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1. Ustilago maydis effector Jsi1 interacts with Topless corepressor, hijacking plant jasmonate/ethylene signaling.

2. Chemokine-like MDL proteins modulate flowering time and innate immunity in plants.

3. Arabidopsis mlo3 mutant plants exhibit spontaneous callose deposition and signs of early leaf senescence.

4. Signal peptide peptidase activity connects the unfolded protein response to plant defense suppression by Ustilago maydis.

5. Eudicot plant-specific sphingolipids determine host selectivity of microbial NLP cytolysins.

6. The novel monocot-specific 9-lipoxygenase ZmLOX12 is required to mount an effective jasmonate-mediated defense against Fusarium verticillioides in maize.

7. Infection of corn ears by Fusarium spp. induces the emission of volatile sesquiterpenes.

8. Secreted fungal effector lipase releases free fatty acids to inhibit innate immunity-related callose formation during wheat head infection.

9. A secreted Ustilago maydis effector promotes virulence by targeting anthocyanin biosynthesis in maize.

10. The vascular pathogen Verticillium longisporum requires a jasmonic acid-independent COI1 function in roots to elicit disease symptoms in Arabidopsis shoots.

11. Verticillium longisporum infection affects the leaf apoplastic proteome, metabolome, and cell wall properties in Arabidopsis thaliana.

12. Sporisorium reilianum infection changes inflorescence and branching architectures of maize.

13. Limitation of nocturnal ATP import into chloroplasts seems to affect hormonal crosstalk, prime defense, and enhance disease resistance in Arabidopsis thaliana.

14. Phosphoinositide and inositolpolyphosphate signalling in defense responses of Arabidopsis thaliana challenged by mechanical wounding.

15. Maize 9-lipoxygenase ZmLOX3 controls development, root-specific expression of defense genes, and resistance to root-knot nematodes.

16. A novel plastidial lipoxygenase of maize (Zea mays) ZmLOX6 encodes for a fatty acid hydroperoxide lyase and is uniquely regulated by phytohormones and pathogen infection.

17. Oxylipin profiling reveals the preferential stimulation of the 9-lipoxygenase pathway in elicitor-treated potato cells.

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