• Title/Summary/Keyword: Beta-Caryophyllene

Search Result 110, Processing Time 0.027 seconds

Frangrance and Chemical Composition of Essential Oil in Cone of Metasequoia (Metasequoia glyptostroboides Hu et Cheng) (메타세콰이아 (Metasequoia glyptostroboides)구과(毬果) 정유의 향취 및 휘발성 화학성분)

  • Yeon, Bo-Ram;Cho, Hae-Me;Jeong, Mi-Soon;Kim, Song-Mun
    • Korean Journal of Weed Science
    • /
    • v.31 no.2
    • /
    • pp.146-151
    • /
    • 2011
  • Essential oil was extracted from cones of metasequoia (Metasequoia glyptostroboides) by steam distillation, fragrance was determined by sensorial analysis and chemical compositions were analyzed by gas chromatography-mass spectrometry with solid-phase microextraction apparatus. Metasequia contained 0.40% of essential oil in the cone. Major impact fragrances of the essential oil were woody, coniferous and herbal, and minor impact fragrances were minty, spicy and oily. There were nine constituents in the essential oil : 8 hydrocarbons and 1 oxide. Constituents were limonene (66.18%), ${\delta}$-3-carene (11.11%), ${\beta}$-caryophyllene (6.66%), ${\beta}$-myrcene (5.92%), ${\beta}$-pinene (4.14%), caryophyllene oxide (2.39%), camphene (2.32%), ${\alpha}$-caryophyllene (0.85%), and tricyclene (0.43%). Herbal and minty frangrances could be due to limonene and ${\delta}$-3-carene, spicy frangrance to caryophyllene, woody and coniferous frangrances to ${\alpha}$-pinene and ${\beta}$-pinene, and oily fragrance to camphene.

Analyses of the Chemical Composition of Petasites japonicus (S. et Z.) Maxim Essential Oil and Comparison of the Major Compounds by Crop Year (머위 정유의 화학적 성분 분석 및 수확 연도에 따른 주요 화합물 함량 비교)

  • Choi, Hyang-Sook
    • The Korean Journal of Food And Nutrition
    • /
    • v.30 no.1
    • /
    • pp.156-165
    • /
    • 2017
  • This study investigated the chemical composition of Petasites japonicus (S. et Z.) Maxim essential oil. During the period 2011~2013, P. japonicus (S. et Z.) Maxim plant was investigated for composition of the essential oil. Chemical composition and characteristic compounds of the essential oils from the aerial parts of the plant according to the crop year studied. The essential oils consisted of sesquiterpene compounds, which were the most abundant components. Samples collected in 2011 were found to be richer in oxygenated sesquiterpenes, while samples collected in 2012 and 2013 were richer in diterpene alcohols and sesquiterpene hydrocarbons, respectively. Ninety-two compounds were identified in the P. japonicus (S. et Z.) Maxim essential oil of 2011, and caryophyllene oxide (20.49%), ${\beta}$-caryophyllene (10.28%), ${\beta}$-bisabolene (6.80%), and alloaromadendrene (6.50%) were the major compounds. Seventy-four compounds were identified in the plant essential oil of 2012, and phytol (17.22%), ${\alpha}$-farnesene (15.31%), ${\alpha}$-caryophyllene (9.93%), and ${\beta}$-caryophyllene (6.12%) were the major compounds. Ninety-two compounds were identified in the plant essential oil of 2013, and ${\alpha}$-farnesene (22.42%), ${\alpha}$-caryophyllene (21.49%), pentadecane (15.35%), and germacrene (5.70%) were the major compounds. The content of most of the chemical constituents varied significantly with different harvesting time. The content of ${\alpha}$-caryophyllene and caryophyllene oxide was increased significantly from 2011 to 2013. The content of ${\alpha}$-caryophyllene and isocaryophyllene was decreased significantly from 2011 to 2013.

The Variation of the Major Compounds of Artemisia princeps var. orientalis (Pampan) Hara Essential Oil by Harvest Year (수확 연도에 따른 쑥 정유의 주요 화합물 함량 변화)

  • Choi, Hyang-Sook
    • The Korean Journal of Food And Nutrition
    • /
    • v.28 no.4
    • /
    • pp.533-543
    • /
    • 2015
  • This study investigated the chemical composition of Artemisia princeps var. orientalis (Pampan) Hara (ssuk in Korea) essential oil and the quantitative changes of major terpene compounds according to the time of harvest. The essential oils obtained by hydrodistillation extraction from the aerial parts of ssuk were analyzed by GC and GC-MS. The essential oil composition of ssuk was characterized by higher contents of mono- and sesqui- terpene compounds. Ninety-nine volatile flavor compounds were identified in the essential oil from ssuk harvested in 2010, with camphor (11.9%), ${\beta}-caryophyllene$ (9.11%), dehydrocarveol (8.51%), and borneol (7.72%) being the most abundant compounds. Eighty-three compounds were identified in the essential oil from the plant harvested in 2011, with borneol (12.36%), caryophyllene oxide (12.29%), ${\beta}-caryophyllene$ (10.24%), camphor (9.13%), and thujone (8.4%) being the most abundant compounds. Eighty-four compounds were identified in the essential oil from the plant harvested in 2012, with ${\beta}-caryophyllene$ (20.25%), caryophyllene oxide (14.63%), and thujone (11.55%) being the major compounds. Eighty-nine compounds were identified in the essential oil from the plant harvested in 2013, with thujone (23.11%), alloaromadendrene oxide (12.3%), and ${\beta}-caryophyllene$ (11.48%) being the most abundant compounds. Thujone and aromadendrene oxide contents increased significantly from 2010 to 2013, while camphor and dehydrocarveol contents decreased significantly during those 4 years. The quantitative changes in these 4 compounds according to the time of harvest can served as a quality index for ssuk essential oil. The ecological responses to recent climate changes may be reflected in the chemical components of natural plant essential oils.

Volatile Flavor Components of Artemisia selengensis and Cryptotaenia japonica (물쑥 및 파드득 나물의 휘발성 풍미성분)

  • Lee, Mie-Soon
    • Korean Journal of Food Science and Technology
    • /
    • v.19 no.3
    • /
    • pp.279-284
    • /
    • 1987
  • Volatile components of Artemisia selengensis and Cryptotaenia japonica. Korean wild vegetables, were collected by steam distillation. Samples were examined by gas chromatography (GC) and combinded gas chromatography-mass spectrometry (GC-MS). Seven components of ${\alpha}-pinene$, camphene, ${\beta}-pinene$, myrcene limonene, r-terpinene, and caryophyllene, and two components of ${\alpha}-pinene$ and ${\beta}-pinene$ were confirmed respectively in Artemisia selengensis and Cryptotaenia japonica. The remaining components are presumed to be elemene, caryophyllene, and humulene in the latter.

  • PDF

Essential Oil Content and Composition of Aromatic Constituents in Leaf of Saururus chinensis, Angelica dahurica and Cnidium officinale (삼백초, 구릿대, 천궁의 잎 향기성분 조성과 정유함량)

  • Kim, Sang-Kuk;Kim, Young-Hyo;Kang, Dong-Kyoon;Chung, Sang-Hwan;Lee, Seong-Phil;Lee, Sang-Chul
    • Korean Journal of Medicinal Crop Science
    • /
    • v.6 no.4
    • /
    • pp.299-304
    • /
    • 1998
  • This experiment was conducted to determine the essential oil content and the aromatic constituents in the leaves of Saururus chinensis Baill, Angelica dahurica Fischer and Cnidium officinale Makino. Volatile aromatic compounds in three aromatic medicinal plants were extracted with steam distillation extraction method and identified by GC/MS. Major aromatic compounds in Saururus chinensis Baill were 1,6-octadien-3-ol, 1, 3-benzodioxole, myristicin, ${\alpha}-cadinol$ and patchouene. Major aromatic compounds in Angelica dahurica Fischer were terpinolene, 3-carene, ${\beta}-caryophyllene$, ${\beta}-cubebene$, butylated hydroxy toluene, caryophyllene oxide, piperonal, and in Cnidium officinale Makino were aristolene, benzocycloheptene, ylangene, valencene, ${\beta}-cedrene$, satene, and menthofuran. Essential oil content was highest in Saururus chinensis plant.

  • PDF

Solvent Extracted Volatile Components of Mushroom Mycelia Cultivated with Citrus Juice Processing Wastes (감귤 주스 착즙박을 이용하여 재배된 버섯균사체의 용매추출에 의한 휘발성 성분)

  • Lee, Chang-Hwan;Yang, Min-Ho;Park, Seung-Rim;Kang, Young-Joo
    • Food Science and Preservation
    • /
    • v.14 no.4
    • /
    • pp.351-355
    • /
    • 2007
  • Solvent-extracted volatile components from dry powder prepared from Citrus unshiu products such as immature Citrus unshiu (PCU), mature Citrus unshiu (MCU), Citrus unshiu peel (CUP), and citrus juice processing wastes (CJPW), were examined. Also, solvent-extracted volatile components from mushroom mycelia of Pycnoporus coccineus (PC), Lentinus edodes (LE), Pleurotus eryngii (PE), Hericium coralloides (HC), Panellus serotinus (PS), and Ganoderma lucidum(GL), all cultivated using citrus pulp solid media, were assayed. Twenty-nine volatile components were identified in dry powder prepared Citrus unshiu and 18 volatile components were characterized from mushroom mycelia. Of these, ${\beta}-elemene$, germacrene-D, and ${\delta}-cadinene$, were derived from CJPW, but caryophyllene, hexadecanoic acid, decanoic acid, and tetradecanoic acid were synthesized by mushroom mycelia.

Analysis of the Terpenoids from Syneilesis palmata Essential Oil and the Variation of the Sesquiterpene Compounds by Harvest Year (우산나물 정유의 테르펜 화합물 분석 및 수확 연도에 따른 Sesquiterpene 화합물 변화 조사)

  • Choi, Hyang-Sook
    • The Korean Journal of Food And Nutrition
    • /
    • v.26 no.2
    • /
    • pp.287-294
    • /
    • 2013
  • This study was investigated the chemical composition from Syneilesis palmata essential oil and the tendency of variation of the sesquiterpene compounds according to the harvesting time. The essential oils obtained by hydro distillation from the aerial parts of Syneilesis palmata were analyzed by GC and GC-MS. Ninety-eight compounds consisting of 9 aliphatic hydrocarbons, 17 sesquiterpene hydrocarbons, 11 aliphatic aldehydes, 1 terpene aldehyde, 8 aliphatic alcohols, 4 monoterpene alcohols, 16 sesquiterpene alcohols, 3 diterpene alcohols, 6 ketones, 11 esters, 8 oxides and epoxides, 3 acids and 1 miscellaneous one were identified from the oil. Spathulenol (22.33%) was the most abundant compound, followed by ${\beta}$- caryophyllene (6.23%), germacrene D (5.57%), longipinane (4.10%), and epiglobulol (3.65%). The volatile composition of Syneilesis palmata was characterized by higher contents of sesquiterpene compounds, especially sesquiterpene alcohols. The total content of 13 sesquiterpene compounds was decreased significantly from 2010 to 2012. ${\alpha}$-Caryophyllene, ${\beta}$-bisabolene, elemol, germacrene D, ${\beta}$-zingiberene, longipinane, and ${\beta}$-caryophyllene alcohol contents decreased, while ${\beta}$-bisabolol content increased during 3 years. The ecological responses to recent climate change may be influenced in the chemical components of natural plant terpenoids.

Analysis of the content of essential oils from Ssajuari and Sajabalssuk according to storage period (강화산 애엽(艾葉)의 보관기간에 따른 정유성분의 변화)

  • Choi, Ho-Young;Ham, In-Hye;Choi, Cheol-Han;Bang, Chan-Sung;Lee, Byung-Hee;Cheng, Hae-Gon;Bu, Young-Min;Kim, Ho-Cheol
    • The Korea Journal of Herbology
    • /
    • v.22 no.4
    • /
    • pp.271-277
    • /
    • 2007
  • Objective : The content of essential oils from Ssajuari and Sajabalssuk was analyzed based on storage period. A total of eight samples old Ssajuari (harvested in 2000, 2001, 2002, 2003, and 2004), fresh Ssajuari (harvested in 2004), old Sajabalssuk (harvested in 2002), and fresh Sajabalssuk (harvested in 2004) was analyzed. Methods : The analysis of the content of essential oils from Ssajuari and Sajabalssuk was conducted by GC/MS. Results : The main essential oils of Ssajuari were ${\beta}$-thujone and 1.8-cineole. The ${\alpha},{\beta}$-thujone and 1,8-cineole were increased but the caryophyllene oxide was decreased. in accordance with storage period. The main essential oils of fresh Sajabalssuk were trans-${\beta}$-caryophyllene, terpinen-4-ol. The main essential oils of old Sajabalssuk was ${\beta}$-thujone and 1,8-cineole like Ssajuari. But 1,8-cineole was higher than that of Ssajuari samlpes. Conclusion : All samples had trans-sabinene hydrate, 1,8-cineole, terpinen-4-ol and caryophyllene oxide. According to stored year, ${\beta}$-thujone, ${\alpha}$-thujone were increased but terpinen-4-ol, caryophyllene oxide were decreased.

  • PDF

Comparison of Volatile Aroma Compounds between Synurus deltoides and Aster scaber Leaves (수리취와 참취 엽의 휘발성 향기성분 비교)

  • Lee, Kyeong-Cheol;Sa, Jou-Young;Wang, Myeong-Hyeon;Han, Sang-Sup
    • Korean Journal of Medicinal Crop Science
    • /
    • v.20 no.1
    • /
    • pp.54-62
    • /
    • 2012
  • This study was investigated to compare the volatile aroma compounds of Synurus deltoides and Aster scaber. The volatile aroma compounds from Synurus deltoides and Aster scaber were extracted by soild-phase microextraction (SPME) methods. S. deltoides had 97 volatile aroma compounds such as including 5-acetyl-1,2-dihydro acenaphtylene (14.63%), ${\beta}$-cubebene (9.31%), caryophyllene (8.97%), ${\beta}$-chamigrene (7.14%), ${\beta}$-selinene (2.71), ${\alpha}$-farnesene (2.47%), ${\alpha}$-bergamotene (2.26%), ${\beta}$-elemene (1.94%), etc. A. scaber had 84 volatile aroma compounds such as (+)-epi-bicyclosesquiphellandrene (10.38%), terpinolen (10.09%), caryophyllene (6.04%), 8-isopropenyl-1,5-dimethyl-1,5-cyclodeca diene (5.42%), ${\alpha}$-himachalene (5.04%), ${\beta}$-thujene (4.37%), ${\beta}$-pinene (4.28%), ${\beta}$-cubebene (3.99%), etc. Conclusively, the main common volatile aroma compounds in S. deltoides and A. scaber leaves were 19 volatile aroma compounds such as caryophyllene, terpinolen, ${\beta}$-cubebene. But the composition and amount of volatile aroma compounds were very different between the two species.

Analysis of Volatile Oil Components and Identification of Chemotypes in Jaso (Perilla frutescens) Collected in Korea

  • Ohk, Hyun-Chung;Chae, Young-Am
    • Korean Journal of Medicinal Crop Science
    • /
    • v.12 no.2
    • /
    • pp.97-101
    • /
    • 2004
  • Volatile oil components were analysed in Perilla frutescens accessions collected from different regions in South Korea and identified chemotypes based on the major volatile oil components. Major components out of 30 compounds identified were limonene, perillaldehyde, perillaketone, isoegomaketone, beta-caryophyllene, beta-farnesene, myristicin, and dillapiole. P. frotescens collections were classified into four chemotypes : PA type (57.7% limonene and 19.8% perillaldehyde), PK type (89.8% perillaketone), ST type (82.4% sesquiterpene, as 54.5% beta-caryophyllene and 27.9% beta-farnesene) and PP type (40.3% phenylpropenes as 13.6% myristicin and 26.7% dillapiole) and 37.8% sesquiterpenes. The majorities of P. frutescens collections in this study belong to PA type (41.9%) and PK type(38.8%).