Transcriptome profiling reveals differential expression of virulence genes in Xylella fastidiosa under nutrient-rich and xylem-like conditions. (2025) PM Pierry, OR Feitosa-Junior, et al. bioRxiv, 2025.08. 15.669762
The Exometabolome of Xylella fastidiosa in Contact with Paraburkholderia phytofirmans Supernatant Reveals Changes in Nicotinamide, Amino Acids, Biotin, and Plant Hormones. (2024) OR Feitosa-Junior, et al., Metabolites 14 (2), 82
Biophysical and proteomic analyses of Pseudomonas syringae pv. tomato DC3000 extracellular vesicles suggest adaptive functions during plant infection. (2023) M Janda, K Rybak, L Krassini, C Meng, O Feitosa-Junior, et al., MBio 14 (4), e03589-22
The XadA Trimeric Autotransporter Adhesins in Xylella fastidiosa Differentially Contribute to Cell Aggregation, Biofilm Formation, Insect Transmission and Virulence to Plants. (2022) OR Feitosa-Junior, APS Souza, et al. Molecular Plant-Microbe Interactions 35 (9), 857-86611