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Uncoupling PR Gene Expression from NPR1 and Bacterial Resistance: Characterization of the Dominant Arabidopsis cpr6-1 Mutant

Joseph D. Clarke, Yidong Liu, Daniel F. Klessig, Xinnian Dong
Joseph D. Clarke
aDevelopmental, Cell, and Molecular Biology Group, Department of Botany, Box 91000, Duke University, Durham, North Carolina 27708-1000
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Yidong Liu
bWaksman Institute and Department of Molecular Biology and Biochemistry, Rutgers, The State University of New Jersey, P.O. Box 759, Piscataway, New Jersey 08855
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Daniel F. Klessig
bWaksman Institute and Department of Molecular Biology and Biochemistry, Rutgers, The State University of New Jersey, P.O. Box 759, Piscataway, New Jersey 08855
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Xinnian Dong
aDevelopmental, Cell, and Molecular Biology Group, Department of Botany, Box 91000, Duke University, Durham, North Carolina 27708-1000
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  • For correspondence: xdong@acpub.duke.edu

Published April 1998. DOI: https://doi.org/10.1105/tpc.10.4.557

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  • © 1998 American Society of Plant Physiologists

Abstract

In Arabidopsis, NPR1 mediates the salicylic acid (SA)–induced expression of pathogenesis-related (PR) genes and systemic acquired resistance (SAR). Here, we report the identification of another component, CPR6, that may function with NPR1 in regulating PR gene expression. The dominant CPR6-1 mutant expresses the SA/NPR1–regulated PR genes (PR-1, BGL2, and PR-5) and displays enhanced resistance to Pseudomonas syringae pv maculicola ES4326 and Peronospora parasitica Noco2 in the absence of SAR induction. cpr6-1–induced PR gene expression is not suppressed in the cpr6-1 npr1-1 double mutant but is suppressed when SA is removed by salicylate hydroxylase. Thus, constitutive PR gene expression in cpr6-1 requires SA but not NPR1. In addition, resistance to P. s. maculicola ES4326 is suppressed in the cpr6-1 npr1-1 double mutant, despite expression of PR-1, BGL2, and PR-5. Resistance to P. s. maculicola ES4326 must therefore be accomplished through unidentified antibacterial gene products that are regulated through NPR1. These results show that CPR6 is an important regulator of multiple signal transduction pathways involved in plant defense.

  • Received December 1, 1997.
  • Accepted February 12, 1998.
  • Published April 1, 1998.
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Uncoupling PR Gene Expression from NPR1 and Bacterial Resistance: Characterization of the Dominant Arabidopsis cpr6-1 Mutant
Joseph D. Clarke, Yidong Liu, Daniel F. Klessig, Xinnian Dong
The Plant Cell Apr 1998, 10 (4) 557-569; DOI: 10.1105/tpc.10.4.557

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Uncoupling PR Gene Expression from NPR1 and Bacterial Resistance: Characterization of the Dominant Arabidopsis cpr6-1 Mutant
Joseph D. Clarke, Yidong Liu, Daniel F. Klessig, Xinnian Dong
The Plant Cell Apr 1998, 10 (4) 557-569; DOI: 10.1105/tpc.10.4.557
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The Plant Cell Online: 10 (4)
The Plant Cell
Vol. 10, Issue 4
Apr 1998
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