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OtherGENE REGULATION AND MOLECULAR GENETICS
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An Arabidopsis thaliana Thionin Gene Is Inducible via a Signal Transduction Pathway Different from That for Pathogenesis-Related Proteins

P. Epple, K. Apel, H. Bohlmann
P. Epple
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K. Apel
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H. Bohlmann
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Published November 1995. DOI: https://doi.org/10.1104/pp.109.3.813

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Abstract

Two cDNAs encoding thionin preproproteins have been isolated from Arabidopsis thaliana. The corresponding genes have been designated Thi2.1 and Thi2.2. Southern blot analysis suggests that A. thaliana most probably contains single genes for both thionins. Thi2.2 transcripts have a low basal level in seedlings and show circadian variation. Thi2.2 transcripts were also detected in rosette leaves. No potent elicitors have been found for the Thi2.2 gene. Transcripts of the Thi2.1 gene are not detectable in seedlings but are present in rosette leaves and at a very high level in flowers and in siliques. The expression of the Thi2.1 gene is highly inducible in seedlings by pathogens, silver nitrate, and methyl jasmonate, but not by salicylate, indicating that the gene is induced by a signal transduction pathway that is at least partly different from that for the pathogenesis-related proteins.

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An Arabidopsis thaliana Thionin Gene Is Inducible via a Signal Transduction Pathway Different from That for Pathogenesis-Related Proteins
P. Epple, K. Apel, H. Bohlmann
Plant Physiology Nov 1995, 109 (3) 813-820; DOI: 10.1104/pp.109.3.813

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An Arabidopsis thaliana Thionin Gene Is Inducible via a Signal Transduction Pathway Different from That for Pathogenesis-Related Proteins
P. Epple, K. Apel, H. Bohlmann
Plant Physiology Nov 1995, 109 (3) 813-820; DOI: 10.1104/pp.109.3.813
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Plant Physiology
Vol. 109, Issue 3
Nov 1995
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More in this TOC Section

  • Cloning of Sucrose:Sucrose 1-Fructosyltransferase from Onion and Synthesis of Structurally Defined Fructan Molecules from Sucrose
  • RNA Polymerase Subunits Encoded by the Plastid rpoGenes Are Not Shared with the Nucleus-Encoded Plastid Enzyme
  • Decreased GA1 Content Caused by the Overexpression ofOSH1 Is Accompanied by Suppression of GA 20-Oxidase Gene Expression
Show more GENE REGULATION AND MOLECULAR GENETICS

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