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OtherMETABOLISM AND ENZYMOLOGY
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Expression Patterns of Duplicate Tryptophan Synthase [beta] Genes in Arabidopsis thaliana

K. D. Pruitt, R. L. Last
K. D. Pruitt
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R. L. Last
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Published July 1993. DOI: https://doi.org/10.1104/pp.102.3.1019

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Abstract

Expression of the two Arabidopsis thaliana genes encoding tryptophan synthase [beta] (TSB1 and TSB2) was investigated by gene-specific RNA blot hybridization and reporter gene analysis. TSB1 mRNA abundance varies in an organ-specific manner, whereas TSB2 mRNA does not. Quantitative analysis of transgenic plants expressing TSB1 and TSB2 translational fusions to the [beta]-glucuronidase (GUS) gene (gusA) indicates that TSB1-GUS activity is 15-fold higher than TSB2-GUS. Histochemical analysis of these transgenic A. thaliana plants indicates that GUS expression occurs in a developmentally regulated manner. GUS activity driven from the TSB1 promoter is predominantly associated with the stem, root tips, foliar vasculature, mesophyll cells, base of developing seed pods, and tips of anther filaments in plants 15 d and older. Sections through the vegetative stem reveal GUS staining in all cell types including the shoot apical meristem. Although TSB2-GUS expression is consistently detected in root tips and at the base of developing seed pods, it is observed later in plant development than is TSB1-GUS expression.

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Expression Patterns of Duplicate Tryptophan Synthase [beta] Genes in Arabidopsis thaliana
K. D. Pruitt, R. L. Last
Plant Physiology Jul 1993, 102 (3) 1019-1026; DOI: 10.1104/pp.102.3.1019

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Expression Patterns of Duplicate Tryptophan Synthase [beta] Genes in Arabidopsis thaliana
K. D. Pruitt, R. L. Last
Plant Physiology Jul 1993, 102 (3) 1019-1026; DOI: 10.1104/pp.102.3.1019
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Plant Physiology
Vol. 102, Issue 3
Jul 1993
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More in this TOC Section

  • Tomato Fruit Polygalacturonase Isozyme 1 (Characterization of the [beta] Subunit and Its State of Assembly in Vivo)
  • A Novel Metabolic Pathway for Indole-3-Acetic Acid in Apical Shoots of Populus tremula (L.) x Populus tremuloides (Michx.)
  • Biosynthesis of Cardiolipin in Plant Mitochondria
Show more Metabolism and Enzymology

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