-(2-phenylethyl)chromones; (c) others).
Fig. 2The numbers of sesquiterpenes and chromone derivatives in different species of agarwood.