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      • 순비기나무(Vitex rotundifolia L. fil.)의 부위별 정유성분 조성

        장수정,김영회,김명곤,김계환,윤세억,Jang, Soo-Jung,Kim, Young-Hoi,Kim, Myung-Kon,Kim, Kei-Whan,Yun, Sei-Eok 한국응용생명화학회 2002 한국농화학회지 Vol.45 No.2

        순비기나무의 잎, 꽃, 줄기 및 열매로부터 수증기 증류법으로 정유를 분리한 다음 GC-MS 및 GC를 이용한 표준품과 머무름 시간의 비교에 의해 76종의 성분을 동정하였다. 동정된 성분은 monoterpene hydrocarbons 16종, oxygenated monoterpenes 30종, sesquiterpene hydrocarbons 10종, oxygenated sesquiterpenes 8종, diterpenes 3종, 기타 성분 9종으로서, 특히 ${\alpha}-pinene$, ${\beta}-pinene$, sabinene, 1,8-cineole, terpinen-4-ol, ${\alpha}-terpineol$등의 monoterpene류가 주요 구성성분들이었다. 부위별 주요 구성성분으로서 잎에서는 ${\alpha}-pinene$ (30.25%) > 1,8-cineole (19.89%) > sabinene (9.56%) > ${\alpha}-ternineol$ (7.94%) > ${\beta}-pinene$ (5.69%) > terpinen-4-ol (2.37%), 꽃에서는 ${\alpha}-pinene$ (25.47%) > 1,8-cineole (7.69%) > manoyl oxide(6.21%) > ${\beta}-pinene$ (4.20%) > ${\alpha}-terpineol$ (3.76%) >sabinene (2.78%), 줄기에서는 ${\alpha}-pinene$ (13.24%)>${\alpha}-terpineol$ (10.64%)>1,8-cineole (4.40%)>manoyl oxide (4.02%) > ${\beta}-pinene$ (2.39%) > terninen-4-ol (2.21%), 그리고 열매에서는 ${\alpha}-pinene$ (20.24%) > 1,8-cineole (11.47%) > ${\beta}-pinene$ (9.79%) > u-terpineol (7.08%) > sabinene (3.68%) limonene (2.77%)의 순서로 조성비율이 높았다. 전반적으로 순비기나무의 잎과 열매에서 분리한 정유에서는 monoterpene류의 조성비율이 높았으나 꽃과 줄기에서는 잎이나 열매에 비해 sesquitepene류, diterpene류 이외에도 구조를 동정하지 못하였으나 diterpene류 일 것으로 예상되는 분자량이 비교적 큰 성분들의 조성비율이 높았다. The essential oils isolated from leaves, flowers, stems, and fruits of Vitex rotundifolia by steam distillation and extraction (SDE) method were analyzed by gas chromatography (GC) and gas chromatography-mass spectrometry (GC-MS). A total of 76 components detected by GC, 42 components were identified positively by GC-MS and GC co-injection with authentic standards, and 34 components were identified tentatively by mass spectral data only. They included 16 monoterpene hydrocarbons, 30 oxygenated hydrocarbons, 10 sesquiterpene hydrocarbons, 8 oxygenated sesquiterpenes, 3 diterpenes, and 9 miscellaneous components. The major components in the oil from the leaves were ${\alpha}-pinene$ (30.25%), 1,8-cineole (19.89%), sabinene (9.56%), ${\alpha}-terpineol$ (7.94%), ${\beta}-pinene$ (5.69%), and terpinen-4-ol (2.37%), and those in the flower oil were ${\alpha}-pinene$ (25.47%), 1,8-cineole (7.69%), manoyl oxide (6.21%), ${\beta}-pinene$ (4.20%), ${\alpha}-te.pineol$ (3.76%), and sabinene (2.78%). The major components in the oil from the stems were ${\alpha}-pinene$ (13.24%), ${\alpha}-terpineol$ (10.64%), 1,8-cineole (4.40%), manoyl oxide (4.02%), ${\beta}-pinene$ (2.39%), and terpinen-4-ol (2.21%) while those in the oil from the fruits were ${\alpha}-pinene$ (20.24%), 1,8-cineole (11.47%), ${\beta}P-pinene$ (9.79%), ${\alpha}-terpineol$ (7.08%), sabinene (3.68%), and limonene (2.77%). The percentage composition of monoterpenes in the oils from the leaves and the fruits were higher than in those from the flowers and the stems, whereas the oil from the flowers and the stems were characterized by a large content of sesquiterpenes, diterpenes and other unknown high molecular weight components.

      • SCIEKCI등재

        청국장제조시 대두원료의 동결과 쑥추출물의 첨가가 품질 및 이화학적 성분변화에 미치는 영향

        최병달(Byoung Dal Choi),이시경(Si Kyung Lee),윤세억(Sei Eok Yun),주현규(Hyun Kyu Joo) 한국응용생명화학회 1998 Applied Biological Chemistry (Appl Biol Chem) Vol.41 No.7

        Effect of freezing of soybean and addition of mugwort on the flavor development and the changes of chemical compositions in Chungkookjang was investigated. The changes in the amount of amino-type N, the activities of α-amylase and protease, and the content of volatile compounds were determined during aging of Chungkookjang. During ripening, a little higher protease activity was detected in Chungkookjang made of frozen soybean than in that made of non-frozen soybean. However, the profile of α-amylase activity of Chungkookjang made of frozen soybean was very similar to that of Chungkookjang made of non-frozen soybean. The amount of amino-type N increased gradually with the ripening period and decreased after 21 days of ripening. The amount of amino-type N was slightly higher in Chungkookjang made of frozen soybean than in that made of non-frozen soybean. Addition of mugwort had little effect on the enzyme activities and the amino-type N content. The mugwort added in Chungkookjang reduced the production of cis-3-hexenol which is responsible for the unpleasant odor, and freezing of soybean enhanced the production of 2, 6-dimethyl pyrazine which is contribute to the taste. According to sensory evaluation, flavor was the highest after the 14 days of ripening and addition of mugwort increased significantly the flavor in both Chungkookjang prepared with frozen soybean and Chungkookjang with non-frozen soybean. However, the effect of freezing of soybean on the flavor was not significant.

      • SCOPUSKCI등재
      • KCI등재
      • KCI등재

        순비기나무(Vitex rotundifolia L.fil.)의 부위별 정유성분 조성

        장수정,김영회,김명곤,김계환,윤세억 한국농화학회 2002 Applied Biological Chemistry (Appl Biol Chem) Vol.45 No.2

        순비기나무의 잎, 꽃, 줄기 및 열매로부터 수증기 증류법으로 정유를 분리한 다음 GC-MS및 GC를 이용한 표준품과 머무름 시간이 비교에 의해 76종의 성분을 동정하였다. 동정된 성분은 monoterpene hydrocarbons 16종, oxygenated monoterpenes 30종, sesquiterpene hydrocarbons 10종, oxygenated sesquiterpense 8종, diterpenes 3종, 기타 성분 9종으로서, 특히 α-pinene,β-pinene,sabinene, 1,8-clneole, terpinen-4-01,α-terpineol 등의 monoterpene류가 주요 구성성분들이었다. 부위별 주요 구성성분으로서 잎에서는 α- pinene(20.24%)> 1,8-clneole(11.47%)>β-pinene(9.79%)>α-terpineol(7.08%)>sabinene(3.68%)> limonene(2.77%)의 순서로 조성비율이 높았다. 전반적으로 순비기나무의 잎과 열매에서 분리한 정유에서는 monoterpene류의 조성비율이 높았으나 꽃과 줄기에서는 잎이나 열매에 비해 sesquitepene류, diterpene류 이외에도 구조를 동정하지 못하였으나 dlterpene류일 것으로 예상되는 분자량이 비교적 큰 성분들의 조성비율이 높았다. The essential oils isolated from leaves, flowers, stems, and fruits of Vitex rotundifolia by steam distillation and extraction (SDE) method were analyzed by gas chromatography (GC) and gas chromatography-mass spectrometry(GC-MS). A total of 76 components detected by GC, 42 components were identified positively by GC. MS and GC co-injection with authentic standards, and 34 components were identified tentatively by mass spectral data only. They included 16 monoterpene hydrocarbons, 30 oxygenated hydrocarbons, 10 sesquiterpene hydrocarbons, 8 oxygenated sesquiterpenes, 3 diterpenes, and 9 miscellaneous components. The major components in the oil from the lcaves were α-pinene(30.25%), 1,8-cineole(19

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