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A gain-of-function mutation in IAA28 suppresses lateral root development.
Plant Cell. 2001 Mar;13(3):465-80
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Roles and activities of Aux/IAA proteins in Arabidopsis.
Trends Plant Sci. 2001 Sep;6(9):420-5
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Auxin modulates the degradation rate of Aux/IAA proteins.
Proc Natl Acad Sci U S A. 2001 Sep 25;98(20):11795-800
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Auxin regulates SCF(TIR1)-dependent degradation of AUX/IAA proteins.
Nature. 2001 Nov 15;414(6861):271-6
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AUX/IAA proteins are active repressors, and their stability and activity are modulated by auxin.
Plant Cell. 2001 Dec;13(12):2809-22
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Lateral root formation is blocked by a gain-of-function mutation in the SOLITARY-ROOT/IAA14 gene of Arabidopsis.
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AUX1 promotes lateral root formation by facilitating indole-3-acetic acid distribution between sink and source tissues in the Arabidopsis seedling.
Plant Cell. 2002 Mar;14(3):589-97
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Auxin-responsive gene expression: genes, promoters and regulatory factors.
Plant Mol Biol. 2002 Jun-Jul;49(3-4):373-85
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Genetics of Aux/IAA and ARF action in plant growth and development.
Plant Mol Biol. 2002 Jun-Jul;49(3-4):387-400
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The ASYMMETRIC LEAVES2 gene of Arabidopsis thaliana, required for formation of a symmetric flat leaf lamina, encodes a member of a novel family of proteins characterized by cysteine repeats and a leucine zipper.
Plant Cell Physiol. 2002 May;43(5):467-78
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The lateral organ boundaries gene defines a novel, plant-specific gene family.
Plant Physiol. 2002 Jun;129(2):747-61
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OsARF1, an auxin response factor from rice, is auxin-regulated and classifies as a primary auxin responsive gene.
Plant Mol Biol. 2002 Oct;50(3):415-25
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Cell-fate specification in the epidermis: a common patterning mechanism in the root and shoot.
Curr Opin Plant Biol. 2003 Feb;6(1):74-8
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The RADICLELESS1 gene is required for vascular pattern formation in rice.
Development. 2003 Feb;130(4):645-58
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The roles of auxin response factor domains in auxin-responsive transcription.
Plant Cell. 2003 Feb;15(2):533-43
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Dissecting Arabidopsis lateral root development.
Trends Plant Sci. 2003 Apr;8(4):165-71
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An overview of gibberellin metabolism enzyme genes and their related mutants in rice.
Plant Physiol. 2004 Apr;134(4):1642-53
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Disruption and overexpression of auxin response factor 8 gene of Arabidopsis affect hypocotyl elongation and root growth habit, indicating its possible involvement in auxin homeostasis in light condition.
Plant J. 2004 Nov;40(3):333-43
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Nucleic Acids Res. 1994 Nov 11;22(22):4673-80
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The PS-IAA4/5-like family of early auxin-inducible mRNAs in Arabidopsis thaliana.
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Mutations in the AXR3 gene of Arabidopsis result in altered auxin response including ectopic expression from the SAUR-AC1 promoter.
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Aux/IAA proteins repress expression of reporter genes containing natural and highly active synthetic auxin response elements.
Plant Cell. 1997 Nov;9(11):1963-71
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Changes in auxin response from mutations in an AUX/IAA gene.
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The conserved KNOX domain mediates specificity of tobacco KNOTTED1-type homeodomain proteins.
Plant Cell. 1999 Aug;11(8):1419-32
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Asymmetric auxin response precedes asymmetric growth and differentiation of asymmetric leaf1 and asymmetric leaf2 Arabidopsis leaves.
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Characterization of an Arabidopsis enzyme family that conjugates amino acids to indole-3-acetic acid.
Plant Cell. 2005 Feb;17(2):616-27
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KNOX homeodomain protein directly suppresses the expression of a gibberellin biosynthetic gene in the tobacco shoot apical meristem.
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