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1. Apo-siderophores promote growth of iron-deficient Arabidopsis plants by mobilizing iron from roots to shoots and reducing oxidative stress in roots

2. Reliable reference genes and abiotic stress marker genes in Klebsormidium nitens

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3. S-Nitrosation of Arabidopsis thaliana Protein Tyrosine Phosphatase 1 Prevents Its Irreversible Oxidation by Hydrogen Peroxide

4. Identification of Partner Proteins of the Algae Klebsormidium nitens NO Synthases: Toward a Better Understanding of NO Signaling in Eukaryotic Photosynthetic Organisms

5. Some Plant Defense Stimulators can induce IL-1β production in human immune cells in vitro

6. Cross Kingdom Immunity: The Role of Immune Receptors and Downstream Signaling in Animal and Plant Cell Death

7. Correction: The Sulfated Laminarin Triggers a Stress Transcriptome before Priming the SA- and ROS-Dependent Defenses during Grapevine's Induced Resistance against Plasmopara viticola.

8. Inflammatory Effects of the Plant Protection Product Stifenia (FEN560) on Vertebrates

9. β-Aminobutyric Acid (BABA)-Induced Resistance in Arabidopsis thaliana: Link with Iron Homeostasis

10. Free Radicals Mediate Systemic Acquired Resistance

11. Changes in Carbohydrate Metabolism in Plasmopara viticola-Infected Grapevine Leaves

12. β-Aminobutyric Acid Primes an NADPH Oxidase–Dependent Reactive Oxygen Species Production During Grapevine-Triggered Immunity

13. Early Responses of Tobacco Suspension Cells to Rhizobacterial Elicitors of Induced Systemic Resistance

14. Priming: Getting Ready for Battle

15. Early Signaling Events Induced by Elicitors of Plant Defenses

16. Integrated Signaling Network Involving Calcium, Nitric Oxide, and Active Oxygen Species but Not Mitogen-Activated Protein Kinases in BcPG1-Elicited Grapevine Defenses

17. The sulfated laminarin triggers a stress transcriptome before priming the SA- and ROS-dependent defenses during grapevine's induced resistance against Plasmopara viticola.

19. 1H, 13C and 15N chemical shift backbone resonance NMR assignment of tobacco calmodulin 2

20. Nitric oxide-releasing nanomaterials: from basic research to potential biotechnological applications in agriculture

21. S-Nitrosation of

22. Some Plant Defense Stimulators can induce IL-1β production in human immune cells in vitro

23. The chaperone-like protein Cdc48 regulates ubiquitin-proteasome system in plants

24. Nitric oxide synthase in plants—A follow-up of ABR volume 77: Nitric oxide and signaling in plants

25. Physiological significance of pedospheric nitric oxide for root growth, development and organismic interactions

26. Regulating the regulator: nitric oxide control of post-translational modifications

27. Nitrogen modulation of Medicago truncatula resistance to Aphanomyces euteiches depends on plant genotype

28. Recommendations on terminology and experimental best practice associated with plant nitric oxide research

29. The evolution of nitric oxide signalling diverges between the animal and the green lineages

30. A forty year journey: The generation and roles of NO in plants

31. Toward the understanding of the role of CDC48, a major component of the protein quality control, in plant immunity

33. Evolutionary diversification of type-2 HDAC structure, function and regulation in Nicotiana tabacum

34. Analysis of Recombinant Protein S-Nitrosylation Using the Biotin-Switch Technique

35. The Sulfated Laminarin Triggers a Stress Transcriptome before Priming the SA- and ROS-Dependent Defenses during Grapevine's Induced Resistance against Plasmopara viticola

36. Nitric oxide synthase in plants: The surprise from algae

37. Analysis of recombinant protein S-Nitrosylation using the biotin-switch technique

38. β-Aminobutyric Acid (BABA)-Induced Resistance in Arabidopsis thaliana: Link with Iron Homeostasis

39. Interplays between nitric oxide and reactive oxygen species in cryptogein signalling

40. Nitric Oxide and Signaling in Plants

41. Type-II histone deacetylases: elusive plant nuclear signal transducers

42. Involvement of the glutamate receptor AtGLR3.3 in plant defense signaling and resistance toHyaloperonospora arabidopsidis

43. There's More to the Picture Than Meets the Eye: Nitric Oxide Cross Talk with Ca2+ Signaling

44. Le monoxyde d’azote

45. Nitric oxide synthase in plants: Where do we stand?

46. Plant responses to biotic/abiotic stresses: lessons from cell signalin

47. Functional characterization of the chaperon-like protein Cdc48 in cryptogein-induced immune response in tobacco

48. Structure and functions of the chaperone-like p97/CDC48 in plants

49. Effet de la nutrition azotée et du génotype de la plante sur la résistance de Medicago truncatula à Aphanomyces euteiches

50. Electrochemical Detection of Nitric Oxide in Plant Cell Suspensions