Correlation between in vitro Flowering Frequency and the Structure of Cytokinins in Ginseng (Panax ginseng C.A. Meyer)

인삼 (Panax ginseng C.A. Meyer)의 기내 화아형성 빈도와 cytokinin 구조와의 관계

  • 이행순 (생명공학연구소 제2연구부) ;
  • 김윤성 (생명공학연구소 제2연구부) ;
  • 권석윤 (생명공학연구소 제2연구부) ;
  • 곽상수 (생명공학연구소 제2연구부) ;
  • 유장렬 (생명공학연구소 제2연구부)
  • Published : 1999.03.01

Abstract

To elucidate the relationship between in vitro flowering and the structure of cytokinins in ginseng (Panax ginseng C.A. Meyer), zygotic embryos, seedlings, and cotyledonary nodes were cultured on MS medium supplemented with 5 $\mu$M of various cytokinins (BA, kinetin, 2-iP, and zeatin) with or without GA$_3$ (5 $\mu$M). The frequency of in vitro flowering was the highest when explants were cultured on the medium containing BA regardless of the kinds of explants, followed by kinetin, 2-iP, and zeatin. Flowering frequency of cotyledonary node explants was significantly increased by the combined treatment of cytokinin and GA$_3$. Flowering frequency was highly correlated with the logP of cytokinins, indicating that the lipophilicity of each cytokinin may involved in the in vitro flowering of ginseng.

인삼의 기내 화아형성과 cytokinin과의 관계를 조사하기 위하여 접합자배, 유식물체, 자엽마디 절편체를 cytokinin(BA, kinetin, 2-iP, zeatin) 5 $\mu$M 단독 혹은 GA$_3$ 5 $\mu$M와 함께 MS 배지에서 배양하였다. 화아형성은 재료에 관계없이 BA처리구에서 가장 높게 나타났으며, kinetin, 2-iP, zeatin 순으로 나타났다. Cytokinin과 GA$_3$를 함께 첨가한 경우에는 특히 자엽마디 절편체 재료에서 화아형성 빈도가 현저히 증가하여 BA와 함께 처리하였을 때는 100% 화아형성을 나타내었다. 사용한 cytokinin은 adenine 기본골격과 다양한 측쇄구조 (-R)로 이루어져 있는데 이 측쇄구조의 분배계수 (logP)가 인삼의 기내 화아형성과 높은 상관성을 나타내어 cytokinin류의 지용성이 화아형성에 중요하게 관여함이 시사되었다.

Keywords

References

  1. Plant Cell Rep v.10 Plant regeneration from protoplasts of Panax ginseng (C.A. meyer) through somatic embryogenesis Arya S;Liu JR;Eriksson T
  2. Int J Dev Biol v.36 Molecular genetic approaches to plant develpment Boerjan W;den Boer B;van Montagu M
  3. Nature v.284 In vitro flowering of embryoids derived from mature root callus of ginseng (Panax ginseng) Chang WC;Hsing YH
  4. Plant J v.4 Floral development and expression of floral homeotic genes are influenced by cytokinins Estruch JJ;Granell A;Hansen G;Prinsen E;Redig P;Van Onckelen H;Schwarz-Sommer Z;Spena A
  5. J Amer Chem Soc v.86 ρ-σ-π Analysis. A Methods for the correlation of Biological Activity and Chemical Structure Hansch C;Fujita T
  6. Science v.274 Ckil, a histidine kinase homolog implicated in cytokinin signal transduction Kakimoto T
  7. Medicinal Chemistry Focussed on Development of New Drug Correlation of quantitatively chemical structurebiological activity. Kim DH
  8. Plant Physiol v.109 The cDNA sequence of two MADS box genes in Panax ginseng (PGR95-060) Kim YS;Lee HS;Yoo OJ;Jung WI;Liu JR
  9. Plant Cell Physiol v.39 no.8 A MADS box gene homologous to AG in expressed in seedlings as well as in flowers of ginseng Kim YS;Lee HS;Lee MH;Yoo OJ;Liu JR
  10. HortSci v.25 In vitro flowering of ginseng plants regenerated from zygotic embryosderived somatic embryos of ginseng (Panax ginseng C.A. meyer) by growth regulators Lee HS;Liu JR;Yang SG;LeeYH;Lee K-W
  11. Plant Cell Physiol v.32 no.8 In vitro flowering ginseng(Panax ginsengC.A. meyer) zygotic embryos induced by growth regulators Lee HS;Lee K-W;Yang SG;Liu JR
  12. Kor J Plant Tiss Cult v.21 Measurement of determination time of in vitro flowering in ginseng (Panax ginseng) Lee HS;Lee K-W;Liu JR
  13. Plant Cell Rep v.14 Agrobacterium-mediated transformation of ginseng (Panax ginseng) and mitotic stability of the inserted β-glucuronidase gene in regenerants from isolated protoplasts Lee Hs;Kim SW;Lee K-W;Eriksson T;Liu JR
  14. Plant Cell Tiss Org Cult v.49 Regeneration of Panax ginseng C.A. Meyer by organogenesis and unclear DNA analysis of regenerants Lim HT;Lee HS;Eriksson T
  15. Planta v.180 In vitro flower formation in leaf explants of tomato : Effect of NaCl Liu KB;Li SX
  16. Phytochemistry v.19 Structure-activity relationships of cytokinins Matsubara S
  17. Development v.108 Control of root, vegetative shoot and flower morphogenesis in tobacco thin-cell-layer explants Mohnen D;Eberhard S;Marfa V;Doubrava N;Toubart P;Gollin DJ;Gruber T;Nuri W
  18. Physiol Plant v.15 A revised medium for rapid growth and bioassays with tobacco tissue culture Murashige T;Skoog F
  19. Nature v.344 Precocious flowering and seedling behaviour in tissue-cultured bamboos Nadgauda RS;Parasharami VA;Mascarenjas AF
  20. Hort Rev v.4 Invito flowering Scorza R
  21. Planta v.198 Benzylaminopurine induces phenocopies of floral meristem and organ identity mutants in wild-type Arabidopsis plnats Venglat SP;Sawhney VK
  22. Growth v.7 Nutrient deficiency studies and an improved inorganic nutrient for cultivation of excised tomato roots White PR