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1. Botrytis cinerea combines four molecular strategies to tolerate membrane-permeating plant compounds and to increase virulence.

2. The soil-borne white root rot pathogen Rosellinia necatrix expresses antimicrobial proteins during host colonization

3. Segmental duplications drive the evolution of accessory regions in a major crop pathogen

4. Segmental duplications drive the evolution of accessory regions in a major crop pathogen

5. The soil-borne white root rot pathogen Rosellinia necatrix expresses antimicrobial proteins during host colonization

6. The soil-borne white root rot pathogen Rosellinia necatrix expresses antimicrobial proteins during host colonization

7. Segmental duplications drive the evolution of accessory regions in a major crop pathogen

9. The soil-borne white root rot pathogen Rosellinia necatrix expresses antimicrobial proteins during host colonization

10. The grey mould Botrytis cinerea employs multiple mechanisms to protect itself from antifungal plant metabolites

11. The soil-borne white root rot pathogenRosellinia necatrixexpresses antimicrobial proteins during host colonization

12. Fusarium oxysporum f. sp. cubense Genome sequencing and assembly

13. Comparative genomics reveals the in planta-secreted Verticillium dahliae Av2 effector protein recognized in tomato plants that carry the V2 resistance locus

15. The interspecific fungal hybrid Verticillium longisporum displays subgenome-specific gene expression

16. The interspecific fungal hybrid Verticillium longisporum displays subgenome-specific gene expression

17. Comparative genomics reveals the in planta-secreted Verticillium dahliae Av2 effector protein recognized in tomato plants that carry the V2 resistance locus

18. The Interspecific Fungal Hybrid Verticillium longisporum Displays Subgenome-Specific Gene Expression

19. Comparative genomics reveals the in planta-secreted Verticillium dahliae Av2 effector protein recognized in tomato plants that carry the V2 resistance locus

20. Long-read sequencing of Rosellinia necatrix genomes: a resource for understanding white root rot disease

21. Purpureocillium lilacinum (Hypocreales: Ophiocordycipitaceae) como biocontrolador de Nacobbus aberrans (Tylenchida: Pratylenchidae) y Meloidogyne incognita (Tylenchida: Meloidogynidae) en tomate cv. Río Grande

22. Comparative genomics of Verticillium dahliae isolates reveals the in planta-secreted effector protein recognized in V2 tomato plants

27. RESPUESTA DE LA LÍNEA 35-3 DE CHILE TIPO HUACLE (CAPSICUM ANNUUM) A DOS POBLACIONES DE NACOBBUS ABERRANS.

29. The Interspecific Fungal Hybrid Verticillium longisporumDisplays Subgenome-Specific Gene Expression

30. Comparative genomics reveals the in planta-secreted Verticillium dahliae Av2 effector protein recognized in tomato plants that carry the V2 resistance locus

31. Comparative genomics reveals the in planta-secreted Verticillium dahliae Av2 effector protein recognized in tomato plants that carry the V2 resistance locus

32. Segmental duplications drive the evolution of accessory regions in a major crop pathogen.

33. Comparative genomics reveals the in planta-secreted Verticillium dahliae Av2 effector protein recognized in tomato plants that carry the V2 resistance locus.

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