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2005 | 27 | 1 |

Tytuł artykułu

Modification in indole-3-acetic acid metabolism, growth and development of strawberry through transformation with maize IAA-glucose synthase gene [iaglu]

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Strawberry (Fragaria x ananassa Duch.) was transformed with maize IAA-glucose synthase gene (iaglu) via Agrobacterium tumefaciens using binary vector system. Incorporation of the transgene was confirmed by PCR and Southern blot analysis and its transcription by RT-PCR. Transformation resulted in a significant increase of ester-conjugated IAA level in tissue of all tranegenic plants while free IAA level was significantly lower in two trangenic clones tested and in other two it was comparable to that in wild-type plants. The level of amide-conjugated hormone was not affected by transformation with iaglu. The change in endogenous IAA metabolism affected the growth and development of transgenic strawberry plants but the effect was not fully correlated with changes in endogenous IAA level. In general, the transgenic clones were dwarfish - their leaf laminas were smaller, leaf petioles shorter and the crown diameter smaller in comparison to wild-type ones, although in one clone the difference was significant only for leaf lamina area. Shoots of all transgeni c clones formed more roots in vitro than the wild-type plants and in two clones the roots were longer than in the control.

Wydawca

-

Rocznik

Tom

27

Numer

1

Opis fizyczny

p.19-27,fig.,ref.

Twórcy

  • Research Institute of Pomology and Floriculture, Pomologiczna 18, 96-100 Skierniewice, Poland
autor

Bibliografia

  • Bachelier C., Graham J., Machray G., Du Manoir J., Roucou J.F., McNicol R.J., Davies H. 1997. Integration of an invertase gene to control sucrose metabolism in strawberry cultivars. Acta Hort., 439: 161-163.
  • Bandurski R.S. 1980. Homeostatic control of concentrations of indole-3-acetic acid. In: Plant Growth Substances 1979, ed. by F. Skoog, Springer-Verlag, Berlin and Heidelberg: 37-49.
  • Bandurski R.S., Schulze A., Reinecke D.M. 1986. Biosynthetic and metabolic aspects of auxins. In: Plant Growth Substances 1985, ed. by M. Bopp, Springeri -Verlag, Berlin and Heidelberg: 83-91.
  • Bevan B. 1984. Binary Agrobacterium vectors for plant transformation. Nuc. Acids Res., 12: 8711-8721.
  • Bojarczuk K. 1997. Reguiatory roślinne w szkółkarstwie. In: Reguiatory wzrostu i rozwoju roślin. Zastosowanie w ogrodnictwie, rolnictwie, leśnictwie i w kulturach tkanek, ed. by L. S. Jankiewicz, Wydawnictwo Naukowe PWN, Warszawa: 137-165.
  • Boxus P. 1974. The production of strawberry plants by in vitro micropropagation. J. Hort. Sci., 49: 209-210.
  • Chang S., Puryear J., Cairney J. 1993. A simple and efficient method for isoiating RNA from pine trees. Plant Mol. Biol. Rep., 11: 114-116.
  • Chen K.-H., Miller A.N., Patterson G.W., Cohen J.D. 1988. A rapid and simple procedure for purification of indole-3-acetic acid prior to GC-SIM-MS analy i is. Plant Physiol., 86: 822-825.
  • Cohen J.D., Bandurski R.S. 1982. Chemistry and physiology of the bound auxins. Ann. Rev. Plant. Physiol., 33: 403-430.
  • Dobrzańska M. 1995. Izolacja całkowitego DNA roślinnego metodą CTAB In: Inżynieria genetyczna i biologia molekularna. Metody. Podręcznik Laboratoryjny IBB PAN, ed. by G. Palamarczyk, J. Rytka, M. Skoneczny, Instytut Biochemii i Biofizyki PAN, Warszawa: 4-10 - 4-11.
  • Donzella G., Spena A., Rotino G.L. 2000. Transgenic parthenocarpic eggplants: superior germplasm for ini creased winter production. Mol. Breed., 6: 79-86.
  • El Mansouri I., Mercado J.A., Valpuesta V., López-Aranda J., Pliego-Alfaro F., Quesada M.A. 1996.
  • Shoot regeneration and Agrobacterium-mediated transformation of Fragaria vesca L. Plant Cell Rep., 15: 642-646.
  • Ficcadenti N., Sestili S., Pandolfini T., Cirillo C., Rotino G.L., Spena A. 1999. Genetic engineering of parthenocarpic fruit development in tomato. Mol. Breed., 5: 463-470.
  • Fladung M. 1993. Influence of the indoleacetic acid-lysine synthetase gene (iaaL) of Pseudomonas syringae subsp. savastanoi on yield and attributes of potatoes. Plant Breeding, 111: 242-245.
  • Giovannini A., Zottini M., Morreale G., Spena A., Allavena A. 1999. Ornamental traits modification by rolgenes in Osteospermum ecklonis transformed with Agrobacterium tumefaciens. In Vitro Cell. Dev. Biol. Plant., 35: 70-75.
  • Hammerschlag F.A. 1992. Somaclonal variation. In: Biotechnology in Petennial Fruit Crops, ed. by F.A. Hammerschlag, R.E. Litz, C.A.B. International, Wallingford: 35-55.
  • Hobbie L., Estelle M. 1994. Genetic approaches to auxin action. Plant, Cell and Environment, 17: 525-540.
  • Krzymowska M. 1995. Transformacja Agrobacterium tumefaciens metodą elektroporacji. In: Inżynieria Genetyczna i Biologia Molekularna. Metody. Podręcznik Laboratoryjny IBB PAN, ed. by G. Palamarczyk, J. Rytka, M. Skoneczny, Instytut Biochemii i Biofizyki pAn, Warszawa: 1-4 - 1-5.
  • McQuin-Mason S., Hamilton R.H. 1989. The biosynthesis of indole-3-acetic acid from D-tryptophan in Alasca pea plastids. Plant Cell Physiol., 30: 999-1005.
  • Mercuri A., De Benedetti L., Bruna S., Burchi G., Foglia G., Schiva T. 2000. New genotypes of Limonium obtained us-ng bacterial genes. Fiori. Colture-Protette, 29: 97-101.
  • Michalczuk B. 2000. Genetic transformation as a method for breedtng ornamental plants. In: Abttracts, IX Ogólnopolska Konferencja Kultur in vitro i Biotechnologii Roślin “Modyfikowanie Genomu Roślin”, ed. By Łojkowska, A. Królicka, Gdańsk - Sobieszewo: 12.
  • Michalczuk L., Baldi B.G., Cohen J.D. 1990. Myo-inositol conjugates of indole-3-acetic acid. In: Inositol Metabolism in Plants, ed. by D.J. Morre, W.F. Boss, A. Loewus. Wiley-Liss, New York: 93-106.
  • Michalczuk L., Bandurski R.S. 1980. UDP-glucose : indoleacetic acid glucosyl transferase and indoleace - tyl-glucose : myo-inositol indoleacetyl transferase. Bioch. Biophys. Res. Commun., 93: 588-592.
  • Michalczuk L., Bandurski R.S. 1982. Enzymic synthesis of 1-O-indol-3-ylacetyl-β-D-glucose and indol-3-yl-acetyl-myo-inositol. Biochem. J., 207: 273-281.
  • Michalczuk L., Michalczuk B. 2001. Growth and development of transgenic petunia carrying maize IAA-glucose synthetase gene (iaglu). In: Abstracts, 17th International Conference on Plant Growth Substances, Brno: 90.
  • Murashige T., Skoog F. 1962. A revised medium for rapid growth and bioassays with tobacco tissue cultures. Physiol. Plant., 15: 473-497.
  • Niemirowicz-Szczytt K., Bartoszewski G. 2000. Transgene expression in plant cell. Biotechnologia, 4: 11-23
  • Romano C.P., Hein M.B., Klee H.J. 1991. Inactivation of auxin in tobacco transformed with indoleacetic acid-lysine sythetase gene of Pseudo mo nas savastanoi. Genes Dev., 5: 438-446.
  • Rotino G.L., Perri E., Zottini M., Sommer H., Spena A. 1997. Genetic engineering of parthenocarpic plants. Nature Biotech., 15: 1398-1401.
  • Spena A., Prinsen E., Fladung M., Schulze S.C., Van Onckelen H. 1991. The indoleacetic acid-lysine synthetase gene of Pseudomonas syringae subsp. savastanoi induces developmental alterations in transgenic tobacco and potato plants. Mol. Gen. Genet., 227: 205-212.
  • Szechtman A.D., Salts Y., Carmi N., Shabtai S., Pilowsky M., Barg R. 1997. Seedless fruit setting in response to NAM treatment of transgenic tomato expressing the iaaH gene specifically in the ovary. Acta Hort., 447: 597-598.
  • Szerszen J.B., Szczyglowski K., Bandurski R.S. 1994. iaglu, a gene from Zea mays involved in conjugation of growth hormone indole-3-acetic acid. Science, 265: 1699-1701.
  • Szopa J., Wróbel M. 2001. Transfer and transgene expression. Biotechnologia, 1: 63-72
  • Van der Salm T.P.M., Bouwer R., Van Dijk A.J., Keizer L.C.P., Hanisch ten Cate C.H., Van der Plas L.H.W., Dons H.J.M. 1998. Stimulation of scion bud release by rol gene transformed rootstocks of Rosa hybrida L. J. Exp. Bot., 49: 847-852.
  • Van der Salm T.P.M., Hanisch ten Cate C.H., Dons H.J.M. 1996. Prospects for applications of rol genes for crop improvement. Plant Mol. Biol. Rep., 14: 207-228.
  • Wawrzyńczak D., Sowik I., Michalczuk L. 1998. Shoot regeneration from in vitro leaf explants of five strawberry genotypes (Fragaria x ananassa Duch.). J. Fruit Ornament. Plant Res., VI: 63-71.
  • Wawrzyńczak D., Sowik I., Michalczuk, L. 2000. Agrobacterium-mediated transformation of five strawberry genotypes. J. Fruit Ornament. Plant Res., VIII: 1-8.
  • Yang J., Lee H.-J., Shin D.H., Oh S.K., Seon J.H., Paek K.Y., Han K.-H. 1999. Genetic transformation of Cymbidium orchid by particle bombardment. Plant Cell Rep., 18: 978-984.
  • Zhu L.-H., Welander M. 1999. Growth characteristics of apple cultivar Gravenstein plants grafted onto the transformed rootstock M26 with rolA and rolB genes under non limiting nutrient conditions. Plant Sci., 147: 75-80.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-0ecd5a93-67a2-4d4b-970a-1831014dbb61
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