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Concomitant Activation of Jasmonate and Ethylene Response Pathways Is Required for Induction of a Plant Defensin Gene in Arabidopsis

Iris A. M. A. Penninckx, Bart P. H. J. Thomma, Antony Buchala, Jean-Pierre Métraux, Willem F. Broekaert
Iris A. M. A. Penninckx
aF.A. Janssens Laboratory of Genetics, Katholieke Universiteit Leuven, Kardinaal Mercierlaan 92, B-3001 Heverlee-Leuven, Belgium
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Bart P. H. J. Thomma
aF.A. Janssens Laboratory of Genetics, Katholieke Universiteit Leuven, Kardinaal Mercierlaan 92, B-3001 Heverlee-Leuven, Belgium
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Antony Buchala
bInstitut de Biologie Végétale, Université de Fribourg, Rue Albert-Gockel 3, CH-1700 Fribourg, Switzerland
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Jean-Pierre Métraux
bInstitut de Biologie Végétale, Université de Fribourg, Rue Albert-Gockel 3, CH-1700 Fribourg, Switzerland
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Willem F. Broekaert
aF.A. Janssens Laboratory of Genetics, Katholieke Universiteit Leuven, Kardinaal Mercierlaan 92, B-3001 Heverlee-Leuven, Belgium
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  • For correspondence: willem.broekaert@agr.kuleuven.ac.be

Published December 1998. DOI: https://doi.org/10.1105/tpc.10.12.2103

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  • © 1998 American Society of Plant Physiologists

Abstract

Activation of the plant defensin gene PDF1.2 in Arabidopsis by pathogens has been shown previously to be blocked in the ethylene response mutant ein2-1 and the jasmonate response mutant coi1-1. In this work, we have further investigated the interactions between the ethylene and jasmonate signal pathways for the induction of this defense response. Inoculation of wild-type Arabidopsis plants with the fungus Alternaria brassicicola led to a marked increase in production of jasmonic acid, and this response was not blocked in the ein2-1 mutant. Likewise, A. brassicicola infection caused stimulated emission of ethylene both in wild-type plants and in coi1-1 mutants. However, treatment of either ein2-1 or coi1-1 mutants with methyl jasmonate or ethylene did not induce PDF1.2, as it did in wild-type plants. We conclude from these experiments that both the ethylene and jasmonate signaling pathways need to be triggered concomitantly, and not sequentially, to activate PDF1.2 upon pathogen infection. In support of this idea, we observed a marked synergy between ethylene and methyl jasmonate for the induction of PDF1.2 in plants grown under sterile conditions. In contrast to the clear interdependence of the ethylene and jasmonate pathways for pathogen-induced activation of PDF1.2, functional ethylene and jasmonate signaling pathways are not required for growth responses induced by jasmonate and ethylene, respectively.

  • Received May 7, 1998.
  • Accepted October 12, 1998.
  • Published December 1, 1998.
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Concomitant Activation of Jasmonate and Ethylene Response Pathways Is Required for Induction of a Plant Defensin Gene in Arabidopsis
Iris A. M. A. Penninckx, Bart P. H. J. Thomma, Antony Buchala, Jean-Pierre Métraux, Willem F. Broekaert
The Plant Cell Dec 1998, 10 (12) 2103-2113; DOI: 10.1105/tpc.10.12.2103

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Concomitant Activation of Jasmonate and Ethylene Response Pathways Is Required for Induction of a Plant Defensin Gene in Arabidopsis
Iris A. M. A. Penninckx, Bart P. H. J. Thomma, Antony Buchala, Jean-Pierre Métraux, Willem F. Broekaert
The Plant Cell Dec 1998, 10 (12) 2103-2113; DOI: 10.1105/tpc.10.12.2103
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The Plant Cell Online: 10 (12)
The Plant Cell
Vol. 10, Issue 12
Dec 1998
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