Effect of Electron Acceptor, Electron Transport Inhibitors and Antioxidants on Growth and Ginsenosides Production in Hairy Root Cultures of Panax ginseng C.A. Meyer

인삼모상근의 생장과 Ginsenosides 생성에 미치는 Electron Acceptor, Electron Transport Inhibitors 및 Antioxidants의 효과

  • Kim Yong-Hae (School of Life Sciences, College of Natural Sciences, Chungbuk National University) ;
  • Choi Kyu-Myung (School of Life Sciences, College of Natural Sciences, Chungbuk National University) ;
  • Yang Deok-Chun (Korea Ginseng and Tobacco Research Institute) ;
  • Yun Kil-Young (School of Life Sciences, College of Natural Sciences, Chungbuk National University) ;
  • Yang Deok-Cho (School of Life Sciences, College of Natural Sciences, Chungbuk National University)
  • 김용해 (충북대학교 자연과학대학 생명과학부) ;
  • 최규명 (충북대학교 자연과학대학 생명과학부) ;
  • 양덕춘 (한국인삼연초연구원) ;
  • 윤길영 (충북대학교 자연과학대학 생명과학부) ;
  • 양덕조 (충북대학교 자연과학대학 생명과학부)
  • Published : 1999.12.01

Abstract

The growth of hairy roots were increased $69\%$ by 0.1 mM DCPIP under light conditions. In these conditions, the contents of seven ginsenosides were none significant variation. The influence of electron inhibitors on growth and ginsenoside contents in ginseng hairy roots was tested. The growth was inhibited $71\%\;and\;22\%$ respectively by CCCP and methylamine. The ginsenoside contents were as decreased above $45\%$ in all treatment tested except triazine treatment. In antioxidants treatment, the growth of hairy roots was increased about $68\%$ by propylgallic acid, about $23\~25\%$ by ascorbic acid or 2,5-dimethylfuran, while the contents of seven ginsenosides were none significant variation. The ginsenoside productivity was high when hairy roots were cultured in $\circledR^{\wedge}MS$ medium for 4 weeks and then transferred to 1/2MS medium with ascorbic acid or 2,5-dimethylfuran for 1 weeks in light conditions. It is suggested that ginsenoside productivity could be accelerated by some antioxidants in hairy root cultures of ginseng.

전자수용체인 DCPIP 처리구에서 모상근의 생장은 광상태에서 대조구 보다 약 $69\%$정도 향상되었으나 7종류의 ginsenosides함량에는 영향을 미치지 않았다. 반면, 전자전달 저해제(electron transport inhibitors) 처리구에서 CCCP와 methylarnine은 광상태에서 모상근의 생장을 각각 $71%,\;22\%$ 감소시켰다. 그러나 traizine 처리구를 제외한 모든 처리구에서 7종류의 ginsenosides함량은 오히려 암 및 광상태에서 대조구보다 $45\%$ 이상 감소하였다. 항산화제 처리구에서 propylgallic acid는 광상태하에서 인삼모상근의 생장을 대조구보다 $68\%$ 증가시켰으며, ascorbic acid와 DMF처리구에서는 각각 $23\~25\%$ 정도 증가하였다. 모든 항산화제 처리구에서는 7종류의 ginsenoside 함량 변화에 영향을 미치지 않았다. 인삼모상근의 생장 및 ginsenosides생산성 향상에 효과적인 ascorbic acid와 DMF의 처리시기는 1/2MS배지에서 4주간 배양한 후 1주간 처리하였을 때 가장 양호하였다. 따라서 인삼모상근으로부터 ginsenosides생산성을 향상을 위해서는 적절한 항산화제의 개발이 요구된다.

Keywords