NCBI Taxonomy: 73987

Pulicaria canariensis (ncbi_taxid: 73987)

found 40 associated metabolites at species taxonomy rank level.

Ancestor: Pulicaria

Child Taxonomies: none taxonomy data.

Ferulic acid

(E)-3-(4-hydroxy-3-methoxyphenyl)prop-2-enoic acid

C10H10O4 (194.0579)


trans-Ferulic acid is a highly abundant phenolic phytochemical which is present in plant cell walls. Ferulic acid is a phenolic acid that can be absorbed by the small intestine and excreted through the urine. It is one of the most abundant phenolic acids in plants, varying from 5 g/kg in wheat bran to 9 g/kg in sugar-beet pulp and 50 g/kg in corn kernel. It occurs primarily in seeds and leaves both in its free form (albeit rarely) and covalently linked to lignin and other biopolymers. It is usually found as ester cross-links with polysaccharides in the cell wall, such as arabinoxylans in grasses, pectin in spinach and sugar beet, and xyloglucans in bamboo. It also can cross-link with proteins. Due to its phenolic nucleus and an extended side chain conjugation (carbohydrates and proteins), it readily forms a resonance-stabilized phenoxy radical which accounts for its potent antioxidant potential. Food supplementation with curcumin and ferulic acid is considered a nutritional approach to reducing oxidative damage and amyloid pathology in Alzheimer disease (PMID:17127365, 1398220, 15453708, 9878519). Ferulic acid can be found in Pseudomonas and Saccharomyces (PMID:8395165). Ferulic acid is a ferulic acid consisting of trans-cinnamic acid bearing methoxy and hydroxy substituents at positions 3 and 4 respectively on the phenyl ring. It has a role as an antioxidant, a MALDI matrix material, a plant metabolite, an anti-inflammatory agent, an apoptosis inhibitor and a cardioprotective agent. It is a conjugate acid of a ferulate. Ferulic acid is a natural product found in Haplophyllum griffithianum, Visnea mocanera, and other organisms with data available. Ferulic acid is a metabolite found in or produced by Saccharomyces cerevisiae. See also: Angelica sinensis root (part of). Widely distributed in plants, first isolated from Ferula foetida (asafoetida). Antioxidant used to inhibit oxidn. of fats, pastry products, etc. Antifungal agent used to prevent fruit spoilage. trans-Ferulic acid is found in many foods, some of which are deerberry, peach, shea tree, and common bean. A ferulic acid consisting of trans-cinnamic acid bearing methoxy and hydroxy substituents at positions 3 and 4 respectively on the phenyl ring. D018373 - Peripheral Nervous System Agents > D018689 - Sensory System Agents D005765 - Gastrointestinal Agents > D002756 - Cholagogues and Choleretics D002317 - Cardiovascular Agents > D000959 - Antihypertensive Agents D019995 - Laboratory Chemicals > D007202 - Indicators and Reagents D002491 - Central Nervous System Agents > D000700 - Analgesics D000975 - Antioxidants > D016166 - Free Radical Scavengers D006401 - Hematologic Agents > D000925 - Anticoagulants D020011 - Protective Agents > D000975 - Antioxidants D000893 - Anti-Inflammatory Agents D018501 - Antirheumatic Agents Acquisition and generation of the data is financially supported in part by CREST/JST. KEIO_ID H074 (E)-Ferulic acid is a isomer of Ferulic acid which is an aromatic compound, abundant in plant cell walls. (E)-Ferulic acid causes the phosphorylation of β-catenin, resulting in proteasomal degradation of β-catenin and increases the expression of pro-apoptotic factor Bax and decreases the expression of pro-survival factor survivin. (E)-Ferulic acid shows a potent ability to remove reactive oxygen species (ROS) and inhibits lipid peroxidation. (E)-Ferulic acid exerts both anti-proliferation and anti-migration effects in the human lung cancer cell line H1299[1]. (E)-Ferulic acid is a isomer of Ferulic acid which is an aromatic compound, abundant in plant cell walls. (E)-Ferulic acid causes the phosphorylation of β-catenin, resulting in proteasomal degradation of β-catenin and increases the expression of pro-apoptotic factor Bax and decreases the expression of pro-survival factor survivin. (E)-Ferulic acid shows a potent ability to remove reactive oxygen species (ROS) and inhibits lipid peroxidation. (E)-Ferulic acid exerts both anti-proliferation and anti-migration effects in the human lung cancer cell line H1299[1]. Ferulic acid is a novel fibroblast growth factor receptor 1 (FGFR1) inhibitor with IC50s of 3.78 and 12.5 μM for FGFR1 and FGFR2, respectively. Ferulic acid is a novel fibroblast growth factor receptor 1 (FGFR1) inhibitor with IC50s of 3.78 and 12.5 μM for FGFR1 and FGFR2, respectively.

   

Stigmasterol

(3S,8S,9S,10R,13R,14S,17R)-17-((2R,5S,E)-5-ethyl-6-methylhept-3-en-2-yl)-10,13-dimethyl-2,3,4,7,8,9,10,11,12,13,14,15,16,17-tetradecahydro-1H-cyclopenta[a]phenanthren-3-ol

C29H48O (412.3705)


Stigmasterol is a phytosterol, meaning it is steroid derived from plants. As a food additive, phytosterols have cholesterol-lowering properties (reducing cholesterol absorption in intestines), and may act in cancer prevention. Phytosterols naturally occur in small amount in vegetable oils, especially soybean oil. One such phytosterol complex, isolated from vegetable oil, is cholestatin, composed of campesterol, stigmasterol, and brassicasterol, and is marketed as a dietary supplement. Sterols can reduce cholesterol in human subjects by up to 15\\%. The mechanism behind phytosterols and the lowering of cholesterol occurs as follows : the incorporation of cholesterol into micelles in the gastrointestinal tract is inhibited, decreasing the overall amount of cholesterol absorbed. This may in turn help to control body total cholesterol levels, as well as modify HDL, LDL and TAG levels. Many margarines, butters, breakfast cereals and spreads are now enriched with phytosterols and marketed towards people with high cholesterol and a wish to lower it. Stigmasterol is found to be associated with phytosterolemia, which is an inborn error of metabolism. Stigmasterol is a 3beta-sterol that consists of 3beta-hydroxystigmastane having double bonds at the 5,6- and 22,23-positions. It has a role as a plant metabolite. It is a 3beta-sterol, a stigmastane sterol, a 3beta-hydroxy-Delta(5)-steroid and a member of phytosterols. It derives from a hydride of a stigmastane. Stigmasterol is a natural product found in Ficus auriculata, Xylopia aromatica, and other organisms with data available. Stigmasterol is a steroid derivative characterized by the hydroxyl group in position C-3 of the steroid skeleton, and unsaturated bonds in position 5-6 of the B ring, and position 22-23 in the alkyl substituent. Stigmasterol is found in the fats and oils of soybean, calabar bean and rape seed, as well as several other vegetables, legumes, nuts, seeds, and unpasteurized milk. See also: Comfrey Root (part of); Saw Palmetto (part of); Plantago ovata seed (part of). Stigmasterol is an unsaturated plant sterol occurring in the plant fats or oils of soybean, calabar bean, and rape seed, and in a number of medicinal herbs, including the Chinese herbs Ophiopogon japonicus (Mai men dong) and American Ginseng. Stigmasterol is also found in various vegetables, legumes, nuts, seeds, and unpasteurized milk. A 3beta-sterol that consists of 3beta-hydroxystigmastane having double bonds at the 5,6- and 22,23-positions. C1907 - Drug, Natural Product > C28178 - Phytosterol > C68437 - Unsaturated Phytosterol

   

Ayanin

4H-1-BENZOPYRAN-4-ONE, 5-HYDROXY-2-(3-HYDROXY-4-METHOXYPHENYL)-3,7-DIMETHOXY-

C18H16O7 (344.0896)


3,5-dihydroxy-3,4,7-trimethoxyflavone is a trimethoxyflavone that is quercetin in which the hydroxy groups at positions 3, 4 and 7 have been replaced by methoxy groups. It has a role as a plant metabolite. It is a dihydroxyflavone and a trimethoxyflavone. It is functionally related to a quercetin. It is a conjugate acid of a 3,5-dihydroxy-3,4,7-trimethoxyflavone(1-). Ayanin is a natural product found in Psiadia viscosa, Solanum pubescens, and other organisms with data available. A trimethoxyflavone that is quercetin in which the hydroxy groups at positions 3, 4 and 7 have been replaced by methoxy groups.

   

Amyrin

(3S,4aR,5R,6aR,6bR,8S,8aR,12aR,14aR,14bR)-4,4,6a,6b,8a,11,11,14b-Octamethyl-1,2,3,4,4a,5,6,6a,6b,7,8,8a,9,10,11,12,12a,14,14a,14b-eicosahydro-picen-3-ol

C30H50O (426.3861)


Beta-amyrin is a pentacyclic triterpenoid that is oleanane substituted at the 3beta-position by a hydroxy group and containing a double bond between positions 12 and 13. It is one of the most commonly occurring triterpenoids in higher plants. It has a role as a plant metabolite and an Aspergillus metabolite. It is a pentacyclic triterpenoid and a secondary alcohol. It derives from a hydride of an oleanane. beta-Amyrin is a natural product found in Ficus pertusa, Ficus septica, and other organisms with data available. See also: Calendula Officinalis Flower (part of); Viburnum opulus bark (part of); Centaurium erythraea whole (part of). A pentacyclic triterpenoid that is oleanane substituted at the 3beta-position by a hydroxy group and containing a double bond between positions 12 and 13. It is one of the most commonly occurring triterpenoids in higher plants. β-Amyrin, an ingredient of Celastrus hindsii, blocks amyloid β (Aβ)-induced long-term potentiation (LTP) impairment. β-amyrin is a promising candidate of treatment for AD[1]. β-Amyrin, an ingredient of Celastrus hindsii, blocks amyloid β (Aβ)-induced long-term potentiation (LTP) impairment. β-amyrin is a promising candidate of treatment for AD[1].

   

Ergosterol peroxide

5-[(3E)-5,6-dimethylhept-3-en-2-yl]-6,10-dimethyl-16,17-dioxapentacyclo[13.2.2.0¹,⁹.0²,⁶.0¹⁰,¹⁵]nonadec-18-en-13-ol

C28H44O3 (428.329)


Ergosterol peroxide is found in fruits. Ergosterol peroxide is obtained from leaves of Ananas comosus (pineapple obtained from leaves of Ananas comosus (pineapple). Ergosterol peroxide is found in pineapple and fruits.

   

3,4',5-Trihydroxy-3',7-dimethoxyflavanone

3,5-dihydroxy-2-(4-hydroxy-3-methoxyphenyl)-7-methoxy-3,4-dihydro-2H-1-benzopyran-4-one

C17H16O7 (332.0896)


3,4,5-Trihydroxy-3,7-dimethoxyflavanone is found in tea. 3,4,5-Trihydroxy-3,7-dimethoxyflavanone is isolated from Blumea balsamifera (sambong). Isolated from Blumea balsamifera (sambong). 3,4,5-Trihydroxy-3,7-dimethoxyflavanone is found in tea.

   

Calenduladiol

(1R,2R,4S,5S,8R,9R,10R,13R,14R,17S,19R)-1,2,5,14,18,18-hexamethyl-8-(prop-1-en-2-yl)pentacyclo[11.8.0.0²,¹⁰.0⁵,⁹.0¹⁴,¹⁹]henicosane-4,17-diol

C30H50O2 (442.3811)


Calenduladiol is a member of the class of compounds known as triterpenoids. Triterpenoids are terpene molecules containing six isoprene units. Calenduladiol is practically insoluble (in water) and an extremely weak acidic compound (based on its pKa). Calenduladiol can be found in sunflower, which makes calenduladiol a potential biomarker for the consumption of this food product.

   

3,5-Dihydroxy-4,7-dimethoxyflavanone

3,5-Dihydroxy-4,7-dimethoxyflavanone

C17H16O6 (316.0947)


   

Ergosterol peroxide

Ergosterol peroxide

C28H44O3 (428.329)


   

Stigmasterin

(3S,8S,9S,10R,13R,14S,17R)-17-[(E,2R,5S)-5-ethyl-6-methyl-hept-3-en-2-yl]-10,13-dimethyl-2,3,4,7,8,9,11,12,14,15,16,17-dodecahydro-1H-cyclopenta[a]phenanthren-3-ol

C29H48O (412.3705)


C1907 - Drug, Natural Product > C28178 - Phytosterol > C68437 - Unsaturated Phytosterol

   

calenduladiol

(1R,3aS,4S,5aR,5bR,7aR,9S,11aR,11bR,13aR,13bR)-1-Isopropenyl-3a,5a,5b,8,8,11a-hexamethyl-eicosahydro-cyclopenta(a)chrysene-4,9-diol

C30H50O2 (442.3811)


   

3,4,5-Trihydroxy-3,7-dimethoxyflavanone

3,4,5-Trihydroxy-3,7-dimethoxyflavanone

C17H16O7 (332.0896)


   

3-(4-hydroxy-3-methoxyphenyl)prop-2-enoic acid

3-(4-hydroxy-3-methoxyphenyl)prop-2-enoic acid

C10H10O4 (194.0579)


   

(1r,4r,6s,8r,9s,10s,11s)-10-(acetyloxy)-6-formyl-9-isopropyl-1-methyl-5,12-dioxatricyclo[9.1.0.0⁴,⁶]dodecan-8-yl acetate

(1r,4r,6s,8r,9s,10s,11s)-10-(acetyloxy)-6-formyl-9-isopropyl-1-methyl-5,12-dioxatricyclo[9.1.0.0⁴,⁶]dodecan-8-yl acetate

C19H28O7 (368.1835)


   

(1r,2z,4r,5r,7e)-7-(hydroxymethyl)-4-isopropyl-1-methylcyclodeca-2,7-diene-1,5-diol

(1r,2z,4r,5r,7e)-7-(hydroxymethyl)-4-isopropyl-1-methylcyclodeca-2,7-diene-1,5-diol

C15H26O3 (254.1882)


   

(1r,3e,7z,9r,10s)-9-(acetyloxy)-3-(hydroxymethyl)-10-isopropyl-7-methylcyclodeca-3,7-dien-1-yl acetate

(1r,3e,7z,9r,10s)-9-(acetyloxy)-3-(hydroxymethyl)-10-isopropyl-7-methylcyclodeca-3,7-dien-1-yl acetate

C19H30O5 (338.2093)


   

(1r,2r,3e,5r,8e)-9-formyl-5-hydroxy-2-isopropyl-5-methylcyclodeca-3,8-dien-1-yl acetate

(1r,2r,3e,5r,8e)-9-formyl-5-hydroxy-2-isopropyl-5-methylcyclodeca-3,8-dien-1-yl acetate

C17H26O4 (294.1831)


   

(1e,5e,7r,8s,9r)-7,9-bis(acetyloxy)-8-isopropyl-5-methylcyclodeca-1,5-diene-1-carboxylic acid

(1e,5e,7r,8s,9r)-7,9-bis(acetyloxy)-8-isopropyl-5-methylcyclodeca-1,5-diene-1-carboxylic acid

C19H28O6 (352.1886)


   

(1r,4r,6s,8r,9r,10s,11s)-6-formyl-10-hydroxy-9-isopropyl-1-methyl-5,12-dioxatricyclo[9.1.0.0⁴,⁶]dodecan-8-yl acetate

(1r,4r,6s,8r,9r,10s,11s)-6-formyl-10-hydroxy-9-isopropyl-1-methyl-5,12-dioxatricyclo[9.1.0.0⁴,⁶]dodecan-8-yl acetate

C17H26O6 (326.1729)


   

(1e,5z,7r,8s,9r)-7,9-bis(acetyloxy)-8-isopropyl-5-methylcyclodeca-1,5-diene-1-carboxylic acid

(1e,5z,7r,8s,9r)-7,9-bis(acetyloxy)-8-isopropyl-5-methylcyclodeca-1,5-diene-1-carboxylic acid

C19H28O6 (352.1886)


   

(1r,2e,4r,5r,7z)-7-(hydroxymethyl)-4-isopropyl-1-methylcyclodeca-2,7-diene-1,5-diol

(1r,2e,4r,5r,7z)-7-(hydroxymethyl)-4-isopropyl-1-methylcyclodeca-2,7-diene-1,5-diol

C15H26O3 (254.1882)


   

(1r,2r,3z,5r,8e)-9-formyl-5-hydroxy-2-isopropyl-5-methylcyclodeca-3,8-dien-1-yl acetate

(1r,2r,3z,5r,8e)-9-formyl-5-hydroxy-2-isopropyl-5-methylcyclodeca-3,8-dien-1-yl acetate

C17H26O4 (294.1831)


   

(1r,3e,7z,9r,10s)-9-(acetyloxy)-3-formyl-10-isopropyl-7-methylcyclodeca-3,7-dien-1-yl acetate

(1r,3e,7z,9r,10s)-9-(acetyloxy)-3-formyl-10-isopropyl-7-methylcyclodeca-3,7-dien-1-yl acetate

C19H28O5 (336.1937)


   

1-[(1s,3ar,4r,7s,7as)-4-hydroxy-7-isopropyl-4-methyl-octahydroinden-1-yl]-2-hydroxyethanone

1-[(1s,3ar,4r,7s,7as)-4-hydroxy-7-isopropyl-4-methyl-octahydroinden-1-yl]-2-hydroxyethanone

C15H26O3 (254.1882)


   

(1r,3as,3bs,7s,9ar,9bs,11ar)-1-[(2s,3e,5s)-5-ethyl-6-methylhept-3-en-2-yl]-9a,11a-dimethyl-1h,2h,3h,3ah,3bh,4h,6h,7h,8h,9h,9bh,10h,11h-cyclopenta[a]phenanthren-7-ol

(1r,3as,3bs,7s,9ar,9bs,11ar)-1-[(2s,3e,5s)-5-ethyl-6-methylhept-3-en-2-yl]-9a,11a-dimethyl-1h,2h,3h,3ah,3bh,4h,6h,7h,8h,9h,9bh,10h,11h-cyclopenta[a]phenanthren-7-ol

C29H48O (412.3705)


   

(5e,8r,9s,10s)-8,10-dihydroxy-6-(hydroxymethyl)-9-isopropyl-2-methylidenecyclodec-5-en-1-one

(5e,8r,9s,10s)-8,10-dihydroxy-6-(hydroxymethyl)-9-isopropyl-2-methylidenecyclodec-5-en-1-one

C15H24O4 (268.1675)


   

(1s,2s,3r,4r,6e,10r)-2-hydroxy-6-(hydroxymethyl)-3-isopropyl-10-methyl-11-oxabicyclo[8.1.0]undec-6-en-4-yl acetate

(1s,2s,3r,4r,6e,10r)-2-hydroxy-6-(hydroxymethyl)-3-isopropyl-10-methyl-11-oxabicyclo[8.1.0]undec-6-en-4-yl acetate

C17H28O5 (312.1937)


   

(1s,2s,5s,6r,9s,10r,15s)-5-(5,6-dimethylhept-3-en-2-yl)-6,10-dimethyl-16,17-dioxapentacyclo[13.2.2.0¹,⁹.0²,⁶.0¹⁰,¹⁵]nonadec-18-en-13-ol

(1s,2s,5s,6r,9s,10r,15s)-5-(5,6-dimethylhept-3-en-2-yl)-6,10-dimethyl-16,17-dioxapentacyclo[13.2.2.0¹,⁹.0²,⁶.0¹⁰,¹⁵]nonadec-18-en-13-ol

C28H44O3 (428.329)


   

[(1e,7s,8s,9r)-7,9-bis(acetyloxy)-8-isopropyl-5-methylidene-6-oxocyclodec-1-en-1-yl]methyl acetate

[(1e,7s,8s,9r)-7,9-bis(acetyloxy)-8-isopropyl-5-methylidene-6-oxocyclodec-1-en-1-yl]methyl acetate

C21H30O7 (394.1991)


   

1-[(1s,3ar,4r,7s,7ar)-4-hydroxy-7-isopropyl-4-methyl-octahydroinden-1-yl]-2-hydroxyethanone

1-[(1s,3ar,4r,7s,7ar)-4-hydroxy-7-isopropyl-4-methyl-octahydroinden-1-yl]-2-hydroxyethanone

C15H26O3 (254.1882)


   

(1e,5r,6z,8r,9r)-5,9-dihydroxy-8-isopropyl-5-methylcyclodeca-1,6-diene-1-carbaldehyde

(1e,5r,6z,8r,9r)-5,9-dihydroxy-8-isopropyl-5-methylcyclodeca-1,6-diene-1-carbaldehyde

C15H24O3 (252.1725)


   

1-[(1s,3as,7s,7as)-7-isopropyl-4-methylidene-octahydroinden-1-yl]-2-hydroxyethanone

1-[(1s,3as,7s,7as)-7-isopropyl-4-methylidene-octahydroinden-1-yl]-2-hydroxyethanone

C15H24O2 (236.1776)


   

(1s,3r,4s,5r,6e,10r)-5-(acetyloxy)-1-formyl-4-isopropyl-7-methyl-11-oxabicyclo[8.1.0]undec-6-en-3-yl acetate

(1s,3r,4s,5r,6e,10r)-5-(acetyloxy)-1-formyl-4-isopropyl-7-methyl-11-oxabicyclo[8.1.0]undec-6-en-3-yl acetate

C19H28O6 (352.1886)


   

2-(3,4-dimethoxyphenyl)-5,7-dihydroxy-3-methoxychromen-4-one

2-(3,4-dimethoxyphenyl)-5,7-dihydroxy-3-methoxychromen-4-one

C18H16O7 (344.0896)


   

(1r,3e,7e,9r,10s)-9-(acetyloxy)-3-(hydroxymethyl)-10-isopropyl-7-methylcyclodeca-3,7-dien-1-yl acetate

(1r,3e,7e,9r,10s)-9-(acetyloxy)-3-(hydroxymethyl)-10-isopropyl-7-methylcyclodeca-3,7-dien-1-yl acetate

C19H30O5 (338.2093)


   

(1e,5r,6e,8r,9r)-5,9-dihydroxy-8-isopropyl-5-methylcyclodeca-1,6-diene-1-carbaldehyde

(1e,5r,6e,8r,9r)-5,9-dihydroxy-8-isopropyl-5-methylcyclodeca-1,6-diene-1-carbaldehyde

C15H24O3 (252.1725)


   

(1r,3e,7e,9r,10s)-9-(acetyloxy)-3-formyl-10-isopropyl-7-methylcyclodeca-3,7-dien-1-yl acetate

(1r,3e,7e,9r,10s)-9-(acetyloxy)-3-formyl-10-isopropyl-7-methylcyclodeca-3,7-dien-1-yl acetate

C19H28O5 (336.1937)


   

[(1r,4e,7r,8s,9s,10r)-7,9-bis(acetyloxy)-8-isopropyl-1-methyl-11-oxabicyclo[8.1.0]undec-4-en-5-yl]methyl acetate

[(1r,4e,7r,8s,9s,10r)-7,9-bis(acetyloxy)-8-isopropyl-1-methyl-11-oxabicyclo[8.1.0]undec-4-en-5-yl]methyl acetate

C21H32O7 (396.2148)


   

(1s,3r,4s,5r,6z,10r)-5-(acetyloxy)-1-formyl-4-isopropyl-7-methyl-11-oxabicyclo[8.1.0]undec-6-en-3-yl acetate

(1s,3r,4s,5r,6z,10r)-5-(acetyloxy)-1-formyl-4-isopropyl-7-methyl-11-oxabicyclo[8.1.0]undec-6-en-3-yl acetate

C19H28O6 (352.1886)


   

1-[(1s,3ar,7s,7ar)-7-isopropyl-4-methylidene-octahydroinden-1-yl]-2-hydroxyethanone

1-[(1s,3ar,7s,7ar)-7-isopropyl-4-methylidene-octahydroinden-1-yl]-2-hydroxyethanone

C15H24O2 (236.1776)