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Glucotropaeolin and myrosinase production in hairy root cultures of Tropaeolum majus

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Abstract

We obtained callus, cell suspension and hairy root cultures of Tropaeolum majus and we demonstrated their ability to produce glucotropaeolin and myrosinase. In hairy roots glucotropaeolin content and myrosinase activity were higher in comparison with callus, cell suspension and leaves of intact plants. In hairy root cultures the highest glucotropaeolin contents were detected on the 9th day of culture. In relation to dry weight glucotropaeolin production by hairy roots was stimulated markedly by cystein and less by phenylalanine and methyl jasmonate. Cystein inhibited biomass growth so in relation to culture volume stimulating effect of cystein on glucotropaeolin yield declined. Myrosinase activity was stimulated by methyl jasmonate. The ratio of myrosinase activity to glucotropaeolin content in cultures with methyl jasmonate was much higher than in cultures with cystein.

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References

  • Bodnaryk RP (1992) Effect of wounding on glucosinolates in the cotyledons of oilseed rape and mustard.Phytochemistry 35: 2671–2677

    Article  Google Scholar 

  • Bodnaryk RP (1994) Potent effect of jasmonates on indole glucosinolates in oilseed rape and mustard. Phytochemistry 35: 301–305

    Article  CAS  Google Scholar 

  • Bones A & Slupphaug G (1989) Purification, characterization and partial amino acid sequencing of β-thioglucosidase from Brassica napus L. J. Plant Physiol. 134: 722–729

    CAS  Google Scholar 

  • Bradford MM (1976) A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal. Biochem. 72: 248–254

    Article  PubMed  CAS  Google Scholar 

  • Danielak R (1973) Glukozynolaty i siarczki czosnku. In: Borkowski B (Ed.) Chromatografia Cienkowarstwowa w Analizie Farmaceutycznej (pp 123–125). PZWL, Warszawa

    Google Scholar 

  • Doughty KJ, Kiddle GA, Pye BJ, Wallsgrove RM & Pickett JA (1995) Selective induction of glucosinolates in oilseed rape leaves by methyl jasmonate. Phytochemistry 38: 347–350

    Article  CAS  Google Scholar 

  • Eilert U (1987) Elicitation methodology and aspects of application. In: Vasil IR & Constabel F (eds) Cell Culture and Somatic Cell Genetics of Plants, Vol. 4(pp 153–196). Academic Press, Orlando

    Google Scholar 

  • Gamborg OL, Miller RA & Ojima K (1968) Nutrient requirements of suspension cultures of soybean root cells. Exc. Cell Res. 50: 151–158

    Article  CAS  Google Scholar 

  • Gränicher F, Christen P & Kapetanidis I (1992) High-yield production of valerporiates by hairy root cultures of Valeriana officinalis L. var. sambucifolia Mikan. Plant Cell Rep. 11: 339–342

    Article  Google Scholar 

  • Hamill JD, Parr AJ, Robins RJ & Rhodes MJ (1986) Secondary product formation by cultures of Beta vulgaris and Nicotiana rustica transformed with Agrobacterium rhizogenes. Plant Cell Rep. 5: 111–114

    Article  CAS  Google Scholar 

  • Hasegava T, Nishino H & Iwashima A (1992) Isothiocyanates inhibit cell cycle progression of HeLa cells at G sub(2)/M phase. Anti-Cancer-Drugs. 4: 273–279

    Article  Google Scholar 

  • Iqbal MCM, Röbbelen G & Möllers C (1995) Biosynthesis of glucosinolates by microspore derived embryoids and plantlets in vitro of Brassica napus L. Plant Sci. 112: 107–115

    Article  CAS  Google Scholar 

  • Kirkland DF, Matsuo M & Underhill EW (1971) Detection of glucosinolates and myrosinase in plant tissue cultures. Cited from: Iqbal MCM, Röbbelen G & Möllers C (1995) Biosynthesis of glucosinolates by microspore derived embryoids and plantlets in vitro of Brassica napus L. Plant Sci. 112: 107–115

  • Ludwig-Müller J, Schubert B, Pieper K, Ihmig S & Hilgenberg W (1997) Glucosinolate content in susceptible and resistant chinese cabbage varieties during development of clubroot disease. Phytochemistry 44: 407–414

    Article  Google Scholar 

  • Maldonado-Mendoza IE, Ayora-Talavera T & Loyola-Vargas VM (1993) Establishment of hairy root cultures of Datura stramonium. Plant Cell Tiss. Org. Cult. 33: 321–329

    Article  CAS  Google Scholar 

  • Mayton HS, Olivier C, Vaughn SF & Loria R (1996) Correlation of fungicidal activity of Brassica species with allyl isothiocyanate production in macerated leaf tissue. Phytopathology 86: 267–271

    CAS  Google Scholar 

  • Mevy JP, Rabier J, Quinsac A, Krouti M & Ribaillier (1997) Glucosinolate contents of regenerated plantlets from embryoids of horseradish. Phytochemistry 44: 1469–1471

    Article  CAS  Google Scholar 

  • Mithen R (1992) Leaf glucosinolate profiles and their relationship to pest and disease resistance in oilseed rape. Euphytica 63: 71–83

    Article  CAS  Google Scholar 

  • Osbourn AE (1996) Preformed antimicrobial compounds and plant defense against fungal attack. The Plant Cell 8: 1821–1831

    Article  PubMed  CAS  Google Scholar 

  • Pintăo AM, Pais MSS, Coley H, Kelland LR & Judson IR (1995) In vitro and in vivo antitumor activity of benzyl isothiocyanate: a natural product from Tropaeolum majus. Planta Med. 61: 233–236

    Article  PubMed  Google Scholar 

  • Rickauer M, Brodschelm W, Bottin A, Véronési C, Grimal H & Ecquerré-Tugayé MT (1997) The jasmonate pathway is involved differentially in the regulation of different defence responses in tabacco cells. Planta 202: 155–162

    Article  CAS  Google Scholar 

  • Sarwar M, Kirkegaard JA, Wong PTW & Desmarchelier JM (1998) Biofumigation potential of brassicas. Plant and Soil. 201: 103–112

    Article  CAS  Google Scholar 

  • Sharp JM & Doran PM (1990) Characteristics of growth and tropane alkaloid synthesis in Atropa belladonna roots transformed by Agrobacterium rhizogenes. J. Biotechnol. 16: 171–186

    Article  CAS  Google Scholar 

  • Stoner GD & Morse MA (1997) Isothiocyanates and plant polyphenols as inhibitors of lung and esophageal cancer. Cancer Letters 114: 113–119

    Article  PubMed  CAS  Google Scholar 

  • Visvalingam S, Honsi TG & Bones AM (1998) Sulphate and micronutrients can modulate the expression levels of myrosinases in Sinapis alba plants. Physiol. Plant. 104: 30–37

    Article  CAS  Google Scholar 

  • Yonemitsu H, Shimomura K, Satake M, Mochida S, Tanaka M, Endo T & Kaji A (1990) Lobeline production by hairy root culture of Lobelia inflata L. Plant Cell Rep. 9: 307–310

    Article  CAS  Google Scholar 

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Correspondence to Henryk Urbanek.

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Wielanek, M., Urbanek, H. Glucotropaeolin and myrosinase production in hairy root cultures of Tropaeolum majus. Plant Cell, Tissue and Organ Culture 57, 39–45 (1999). https://doi.org/10.1023/A:1006398902248

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