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The dose of 1-naphthaleneacetic acid determines flower-bud regeneration in tobacco expiants at a large range of concentrations

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Abstract

Short-term applications of very high concentrations of 1-naphthaleneacetic acid (NAA) to expiants from flower stalks of tobacco (Nicotiana tabacum L. cv. Samsun) induced flower-bud regeneration to the same extent as longer or continuous incubation on lower concentrations. The maximum number of flower buds per explant after 15 d of culture was obtained not only by continuous culturing at 1 μmol·l−1 NAA but also by 12 h of culturing at 22 μmol·l−1 or 0.5 h at 220 μmol· l−1, followed by incubation on medium without auxin for the remaining period. Continuous application of such high concentrations resulted in callus formation or caused the death of the explanted tissue. In all experiments in which auxin concentration and time of application were independently varied, the product of concentration and time determined the number of buds formed. Most, but not all, of the NAA taken up by the tissues was converted into conjugates. In expiants which had received a dose which was optimal for regeneration, the internal concentration of free NAA remaining beyond the pulse period was between 1.7 and 6.2 μmol·l−1. Suboptimal applications led to lower values, supraoptimal treatments to much higher internal concentrations. The physiological effect, which depends on the internal hormone concentration, thus manifested itself as dose-dependent with regard to applied hormone.

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Abbreviations

BAP:

N6-benzylaminopurine

NAA:

1-naphthaleneacetic acid

References

  • Bandurski, R.S., Schulze, A., Domagelski, W., Komoszynski, M., Lewer, P., Nonhebel, H. (1987) Synthesis and metabolism of conjugates of indole-3-acetic acid. In: Conjugated plant hormones — structure, metabolism and function, pp. 11–20, Schreiber, K., Schütte, H.R., Sembdner, G., eds. Academia, Prague

    Google Scholar 

  • Bender, L., Neuman, K.H. (1978) Investigations on the influence of pre-culture in IAA and kinetin-containing culture media on subsequent growth of cultured carrot expiants. Z. Pflanzenphysiol. 88, 201–208

    Google Scholar 

  • Bialek, K., Meudt, W.J., Cohen, J.D. (1983) Indole-3-acetic acid (IAA) and IAA conjugates applied to bean stem segments. Plant Physiol. 73, 130–134

    Google Scholar 

  • Caboche, M., Aranda, G., Poll, A.M., Huet, J.-C., Leguay, J.-J. (1984) Auxin conjugation by tobacco mesophyll protoplasts. Correlations between auxin cytotoxicity under low density growth conditions and induction of conjugation processes at high density. Plant Physiol. 75, 54–59

    Google Scholar 

  • Cohen, J.D., Bandurski, R.S. (1982) Chemistry and physiology of the bound auxins. Annu. Rev. Plant Physiol. 33, 403–430

    Google Scholar 

  • Croes, A.F., Hesen, P.L.G.M., Van de Loo, A.A.J., Barendse, G.W.M. (1986) Protein synthesis during in vitro flower bud formation in tobacco. Acta Bot. Neerl. 35, 161–167

    Google Scholar 

  • Dunlap, J.R., Kresovich, S., McGee, R.E. (1986) The effect of salt concentrations on auxin stability in culture media. Plant Physiol. 81, 934–936

    Google Scholar 

  • Hangarter, R.P., Good, N.E. (1981) Evidence that IAA conjugates are slow-release sources of free IAA in plant tissues. Plant Phyiol. 68, 1424–1427

    Google Scholar 

  • Murashige, T., Skoog, F. (1962) A revised medium for rapid growth and bioassays with tobacco tissue cultures. Physiol. Plant. 15, 473–497

    Google Scholar 

  • Smulders, M.J.M., Janssen, G.F.E., Croes, A.F., Barendse, G.W.M., Wullems, G.J. (1988a) Auxin regulation of flower bud formation in tobacco expiants. J. Exp. Bot. 39, 451–459

    Google Scholar 

  • Smulders, M.J.M., Croes, A.F., Wullems, G.J. (1988b) Polar transport of 1-naphthaleneacetic acid determines the distribution of flower buds on expiants of tobacco. Plant Physiol. 88, 752–757

    Google Scholar 

  • Smulders, M.J.M., Van de Ven, E.J.P.M., Croes, A.F., Wullems, G.J. (1990) Metabolism of 1-naphthaleneacetic acid in expiants of tobacco. Evidence for release of free hormone from conjugates. J. Plant Growth Regul. (in press)

  • Tran Thanh Van, M. (1973) Direct flower bud neoformation from superficial tissue of small expiants of Nicotiana tabacum L. Planta 115, 87–92

    Google Scholar 

  • Van den Ende, G., Croes, A.F., Kemp, A., Barendse, G.W.M. (1984) Development of flower buds in thin-layer cultures of floral stalk tissue from tobacco: Role of hormones in different stages. Physiol. Plant. 61, 114–118

    Google Scholar 

  • Venis, M.A. (1985) Hormone-binding sites in plants. Longman, Harlow

    Google Scholar 

  • Von Arnold, S., Eriksson, T. (1985) Initial stages in the course of adventitious bud formation in embryos of Picea abies. Physiol. Plant. 64, 41–47

    Google Scholar 

  • Wernicke, W., Milkovits, L. (1987) Rates of uptake and metabolism of indole-3-acetic acid and 2,4-dichlorophenoxyacetic acid by cultured leaf segments at different stages of development in wheat. Physiol. Plant. 69, 23–28

    Google Scholar 

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Smulders, M.J.M., Visser, E.J.W., Croes, A.F. et al. The dose of 1-naphthaleneacetic acid determines flower-bud regeneration in tobacco expiants at a large range of concentrations. Planta 180, 410–415 (1990). https://doi.org/10.1007/BF00198793

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  • DOI: https://doi.org/10.1007/BF00198793

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