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Research ArticleDEVELOPMENT AND GROWTH REGULATION
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Controlled Cytokinin Production in Transgenic Tobacco Using a Copper-Inducible Promoter

Marian Jane McKenzie, Vadim Mett, Paul Hugh Stewart Reynolds, Paula Elizabeth Jameson
Marian Jane McKenzie
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Vadim Mett
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Paul Hugh Stewart Reynolds
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Paula Elizabeth Jameson
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Published March 1998. DOI: https://doi.org/10.1104/pp.116.3.969

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  • Copyright © 1998 American Society of Plant Physiologists

Abstract

The cytokinin group of plant hormones regulates aspects of plant growth and development, including the release of lateral buds from apical dominance and the delay of senescence. In this work the native promoter of a cytokinin synthase gene (ipt) was removed and replaced with a Cu-controllable promoter. Tobacco (Nicotiana tabacum L. cv tabacum) transformed with this Cu-inducibleipt gene (Cu-ipt) was morphologically identical to controls under noninductive conditions in almost all lines produced. However, three lines grew in an altered state, which is indicative of cytokinin overproduction and was confirmed by a full cytokinin analysis of one of these lines. The in vitro treatment of morphologically normal Cu-ipt transformants with Cu2+ resulted in delayed leaf senescence and an increase in cytokinin concentration in the one line analyzed. In vivo, inductive conditions resulted in a significant release of lateral buds from apical dominance. The morphological changes seen during these experiments may reflect the spatial aspect of control exerted by this gene expression system, namely expression from the root tissue only. These results confirmed that endogenous cytokinin concentrations in tobacco transformants can be temporally and spatially controlled by the induction of ipt gene expression through the Cu-controllable gene-expression system.

  • Abbreviations:

    CaMV
    cauliflower mosaic virus
    DZ
    dihydrozeatin
    DZNT
    DZ nucleotide
    DZOG
    DZ-O-glucoside
    DZR
    DZ riboside
    DZROG
    DZ riboside-O-glucoside
    iP
    isopentenyladenine
    iP9G
    isopentenyl-9-glucoside
    iPA
    isopentenyl adenosine
    iPATA
    iPA trialcohol
    iPNT
    isopentenyl nucleotide (isopentenyl AMP)
    ipt
    isopentenyl transferase gene
    Z
    zeatin
    Z9G
    Z-9-glucoside
    ZNT
    Z nucleotide (Z riboside-5′-monophosphate)
    ZOG
    Z-O-glucoside
    ZR
    Z riboside
    ZROG
    Z riboside-O-glucoside
    ZRTA
    Z riboside trialcohol
    • Received September 2, 1997.
    • Accepted November 26, 1997.
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    Controlled Cytokinin Production in Transgenic Tobacco Using a Copper-Inducible Promoter
    Marian Jane McKenzie, Vadim Mett, Paul Hugh Stewart Reynolds, Paula Elizabeth Jameson
    Plant Physiology Mar 1998, 116 (3) 969-977; DOI: 10.1104/pp.116.3.969

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    Controlled Cytokinin Production in Transgenic Tobacco Using a Copper-Inducible Promoter
    Marian Jane McKenzie, Vadim Mett, Paul Hugh Stewart Reynolds, Paula Elizabeth Jameson
    Plant Physiology Mar 1998, 116 (3) 969-977; DOI: 10.1104/pp.116.3.969
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    • The rms1 Mutant of Pea Has Elevated Indole-3-Acetic Acid Levels and Reduced Root-Sap Zeatin Riboside Content but Increased Branching Controlled by Graft-Transmissible Signal(s)
    • cis -Isomers of Cytokinins Predominate in Chickpea Seeds throughout Their Development
    • Bacterial Cellulose-Binding Domain Modulates in Vitro Elongation of Different Plant Cells
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