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4. Insight into trade-off between wood decay and parasitism from the genome of a fungal forest pathogen

5. Obligate Biotrophy Features Unraveled by the Genomic Analysis of the Rust Fungi, Melampsora larici-populina and Puccinia graminis f. sp. tritici

9. Genetically-clustered antifungal phytocytokines and receptor proteins function together to trigger plant immune signaling

13. Two FCA-Based Methods for Mining Gene Expression Data

15. Annotation survey and life cycle transcriptomics of transcription factors in rust fungi (Pucciniales) identify a possible role for cold shock proteins in dormancy exit

18. Obligate biotrophy features unraveled by the genomic analysis of rust fungi

22. Poplar peroxiredoxin Q. A thioredoxin-linked chloroplast antioxidant functional in pathogen defense (1)

23. Isolation and characterization of differentially expressed genes in the mycelium and fruit body of Tiber borchii

24. Oak genome reveals facets of long lifespan

27. Sex and parasites: genomic and transcriptomic analysis of Microbotryum lychnidis-dioicae, the biotrophic and plant-castrating anther smut fungus

31. Revisiting life cycle and biology of rust fungi (Pucciniales) in the genomics era

32. Deciphering complex plant-microbe interactions with genomics: from the case study of the poplar-poplar rust interaction toward rust pangenomics

33. The poplar rust fungus effector biology: challenges of functional characterization of effectors in a non-model system

34. Genomics of Pucciniales

35. The poplar-poplar rust interaction: an emerging model system in tree pathology

36. Phylogenetics and comparative transcriptomics of Gymnosporangium species

37. Le séquençage du génome du chêne

38. Supersize fungi: Rust in the genomics era!

39. Update on Melampsora larici-populina genomics

42. Deciphering host specificity in poplar rust fungi through life-cycle transcriptomics and comparative genomics

43. Functional characterization of Melampsora larici-populina candidate effectors

44. Update on Melampsora larici-populina genomics

45. Genetically-clustered antifungal phytocytokines and receptor protein family members cooperate to trigger plant immune signaling.

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