RISS 학술연구정보서비스

검색

인기 검색어

    다국어 입력

    http://chineseinput.net/에서 pinyin(병음)방식으로 중국어를 변환할 수 있습니다.

    변환된 중국어를 복사하여 사용하시면 됩니다.

    예시)
    • 中文 을 입력하시려면 zhongwen을 입력하시고 space를누르시면됩니다.
    • 北京 을 입력하시려면 beijing을 입력하시고 space를 누르시면 됩니다.
    닫기
    KCI등재

    육계(Cortex of Cinnamomum cassia J.Presl) 추출물로부터 부정근 형성 유도물질 분리 및 동정 = Isolation and Identification of Adventitious Root Formation Inducing Substances from Cortex of cinnamomum cassia J.Presl

    한글로보기

    https://www.riss.kr/link?id=A108945314

    • 0

      상세조회
    • 0

      다운로드
    서지정보 열기
    • 내보내기
    • 내책장담기
    • 공유하기
    • 오류접수
    인용문이 복사되었습니다.

    부가정보

    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    In this study, as a result of exploring the physiological activity of plants useful for agriculture on various plant resources, it was possible to confirm an activity similar to auxin that promotes plant rooting in methanol extract of Cinnamon Bark (cortex of Cinnamomum cassia J.Presl). After separating the active body by applying column chromatography and HPLC to the CHCl3 active fraction obtained by solvent extraction for each polarity from the methanol extract of cinnamon bark, cinnamyl alcohol was identified through GC/MS analysis. By bioassay using cinnamyl alcohol standard and the active fraction separated and purified from the methanol extract of cinnamon bark, the rooting rate of mung bean seedlings of the cinnamyl alcohol standard was 290% compared with the untreated control at 134.2 ㎍/mL concentration, and the adventitious root formation activity similar to the rooting rate (268.6%; 100 ㎍/mL) of the active fraction was shown. In conclusion, it is believed that cinnamyl alcohol contained in methanol extract of Cinnamon Bark is the main compound that induces adventitious root formation in mung bean.
    번역하기

    In this study, as a result of exploring the physiological activity of plants useful for agriculture on various plant resources, it was possible to confirm an activity similar to auxin that promotes plant rooting in methanol extract of Cinnamon Bark (c...

    In this study, as a result of exploring the physiological activity of plants useful for agriculture on various plant resources, it was possible to confirm an activity similar to auxin that promotes plant rooting in methanol extract of Cinnamon Bark (cortex of Cinnamomum cassia J.Presl). After separating the active body by applying column chromatography and HPLC to the CHCl3 active fraction obtained by solvent extraction for each polarity from the methanol extract of cinnamon bark, cinnamyl alcohol was identified through GC/MS analysis. By bioassay using cinnamyl alcohol standard and the active fraction separated and purified from the methanol extract of cinnamon bark, the rooting rate of mung bean seedlings of the cinnamyl alcohol standard was 290% compared with the untreated control at 134.2 ㎍/mL concentration, and the adventitious root formation activity similar to the rooting rate (268.6%; 100 ㎍/mL) of the active fraction was shown. In conclusion, it is believed that cinnamyl alcohol contained in methanol extract of Cinnamon Bark is the main compound that induces adventitious root formation in mung bean.

    더보기

    참고문헌 (Reference)

    1 Nohara, T., "Two novel diterpenes from bark of Cinnamomum cassia" 21 (21): 2130-2132, 1982

    2 Lockwood, G. B, "The major constituents of the essential oils of Cinnamomum cassia Blume growing in Nigeria" 36 (36): 380-381, 1979

    3 Nohara, T., "The constituents of cinnamomi cortex. III. Structures of cinncassiol B and its glucoside" 28 (28): 2682-2686, 1980

    4 Yagi, A., "The constituents of Cinnamomi cortex. I. structures of cinncassiol A and its glucoside" 28 (28): 1432-1436, 1980

    5 Morimoto, S., "Tannins and related compounds. XXXVIII.: Isolation and characterization of flavan-3-ol glucosides and procyanidin oligomers from Cassia bark: Cinnamomum cassia BLUME" 34 (34): 633-642, 1986

    6 Morimoto, S., "Tannins and related compounds. XXXIX.: Procyanidin C-glucosides and an acylated flavan- 3-ol glucoside from the barks of Cinnamomum cassia BLUME and C. obtusifolium NEES" 34 (34): 643-649, 1986

    7 Shiraga, Y., "Structures of potent antiulcerogenic compounds from Cinnamomum cassia" 44 (44): 4703-4711, 1988

    8 Evans, M. L., "Responses of Arabidopsis roots to auxin studied with high temporal resolution : comparison of wild type and auxin-response mutants" 194 (194): 215-222, 1994

    9 Hyun, Y. H., "Removal of 2, 4-D by an Fe (II)/persulfate/electrochemical oxidation process" 26 (26): 45-53, 2021

    10 Api, A. M., "RIFM fragrance ingredient safety assessment, cinnamyl alcohol, CAS Registry Number 104-54-1" 141 : 111337-, 2020

    1 Nohara, T., "Two novel diterpenes from bark of Cinnamomum cassia" 21 (21): 2130-2132, 1982

    2 Lockwood, G. B, "The major constituents of the essential oils of Cinnamomum cassia Blume growing in Nigeria" 36 (36): 380-381, 1979

    3 Nohara, T., "The constituents of cinnamomi cortex. III. Structures of cinncassiol B and its glucoside" 28 (28): 2682-2686, 1980

    4 Yagi, A., "The constituents of Cinnamomi cortex. I. structures of cinncassiol A and its glucoside" 28 (28): 1432-1436, 1980

    5 Morimoto, S., "Tannins and related compounds. XXXVIII.: Isolation and characterization of flavan-3-ol glucosides and procyanidin oligomers from Cassia bark: Cinnamomum cassia BLUME" 34 (34): 633-642, 1986

    6 Morimoto, S., "Tannins and related compounds. XXXIX.: Procyanidin C-glucosides and an acylated flavan- 3-ol glucoside from the barks of Cinnamomum cassia BLUME and C. obtusifolium NEES" 34 (34): 643-649, 1986

    7 Shiraga, Y., "Structures of potent antiulcerogenic compounds from Cinnamomum cassia" 44 (44): 4703-4711, 1988

    8 Evans, M. L., "Responses of Arabidopsis roots to auxin studied with high temporal resolution : comparison of wild type and auxin-response mutants" 194 (194): 215-222, 1994

    9 Hyun, Y. H., "Removal of 2, 4-D by an Fe (II)/persulfate/electrochemical oxidation process" 26 (26): 45-53, 2021

    10 Api, A. M., "RIFM fragrance ingredient safety assessment, cinnamyl alcohol, CAS Registry Number 104-54-1" 141 : 111337-, 2020

    11 Lebuhn, M., "Production of auxin and other indolic and phenolic compounds by Paenibacillus polymyxa strains isolated from different proximity to plant roots" 22 (22): 325-334, 1997

    12 Bagni, N., "Polyamines, storage substances and abscisic acid‐like inhibitors during dormancy and very early activation of Helianthus tuberosus tuber tissues" 49 (49): 341-345, 1980

    13 Choi, Y. H, "Phytonematology" Hyang-moon-sa 58-69, 1982

    14 Hess, C. E, "Physiology of root initiation in easy-and difficult-to-root cuttings" 3 : 3-6, 1961

    15 Lee, J.D., "Mass proliferation of Hibiscus hamabo adventitious root in an airlift bioreactor, and the antioxidant and whitening activity of the extract" 35 (35): 435-444, 2022

    16 Loomis, D., "International agency for research on cancer monograph working group. Carcinogenicity of lindane, DDT, and 2, 4-dichlorophenoxyacetic acid" 16 (16): 891-892, 2015

    17 Letizia, C.S., "Fragrance material review on cinnamyl alcohol" 43 (43): 837-866, 2005

    18 Lee, E., "Effect of cinnamon extract on the inflammatory response in the LPS-shock rat" 28 (28): 333-340, 2015

    19 Sagara, K., "Determination of Cinnamomi cortex by high-performance liquid chromatography" 409 : 365-370, 1987

    20 Jaafarzadeh, N., "Coupling electrooxidation and oxone for degradation of 2, 4-Dichlorophenoxyacetic acid (2, 4-D) from aqueous solutions" 22 : 203-209, 2018

    21 Choi, J., "Constituents of the essential oil of the Cinnamomum cassia stem bark and the biological properties" 24 (24): 418-423, 2001

    22 Nohara, T., "Constituents of cinnamomi cortex. V. Structures of five novel diterpenes, cinncassiols D1, D1 glucoside, D2, D2 glucoside and D3" 29 (29): 2451-2459, 1981

    23 Kashiwada, Y., "Constituents of cinnamomi cortex. IV. Structures of cinncassiols C1 glucoside, C2 and C3" 9 (9): 2686-2688, 1981

    24 Nohara, T., "Cinncassiol E, a diterpene from the bark of Cinnamomum cassia" 24 (24): 1849-1850, 1985

    25 Nohara, T., "Cinncassiol C1, a novel type of diterpene from cinnamomi cortex" 28 (28): 1969-1970, 1980

    26 Mattia, A., "Cinnamyl alcohol and related flavouring agents. Safety evaluation of certain food additives and contaminants" 46 : 994-1010, 2001

    27 Guilfoyle, T. J., "Auxin-regulated gene expression in higher plants" 4 (4): 247-276, 1986

    28 Lin, C.C., "Antioxidant activity of Cinnamomum cassia" 17 (17): 726-730, 2003

    29 Ooi, L.S., "Antimicrobial activities of cinnamon oil and cinnamaldehyde from the Chinese medicinal herb Cinnamomum cassia Blume" 34 (34): 511-522, 2006

    30 Verspohl, E.J., "Antidiabetic effect of Cinnamomum cassia and Cinnamomum zeylanicum in vivo and in vitro" 19 (19): 203-206, 2005

    31 Geiss, G., "Adventitious root formation : New insights and perspectives" 37 : 127-156, 2009

    더보기

    동일학술지(권/호) 다른 논문

    분석정보

    View

    상세정보조회

    0

    Usage

    원문다운로드

    0

    대출신청

    0

    복사신청

    0

    EDDS신청

    0

    동일 주제 내 활용도 TOP

    더보기

    주제

    연도별 연구동향

    연도별 활용동향

    연관논문

    연구자 네트워크맵

    공동연구자 (7)

    유사연구자 (20) 활용도상위20명

    이 자료와 함께 이용한 RISS 자료

    나만을 위한 추천자료

    해외이동버튼