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1. The Zymoseptoria tritici Avirulence Factor AvrStb6 Accumulates in Hyphae Close to Stomata and Triggers a Wheat Defense Response Hindering Fungal Penetration

2. Major proliferation of transposable elements shaped the genome of the soybean rust pathogen Phakopsora pachyrhizi

3. Virulent strains of Zymoseptoria tritici suppress the host immune response and facilitate the success of avirulent strains in mixed infections.

4. A thousand-genome panel retraces the global spread and adaptation of a major fungal crop pathogen

5. Genome compartmentalization predates species divergence in the plant pathogen genus Zymoseptoria

6. Recent loss of the Dim2 DNA methyltransferase decreases mutation rate in repeats and changes evolutionary trajectory in a fungal pathogen.

7. Dynamics of transposable elements in recently diverged fungal pathogens: lineage-specific transposable element content and efficiency of genome defenses

8. Candidate Effector Proteins of the Rust Pathogen Melampsora larici-populina Target Diverse Plant Cell Compartments

9. Heterologous Expression Screens in Nicotiana benthamiana Identify a Candidate Effector of the Wheat Yellow Rust Pathogen that Associates with Processing Bodies.

10. Zymoseptoria triticisuppresses the host immune response and facilitates the success of avirulent strains in mixed infections

11. Host Adaptation and Virulence in Heteroecious Rust Fungi

12. A thousand-genome panel retraces the global spread and climatic adaptation of a major crop pathogen

13. The soybean rust pathogen Phakopsora pachyrhizi displays transposable element proliferation that correlates with broad host-range adaptation on legumes

14. Host-specialized transcriptome of plant-associated organisms

15. Epigenetic modifications affect the rate of spontaneous mutations in a pathogenic fungus

18. Dynamics of transposable elements in recently diverged fungal pathogens: lineage-specific transposable element content and efficiency of genome defences

19. Recent loss of the Dim2 DNA methyltransferase decreases mutation rate in repeats and changes evolutionary trajectory in a fungal pathogen

20. Genome compartmentalization predates species divergence in the plant pathogen genus Zymoseptoria

21. The Rust Fungus Melampsora larici-populina Expresses a Conserved Genetic Program and Distinct Sets of Secreted Protein Genes During Infection of Its Two Host Plants, Larch and Poplar

22. Structural genomic applied on the rust fungus Melampsora larici-populina reveals two candidate effector proteins adopting cystine-knot and nuclear transport factor 2-like protein folds

23. Advances in understanding obligate biotrophy in rust fungi

24. Show me the way: rust effector targets in heterologous plant systems

25. A rust fungal effector binds plant DNA and modulates transcription

26. Rust fungal effectors mimic host transit peptides to translocate into chloroplasts

27. New insights into plant-microbe interactions through advances in fungal genetics

28. Heterologous Expression Screens in Nicotiana benthamiana Identify a Candidate Effector of the Wheat Yellow Rust Pathogen that Associates with Processing Bodies

29. Effector-Mining in the Poplar Rust Fungus Melampsora larici-populina Secretome

30. In planta expression screens of candidate effector proteins from the wheat yellow rust fungus reveal processing bodies as a pathogen-targeted plant cell compartment

31. RUST FUNGAL EFFECTORS MIMIC HOST TRANSIT PEPTIDES TO TRANSLOCATE INTO CHLOROPLASTS

32. Candidate Effector Proteins of the Rust Pathogen Melampsora larici-populina Target Diverse Plant Cell Compartments

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