Effect of Ethylene Inhibitors on Plant Regeneration of Scrophularia buergeriana M.

에틸렌 억제 물질들이 현삼의 식물체재분화에 미치는 영향

  • Kim, Young-Kyung (Division of Plant Science & Resources, Chungnam National University) ;
  • Park, Dong-Sik (Kangwon National University, Research Institute of Agricultural Sciences) ;
  • Kim, Seong-Mu (Kangwon National University, School of Bioscience & Biotechnology) ;
  • Cho, Dong-Ha (Kangwon National University, School of Bioscience & Biotechnology) ;
  • Yu, Chang-Yeon (Bioherb Research Institute, Kangwon National University) ;
  • Park, Sang-Un (Division of Plant Science & Resources, Chungnam National University)
  • 김용경 (충남대학교 농업생명과학대학 식물자원학부) ;
  • 박동식 (강원대학교 농업과학연구소) ;
  • 김성무 (강원대학교 생명공학부) ;
  • 조동하 (강원대학교 생명공학부) ;
  • 유창연 (강원대학교 한방 바이오 연구소) ;
  • 박상언 (충남대학교 농업생명과학대학 식물자원학부)
  • Published : 2006.12.30

Abstract

The study was carried out to establish an improved protocol for shoot organogenesis and plant regeneration from leaf explant cultures of Scrophularia buergeriana M. with the treatment of ethylene inhibitors [silver nitrate (AgNO$_3$), aminoethox-yvinylglycine (AVG), Cobalt chloride (CoCl$_2$)]. The regenerated shoots obtained from leaf explant cultures on MS medium containing 2 mg/l BAP, The additions of AgNO$_3$. AVG and CoC1$_2$ substantially improved the shoot regeneration frequency, at the optimal concentration of 7 mg/L, 7 mg/L, and 3 mg/L respectively, The regenerated shoots could be easily rooted with 0.1 mg/L IBA treatment. The noted plants were hardened and transferred to vermiculite with a 85% survival rate where they grew normally.

Keywords

References

  1. Adams DC, Yang SF (1979) Ethylene biosynthesis: identification of 1-amino-cyclopropane-1-carboxylic acid as an intermediate in the conversion of methionine to ethylene. Proc. Natl. Acad. Sci. USA, 76:170-174
  2. Calis I, Gross G, Stieher O (1987) Phenylpropanoid glycosides isolated from Scrophularia scopolii. Phytochemistry, 26:2057-2061 https://doi.org/10.1016/S0031-9422(00)81758-6
  3. Chae YA, Park SU, Kim HH (1993) Plant regeneration through direct somatic embryogenesis from leaf tissue in Scrophularia buergeriana M. Korean J. of Plant Tissue Culture, 20: 125-128
  4. Chi GL, Pua EC, Goh CJ (1991) Role of ethylene on de novo shoot regeneration from cotyledonary explants of Brassica campestris ssp. pekinensis (Lour) Olsson in Vitro. Plant Physiol., 96:178-183 https://doi.org/10.1104/pp.96.1.178
  5. Chraibi BKM, Latche A, Roustan J, Fallot J (1991) Stimulation of shoot regeneration from cotyledons of Helianthus annuus by the ethylene inhibitors, silver and cobalt. Plant Cell Rep., 10:204-207
  6. Duck JA, Ayensu ES (1985) Medical Plants of China. Algonac Ml. p. 599
  7. Jiansu New Medical College (Ed.) (1977) Dictionary of Chinese Crude Drugs. p. 769
  8. Kajimoto T, Hidaka M, Shoyama K, Nohara T (1989) lridoids from Scrophularia ninpoensis. Phytochemistry, 28:2701-2704 https://doi.org/10.1016/S0031-9422(00)98071-3
  9. Kim SR, Kim YC (2000) Neuroprotective phenylpropanoid esters of rhamnose isolated from roots of Scrophularia buergeriana, Phytochemistry, 54:503-509 https://doi.org/10.1016/S0031-9422(00)00110-2
  10. Kumar PP, Lakshmanan P, Thorpe TA (1998) Regulation of morphogenesis in plant tissue culture by ethylene. In Vitro Cell Dev Biol Plant., 34:94-103 https://doi.org/10.1007/BF02822771
  11. Lieberman (1979) Biosynthesis and action of ethylene. Ann. Rev. Plant Physiol, 30:533-591 https://doi.org/10.1146/annurev.pp.30.060179.002533
  12. Lin SJ, Jiang SH, Li YM, Zeng JF, Zhu DY (2000) Two novel iridoids from Scrophularia buergeriana. Tetrahedron Letters, 41:1069-1071 https://doi.org/10.1016/S0040-4039(99)02244-3
  13. Li YM, Jiang SH, Gao WY, Zhu DY (1999) Iridoid glyco-sides from Scrophularia ningpoensis. Phytochemistry, 50:101-104 https://doi.org/10.1016/S0031-9422(98)00477-4
  14. Murashige T, Skoog F (1962) A revised medium for rapid growth and bioassays with tobacco tissue cultures. Physiol Plant, 15:473-497 https://doi.org/10.1111/j.1399-3054.1962.tb08052.x
  15. Naik SK, Chand PK (2003) Silver nitrate and aminoethoxyvinylglycine promote in vitro adventitious shoot regeneration of pomegranate (Punica granatum L.). J Plant Physiol., 160:423-430 https://doi.org/10.1078/0176-1617-00949
  16. Park SU, Chae YA, Peter J. Facchini (2003) Genetic transformation of the figwort, Scrophularia buergeriana Miq., an Oriental medicinal plant. Plant Cell Rep., 21:1194-1198 https://doi.org/10.1007/s00299-003-0639-0
  17. Palmer CE (1992) Enhanced shoot regeneration from Brassica campestris by silver nitrate. Plant Cell Rep., 11:541-545
  18. Qian J, Hunkler D, Rimpler H (1992) Iridoid-related aglycone and its glycosides from Scrophularia ningpoensis. Phytochemistry, 31:905-911 https://doi.org/10.1016/0031-9422(92)80183-F
  19. Roustan JP, Latche A, Fallot J (1989) Stimulation of Daucus carota somatic embryogenesis by inhibitors of ethylene synthesis: cobalt and nickel. Plant Cell Rep., 8:182-185 https://doi.org/10.1007/BF00716836
  20. Yamamoto A, Miyase T, Ueno A, Maeda T (1993) Scrophulasaponins II-IB, new saikosaponin homologs from Scrophularia kakudensis FRANCH. Chem. Pharm. Bull., 41:1780-1783 https://doi.org/10.1248/cpb.41.1780
  21. Yang SF (1985) Biosynthesis and action of ethylene. Hort Sci., 20:41-45
  22. Yang SF, Hoffman NE (1984) Ethylene biosynthesis and its regulation in higher plants. Ann. Rev. Plant Physiol., 35:155-189 https://doi.org/10.1146/annurev.pp.35.060184.001103