Assessing the Role of ETHYLENE RESPONSE FACTOR Transcriptional Repressors in Salicylic Acid-Mediated Suppression of Jasmonic Acid-Responsive Genes

Publication date

2017-02-01

Authors

Caarls, L.ISNI 0000000493311149
van der Does, A.ISNI 0000000394447761
Hickman, RichardISNI 0000000419527902
Jansen, W.M.ISNI 0000000493258245
Van Verk, Marcel CISNI 0000000396828699
Proietti, SilviaISNI 0000000507296622
Lorenzo, Oscar
Solano, Roberto
Pieterse, Corné M.J.ORCID 0000-0002-5473-4646ISNI 0000000357875345
Van Wees, Saskia C.M.ISNI 0000000388268855

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Advisors

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Document Type

Article
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unspecified

Abstract

Salicylic acid (SA) and jasmonic acid (JA) cross-communicate in the plant immune signaling network to finely regulate induced defenses. In Arabidopsis, SA antagonizes many JA-responsive genes, partly by targeting the ETHYLENE RESPONSE FACTOR (ERF)-type transcriptional activator ORA59. Members of the ERF transcription factor family typically bind to GCC-box motifs in the promoters of JA- and ethylene-responsive genes, thereby positively or negatively regulating their expression. The GCC-box motif is sufficient for SA-mediated suppression of JA-responsive gene expression. Here, we investigated whether SA-induced ERF-type transcriptional repressors, which may compete with JA-induced ERF-type activators for binding at the GCC-box, play a role in SA/JA antagonism. We selected ERFs that are transcriptionally induced by SA and/or possess an EAR transcriptional repressor motif. Several of the 16 ERFs tested suppressed JA-dependent gene expression, as revealed by enhanced JA-induced PDF1.2 or VSP2 expression levels in the corresponding erf mutants, while others were involved in activation of these genes. However, SA could antagonize JA-induced PDF1.2 or VSP2 in all erf mutants, suggesting that the tested ERF transcriptional repressors are not required for SA/JA cross-talk. Moreover, a mutant in the co-repressor TOPLESS, that showed reduction in repression of JA signaling, still displayed SA-mediated antagonism of PDF1.2 and VSP2. Collectively, these results suggest that SA-regulated ERF transcriptional repressors are not essential for antagonism of JA-responsive gene expression by SA. We further show that de novo SA-induced protein synthesis is required for suppression of JA-induced PDF1.2, pointing to SA-stimulated production of an as yet unknown protein that suppresses JA-induced transcription.

Keywords

Arabidopsis thaliana, ERF transcription factors, Hormone cross-talk, Jasmonic acid, Salicylic acid, TOPLESS, Taverne

Citation

Caarls, L, van der Does, A, Hickman, R, Jansen, W, van Verk, M, Proietti, S, Lorenzo, O, Solano, R, Pieterse, C M J & Van Wees, S C M 2017, 'Assessing the Role of ETHYLENE RESPONSE FACTOR Transcriptional Repressors in Salicylic Acid-Mediated Suppression of Jasmonic Acid-Responsive Genes', Plant and Cell Physiology, vol. 58, pp. 266–278. https://doi.org/10.1093/pcp/pcw187