Isolation and Structure Identification of Antibacterial Substances from the Rhizome of Zingiber mioga Roscoe

양하의 근경에서 항균성 물질 분리 및 구조동정

  • Kim, Seong-Cheol (National Jeju Agricultural Experiment Station, R.D.A.) ;
  • Song, Eun-Young (National Jeju Agricultural Experiment Station, R.D.A.) ;
  • Kim, Kong-Ho (National Jeju Agricultural Experiment Station, R.D.A.) ;
  • Kwon, Hyeog-Mo (National Jeju Agricultural Experiment Station, R.D.A.) ;
  • Kang, Sang-Heon (National Jeju Agricultural Experiment Station, R.D.A.) ;
  • Park, Ki-Hun (Division of Applied Life Science, Gyeongsang National University) ;
  • Jung, Yong-Hwan (National Jeju Agricultural Experoment Station, R.D.A.) ;
  • Jang, Ki-Chang (National Jeju Agricultural Experiment Station, R.D.A.)
  • 김성철 (농촌진흥청 제주농업시험장) ;
  • 송은영 (농촌진흥청 제주농업시험장) ;
  • 김공호 (농촌진흥청 제주농업시험장) ;
  • 권혁모 (농촌진흥청 제주농업시험장) ;
  • 강상헌 (농촌진흥청 제주농업시험장) ;
  • 박기훈 (경상대학교 환경생명식품공학부) ;
  • 정용환 (농촌진흥청 제주농업시험장) ;
  • 장기창 (농촌진흥청 제주농업시험장)
  • Published : 2003.08.30

Abstract

In order to isolate antibacterial substances from the rhizome of Zingiber mioga Roscoe, the ethanol extracts was fractionated according to the activity against Bacillus subtilis, B. cereus and Staphylococcus aureus. Three antibacterial substances were isolated and purified by column chromatography and recrystallization. Compounds I and III showed activity against all the tested bacterias and compound II exhibited the activity against B. subtilis and B. cereus S. aureus. Compound I was examined antimicrobial activity against B. subtilis, B. cereus and S. aureus by optical density using Bioscreen C. Compound I showed strong growth inhibition at 10 ppm on B. subtilis and B. cereus for 72 hrs, and at 25 ppm on S. aureus. On the basis of spectrometric studies including $1^H-NMR$, ${13}^C-NMR$, DEPT, IH-lH COSY, HMQC, HMBC and IR, compounds I, II and III were identified as $(E)-8{\beta}(17)-epoxylabd-12-ene-15,16-dial\;(C_{20}H_{30}O_3,\;MW=318)$, galanolactone $(C_{20}H_{30}O_3\;MW=318)$ and galanal A $(C_{20}H_{30}O_3,\;MW=318)$, respectively. These results are the first reports on the isolation of $(E)-8{\beta}(17)-epoxylabd-12-ene-15,16-dial, galanolactone and galanal A from the rhizome of Zingiber mioga.

양하(Zingiber mioga Roscoe) 근경의 에탄을 추출물을 재료로 Staphylococcus aureus, Bacillus subtilis 및 B. cereus에 대한 activity-guided fractionation을 실시하여 항균성 물질 세가지준 얻었다. 항균력실험 결과, 화합물 I과 111은 세가지균주 모두에 활성이 있었고, 화합물 II에서는 B. subtilis과 B. cereus에서만 활성이 나타났다. 그 중에서 가장 활성이 강한 화합물 I을 Bioscreen C로 optical density(600 nm)를 측정하여 증식억제실험을 한 결과 10 ppm 처리시 B. subtilis과 B. cereus에서 72시간동안 강한 증식억제효과를 나타내었으며, S. aureus에서는 25 ppm 처리시 72시간동안 완전증식억제효과를 나타내었다. $1^H-NMR$, ${13}^C-NMR$, DEPT,$1^H-1^H$ COSY, HMQC, HMBC 및 IR 스펙트럼 등을 분석한 결과 화합물 I, II, III은 labdane-type diterpene인 $(E)-8{\beta}(17)-epoxylabd-12-ene-15,16-dial(C_{20}H_{30}O_3,\;MW=318)$, $galanolactone(C_{20}H_{30}O_3,\;MW=318)$ 그리고 galanal A($C_{20}H_{30}O_3,\;MW=318$)로 각각 동정되었으며, 이들은 양하의 근경에서는 처음 분리된 것이다.

Keywords

References

  1. Kim, T. S. (1998) In Natural PIant of Korea, Publication Department of Seoul National University, Seoul, p. 223
  2. Hiromo, I., Mori, H., Kato, K., Hosaka, S. and Aiso, S. (1982) Carcinogenicity examination of inflorescence of Zingiber mioga Roscoe. Cancer Letters 15, 203-208 https://doi.org/10.1016/0304-3835(82)90119-7
  3. Piddok, L. J. V. (1990) Techniques used for the determination of antibacterial resistance and sensitivity in bacteria. J. Appl. BacterioI 68, 307-318 https://doi.org/10.1111/j.1365-2672.1990.tb02880.x
  4. Jang, D. S., Park, K. H., Lee, J. R., Ha, T. J., Park, Y. B., Nam, S. H. and Yang, M. S. (1999) Antiimcrobial activities of sesquiterpene lactones isolated from Hemisteptia lyreta, Chrysanthemum zawadskii and Chrysanthemum boreale. Agric. Chem. Biotechml. 42, 176-179
  5. Morita, H. and Itokawa, H. (1988) Cytotoxic and antifungal diterpenes from the seeds of Alpinia galanga. Planta Med. 54, 117-120 https://doi.org/10.1055/s-2006-962365
  6. Abe, M., Ozawa, Y., Uda, Y., Yamada, Y., Morimitsu, Y., Nakamura, N. and Osawa, T. (2002) Labdane-type diterpene dialdehyde, Pungent principle of myoga, Zingiber mioga Roscoe. Biosci. Biotechnol. Biochem. 66, 2698-2700 https://doi.org/10.1271/bbb.66.2698
  7. Tanabe, M., Chen, Y. D., Saito, K. and Kano, Y. (1993) Cholesterol biosynthesis inhibitory component from Zingiber officinale Roscoe. Chem. Pharm. Bull. 41, 710-713 https://doi.org/10.1248/cpb.41.710
  8. Kawakishi, S., Morimitsu, Y. and Osawa, T. (1994) Chemistry of ginger components and inhibition factors of the arachidonic acid cascade, In Food Phytochemicals for Cancer Prevention vol. II, Ho, C. T., Osawa, T., Huang, M. T. and Rosen, R. T. (eds.), American Chemical Society, Washington, D. C., pp. 244-250