Induced Plant Defenses in the Natural Environment:Nicotiana attenuataWRKY3 and WRKY6 Coordinate Responses to Herbivory
Open Access
- 1 July 2008
- journal article
- Published by Oxford University Press (OUP) in Plant Cell
- Vol. 20 (7) , 1984-2000
- https://doi.org/10.1105/tpc.108.058594
Abstract
A plant-specific family of WRKY transcription factors regulates plant responses to pathogens and abiotic stresses. Here, we identify two insect-responsive WRKY genes in the native tobacco Nicotiana attenuata: WRKY3, whose transcripts accumulate in response to wounding, and WRKY6, whose wound responses are significantly amplified when fatty acid–amino acid conjugates (FACs) in larval oral secretions are introduced into wounds during feeding. WRKY3 is required for WRKY6 elicitation, yet neither is elicited by treatment with the phytohormone wound signal jasmonic acid. Silencing either WRKY3 or WRKY6, or both, by stable transformation makes plants highly vulnerable to herbivores under glasshouse conditions and in their native habitat in the Great Basin Desert, Utah, as shown in three field seasons. This susceptibility is associated with impaired jasmonate (JA) accumulation and impairment of the direct (trypsin proteinase inhibitors) and indirect (volatiles) defenses that JA signaling mediates. The response to wounding and herbivore-specific signals (FACs) demonstrates that these WRKYs help plants to differentiate mechanical wounding from herbivore attack, mediating a plant9s herbivore-specific defenses. Differences in responses to single and multiple elicitations indicate an important role of WRKY3 and WRKY6 in potentiating and/or sustaining active JA levels during continuous insect attack.Keywords
This publication has 74 references indexed in Scilit:
- Methyl jasmonate-elicited herbivore resistance: does MeJA function as a signal without being hydrolyzed to JA?Planta, 2008
- Networks of WRKY transcription factors in defense signalingPublished by Elsevier ,2007
- Arabidopsis MEKK1 can take a short cut: it can directly interact with senescence-related WRKY53 transcription factor on the protein level and can bind to its promoterPlant Molecular Biology, 2007
- SNF1-related kinases allow plants to tolerate herbivory by allocating carbon to rootsProceedings of the National Academy of Sciences, 2006
- Occurrence of tetraploidy in Nicotiana attenuata plants after Agrobacterium-mediated transformation is genotype specific but independent of polysomaty of explant tissuePlant Cell Reports, 2006
- Tobacco Transcription Factor WRKY1 Is Phosphorylated by the MAP Kinase SIPK and Mediates HR-Like Cell Death in TobaccoMolecular Plant-Microbe Interactions®, 2005
- Members of the Arabidopsis WRKY Group III Transcription Factors Are Part of Different Plant Defense Signaling PathwaysMolecular Plant-Microbe Interactions®, 2003
- Agrobacterium-mediated transformation of Nicotiana attenuata, a model ecological expression systemChemoecology, 2002
- Ecophysiological comparison of direct and indirect defenses in Nicotiana attenuataOecologia, 2000
- Herbivore-infested plants selectively attract parasitoidsNature, 1998