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Arabidopsis thaliana sku Mutant Seedlings Show Exaggerated Surface-Dependent Alteration in Root Growth Vector

R. Rutherford, P. H. Masson
R. Rutherford
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P. H. Masson
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Published August 1996. DOI: https://doi.org/10.1104/pp.111.4.987

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Abstract

Roots of wild-type Arabidopsis thaliana seedlings in the Wassilewskija (WS) and Landsberg erecta (Ler) ecotypes often grow aslant on vertical agar surfaces. Slanted root growth always occurs to the right of the gravity vector when the root is viewed through the agar surface, and is not observed in the Columbia ecotype. Right-slanted root growth is surface-dependent and does not result directly from directional environmental stimuli or gradients in the plane of skewing. We have isolated two partially dominant mutations in WS (sku1 and sku2) that show an exaggerated right-slanting root-growth phenotype on agar surfaces. The right-slanting root-growth phenotype of wild-type and mutant roots is not the result of diagravitropism or of an alteration in root gravitropism. It is accompanied by a left-handed rotation of the root about its axis within the elongation zone, the rate of which positively correlates with the degree of right-slanted curvature. Our data suggest that the right-slanting root growth phenotype results from an endogenous structural asymmetry that expresses itself by a directional root-tip rotation.

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Arabidopsis thaliana sku Mutant Seedlings Show Exaggerated Surface-Dependent Alteration in Root Growth Vector
R. Rutherford, P. H. Masson
Plant Physiology Aug 1996, 111 (4) 987-998; DOI: 10.1104/pp.111.4.987

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Arabidopsis thaliana sku Mutant Seedlings Show Exaggerated Surface-Dependent Alteration in Root Growth Vector
R. Rutherford, P. H. Masson
Plant Physiology Aug 1996, 111 (4) 987-998; DOI: 10.1104/pp.111.4.987
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Plant Physiology
Vol. 111, Issue 4
Aug 1996
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More in this TOC Section

  • 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)
  • Bacterial Cellulose-Binding Domain Modulates in Vitro Elongation of Different Plant Cells
  • Gibberellin Dose-Response Regulation of GA4 Gene Transcript Levels in Arabidopsis
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