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Role of Arabidopsis bHLH transcription factors MYC2, MYC3 and MYC4 in defense against herbivory www.unil.ch/reymondlab.

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Presentation on theme: "Role of Arabidopsis bHLH transcription factors MYC2, MYC3 and MYC4 in defense against herbivory www.unil.ch/reymondlab."— Presentation transcript:

1 Role of Arabidopsis bHLH transcription factors MYC2, MYC3 and MYC4 in defense against herbivory www.unil.ch/reymondlab

2 ABCD Predators Indirect defenses Direct defenses Induction of defense genes Emission of volatile compounds Induced defenses in response to herbivory TFs Jasmonate pathway

3 JA signalling from Staswick, 2008 Stimulus (wound, herbivore)

4 Spodoptera littoralis WT coi1-1 WT coi1-1 Spodoptera littoralis JA signalling is crucial for defense against herbivory The majority of insect-responsive genes are not induced in coi1-1 7 days of larval feeding Reymond et al. (2004) Plant Cell

5 Role of bHLH transcription factors MYC2, MYC3 and MYC4 Growth of Spodoptera littoralis larvae on myc mutants Fernandez-Calvo et al. (2011) Plant Cell Sub-family of Arabidopsis bHLH transcription factors

6 Trancriptome analysis of myc234 mutant Schweizer et al. (2013) Plant Cell The majority of highly dowregulated genes in myc234 are GS-pathway genes

7 Glucosinolate pathway genes are downregulated in myc234 mutant

8 Glucosinolates are defense compounds in Brassicaceae Aliphatic-GS Indole-GS

9 Rapid profiling of intact glucosinolates Glauser et al. (2012) Phytochem Anal UHPLC-QTOFMS

10 Glucosinolate levels are highly reduced in myc234 mutants Constitutive Induced (S. littoralis) Schweizer et al. (2013) Plant Cell

11 MYCs control GS accumulation in seeds

12 Two-choice assay The specialist P. brassicae prefers glucosinolate-containing plants Oviposition Contrasting insect performance on Arabidopsis glucosinolate mutants Schweizer et al. (2013) Plant Cell

13 Change of feeding behaviour of a generalist herbivore Schweizer et al. (2013) Plant Cell Non-uniform ditribution of GS Schroff et al. (2008) PNAS

14 Are GS-related MYBs controlled MYC2,3,4? downregulated genes MYC2 MYC3 MYC4 MYC2 MYC3 MYC4 ? ?

15 MYC2,3,4 physically interact with MYBs Schweizer et al. (2013) Plant Cell but: GS-related MYBs do not interact with JAZs

16 MYC2 binds to the promoter of GS biosynthesis genes ChIP-seq analysis of MYC2-GFP plants CYP79B3 (Atg22330)SOT16 (Atg74100) Consensus MYC binding site (G-box element) GS biosynthesis genes contain MYC- and MYB-binding sites Schweizer et al. (2013) Plant Cell

17 Model for MYC234-dependent activation of glucosinolate genes defense against generalist herbivores

18 Role of other insect-inducible transcription factors S. littoralis performance S. littoralis-induced genes Schweizer et al. (2013) Front. Plant Sci.

19 A hierarchy of transcription factors MYBs glucosinolates

20 Acknowledgements Fabian Schweizer Gaetan Glauser & Ted Turlings SPSW Chemical Analysis Service, Neuchâtel Patricia Fernandez-Calvo & Roberto Solano Dept. of Plant Molecular Genetics, Madrid Mark Zander, Mathew Lewsey & Joe Ecker The Salk Institute, La Jolla (CA)


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