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Research ArticleDEVELOPMENT AND HORMONE ACTION
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A Role for Brassinosteroids in Germination in Arabidopsis

Camille M. Steber, Peter McCourt
Camille M. Steber
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Peter McCourt
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Published February 2001. DOI: https://doi.org/10.1104/pp.125.2.763

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    Fig. 1.

    Rescue of germination in GA biosynthetic mutants by EBR. Percent germination of ga1-3 (A), ga2-1(B), and ga3-1 (C) on increasing concentrations of EBR. Germination was scored for 30 to 60 seeds per hormone concentration after 4 d at 4°C followed by 5 d at 22°C. Error bars indicate se for average of four independent experiments for A, and three independent experiments for B and C.

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    Fig. 2.

    Rescue of sly1-2 germination by EBR. Percent germination is shown on increasing concentrations of EBR. Germination was scored for 30 to 60 seeds per hormone concentration.

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    Fig. 3.

    Dose response of hypocotyl elongation of dark-grown seedlings to increasing concentrations of GA (A) or EBR (B). Length of hypocotyls in millimeters is given as a function of hormone concentration. Shown are averages of 10 random hypocotyl measurements. Error bars indicate sd.

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    Fig. 4.

    Dose-response of germination to ABA. Compares percent germination of Col wild-type (▪) to det2-1 (■) (A) and of Col wild-type to bri1-1 (B). Percent germination was determined for over 50 seeds for det2-1 and for over 30 seeds for bri1-1.

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A Role for Brassinosteroids in Germination in Arabidopsis
Camille M. Steber, Peter McCourt
Plant Physiology Feb 2001, 125 (2) 763-769; DOI: 10.1104/pp.125.2.763

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A Role for Brassinosteroids in Germination in Arabidopsis
Camille M. Steber, Peter McCourt
Plant Physiology Feb 2001, 125 (2) 763-769; DOI: 10.1104/pp.125.2.763
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Plant Physiology: 125 (2)
Plant Physiology
Vol. 125, Issue 2
Feb 2001
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More in this TOC Section

  • An Endogenous Carbon-Sensing Pathway Triggers Increased Auxin Flux and Hypocotyl Elongation
  • Arabidopsis COP1 and SPA Genes Are Essential for Plant Elongation But Not for Acceleration of Flowering Time in Response to a Low Red Light to Far-Red Light Ratio
  • Dynamic Changes in the Distribution of Minerals in Relation to Phytic Acid Accumulation during Rice Seed Development
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