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3. The Role of Microbial Metabolites in Biological Control

4. Bacterial rhamnolipids and their 3-hydroxyalkanoate precursors activate Arabidopsis innate immunity through two independent mechanisms

6. Mechanosensing and Sphingolipid-Docking Mediate Lipopeptide-Induced Immunity inArabidopsis

9. Mechanosensing and Sphingolipid-Docking Mediate Lipopeptide-Induced Immunity in Arabidopsis

14. Comparative analysis of defence responses induced by the endophytic plant growth-promoting rhizobacterium Burkholderia phytofirmans strain PsJN and the non-host bacterium Pseudomonas syringae pv. pisi in grapevine cell suspensions

16. Rhamnolipids and their 3-(3-hydroxyalkanoyloxy)alkanoic acid precursors activate Arabidopsis innate immunity through two independent mechanisms

17. Synthetic Mono-Rhamnolipids Display Direct Antifungal Effects and Trigger an Innate Immune Response in Tomato against Botrytis Cinerea

19. Hydrogen peroxide from the oxidative burst is neither necessary nor sufficient for hypersensitive cell death induction, phenylalanine ammonia lyase stimulation, salicylic acid accumulation, or scopoletin consumption in cultured tobacco cells treated with elicitin

20. Synthetic Mono-Rhamnolipids Display Direct Antifungal Effects and Trigger an Innate Immune Response in Tomato against .

23. ). Bacterial medium chain 3-hydroxy fatty acid metabolites trigger LORE-mediated immunity in Arabidopsis thaliana

24. De la chimie de synthèse à la stimulation de l'immunité des plantes

25. A Rhamnolipid precursor triggers Induced Systemic Resistance in Arabidopsis

26. A MEDIUM-CHAIN 3-HYDROXY FATTY ACID TRIGGERS INDUCED SYSTELIC RESISTANCE IN ARABIDOPSIS

27. UTILISATION DE MELANGES DE GLYCOLIPIDES AUX PROPRIETES ANTIFONGIQUES § ELICITRICES POUR LA PROTECTION DU COLZA CONTRE LEPTOSPHAERIA MACULANS

28. Les rhamnolipides induisent une résistance systémique à Botrytis cinerea chez Arabidopsis thaliana

29. L’immunité chez les plantes. Interview diffusée sur internet

30. Bacterial medium chain 3-hydroxy fatty acid metabolites trigger LORE-mediated immunity in Arabidopsis thaliana

31. RHAMNOLIPID SOLUTIONS WITCH ANTIFUNGAL AND ELICITING PROPERTIES TO PROTECT RAPESEED AGAINST LEPTOSPHAERIA MACULANS

32. Role of sphingolipids in plant/bacterium interaction

33. Paraburkholderia phytofirmans PsJN-Plants Interaction: From Perception to the Induced Mechanisms

34. The bacterial glycolipids rhamnolipids trigger InducedSystemic Resistance in Arabidopsis

35. Draft Genome Sequence of Plant Growth-Promoting Burkholderia sp. Strain BE12, Isolated from the Rhizosphere of Maize

36. Projet RhamnoSol : Influence du sol sur la capacité des rhamnolipides à induire une résistance systémique chez Arabidopsis thaliana

37. Brassica napus defense responses triggered by bacterial rhamnolipids -from perception to effective protection

38. Characterization of immunity-related signaling events triggered by Pseudomonas aeruginosa exudate in Arabidopsis

39. Une alternative pour la protection des cultures : les Rhamnolipides Conception et évaluation contre différents pathosystèmes

40. Etudes des potentialités de nouvelles biomolecules pour la protection des plantes en agriculture biologique

41. Caractérisation des mécanismes impliqués dans la perception de rhamnolipides naturels et synthétiques chez Arabidopsis thaliana

42. Etudes des potentialités de nouvelles biomolecules pour la protection des plantes en agriculture biologique : les projets Phytobio et Smartbiocontrol. (2017) 6ème COMAPPI

43. Synthetic Rhamnolipid Bolaforms (SRBs) as inducers of plant innate immunity

44. Rhamnolipids from Pseudomonas aeruginosa trigger defense responses in Brassica napus: highlighting and molecular study

46. Insights into the molecular basis of rhamnolipid and surfactin perception by plant cells

47. Changes in sphingolipid content differently affect plant tolerance to necrotrophic and biotrophic pathogens by modulating plant defense responses in Arabidopsis

48. Bases moléculaires de la perception par les cellules végétales de deux éliciteurs amphiphiles (rhamnolipides et surfactines)

49. Evaluation a priori des risques immuno-toxiques associés aux composés biosourcés d’origines microbiennes – Cas des rhamnolipides

50. Perception of rhamnolipids by rapeseed – Is the interaction with plasma membrane lipids the signal?

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