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2. Allelic variability in the Rpp1 locus conferring resistance to Asian soybean rust revealed by genome-wide association

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

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

5. Genetic diversity, population structure in a historical panel of Brazilian soybean cultivars.

10. Phakopsora pachyrhizi triggers the jasmonate signaling pathway during compatible interaction in soybean and GmbZIP89 plays a role of major component in the pathway

13. Genome-Wide Association Studies and QTL Mapping Reveal a New Locus Associated with Resistance to Bacterial Pustule Caused by Xanthomonas citri pv. glycines in Soybean.

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

21. Soybean‐Phakopsora pachyrhizi interactions: towards the development of next‐generation disease‐resistant plants.

23. Characterization of Molecular and Physiological Responses Under Water Deficit of Genetically Modified Soybean Plants Overexpressing the AtAREB1 Transcription Factor

26. A Phakopsora pachyrhizi Effector Suppresses PAMP-Triggered Immunity and Interacts with a Soybean Glucan Endo-1,3-β-Glucosidase to Promote Virulence

27. Mapping of a soybean rust resistance in PI 594756 at the Rpp1 locus

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

29. Secondary Metabolites of Pseudomonas aeruginosa LV Strain Decrease Asian Soybean Rust Severity in Experimentally Infected Plants

31. Novel and efficient transformation of wild passion fruit (Passiflora cincinnata Mast.) using sonication-assisted Agrobacterium-mediated transformation

33. Genome-Wide Association Study for Resistance to the Meloidogyne javanica Causing Root-Knot Nematode in Soybean

34. Transcriptional profile of genes involved in the production of terpenes and glyceollins in response to biotic stresses in soybean

35. Characterization of genetic diversity and pathogenicity of Phakopsora pachyrhizi mono-uredinial isolates collected in Brazil

36. Genome-Wide Association Study for Resistance to the Meloidogyne javanica Causing Root-Knot Nematode in Soybean

37. Evaluation of disease severity caused by Bean golden mosaic virus in different bean cultivars.

39. New insights into Phakopsora pachyrhizi infection based on transcriptome analysis in planta

40. Morphological and molecular characterization of Diaporthe (anamorph Phomopsis) complex and pathogenicity of Diaporthe aspalathi isolates causing stem canker in soybean

43. Prediction of the in planta Phakopsora pachyrhizi secretome and potential effector families

44. Evaluation of genetic variation among Brazilian soybean cultivars through genome resequencing

45. Characterization of Molecular and Physiological Responses Under Water Deficit of Genetically Modified Soybean Plants Overexpressing the AtAREB1 Transcription Factor

46. Prediction of the in planta Phakopsora pachyrhizi secretome and potential effector families.

47. Plant-to-seed transmission of Curtobacterium flaccumfacienspv. flaccumfacienson soybean

48. Evaluation of genetic variation among Brazilian soybean cultivars through genome resequencing.

49. PHENOTYPING SOYBEANS FOR DROUGHT RESPONSES USING REMOTE SENSING TECHNIQUES AND NON-DESTRUCTIVE PHYSIOLOGICAL ANALYSIS.

50. Molecular mapping of quantitative trait loci for agronomical traits in soybean under Asian soybean rust infection.

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