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Vieira Da Silva, C.

Publications and source records attributed to Vieira Da Silva, C..

2 recordsLinked to original sources

Identification and characterization of the surface layer protein AvsA in outer membrane vesicles, antibiotic resistance, and in vivo host colonization in Aeromonas veronii

Outer membrane vesicles (OMVs) are important in bacterial communication and the transfer of virulence factors. In this study, we identified and characterized the surface layer protein (SLP) AvsA (Aeromonas veronii surface protein A) in the OMVs of Aeromonas veronii Hm21, a strain isolated from the medicinal leech Hirudo verbana. The surface layer proteins (SLPs) play critical roles in how bacteria interact with each other and their environments, particularly in mediating antibiotic resistance and facilitating host colonization. Furthermore, we investigate the ability of AvsA to confer protection against antibiotics, affect biofilm formation, and contribute to host colonization, providing insight into antibiotic resistance and two crucial factors contributing to the persistence of the bacteria in its host. Our findings suggest that AvsA enhances antibiotic tolerance, facilitates biofilm development, and is important for successful colonization of the leech digestive tract. These data demonstrate that AvsA performs important roles in a wide range of critical phenotypes. This work provides insights into the functional significance of SLPs in A. veronii and highlights AvsA as a potential target for modulating bacterial colonization and resilience against antibiotics. ImportanceOuter membrane vesicles (OMVs) are important for bacterial communication, pathogenesis, and stress adaptation, yet how this is accomplished remains poorly understood. Here, we identify and characterize a surface layer protein (SLP), AvsA, associated with OMVs in Aeromonas veronii Hm21. Bioinformatic, phylogenetic, and mass spectrometry analyses suggest that Aeromonas veronii ORF M001_06550 encodes a surface layer protein (SLP) with high similarity to a characterized A. hydrophila SLP, supporting its designation as Aeromonas veronii Surface Protein A (AvsA). AvsA forms a paracrystalline layer on bacterial cells and OMVs. Functionally, AvsA contributes to antibiotic resistance, enhances biofilm formation, and is essential for colonization in a symbiotic host, the medicinal leech. These findings highlight a novel role of SLPs in bacterial physiology and host interactions. Given the widespread presence of AvsA homologs, our study provides insights into conserved bacterial mechanisms that may be relevant for both pathogenic and beneficial host-microbe interactions.

microbiology↗

Pseudomonas apudapuas sp. nov., Pseudomonas fontis sp. nov., Pseudomonas idahonensis sp. nov., and Pseudomonas rubra sp. nov. isolated from in, and around, a rainbow trout farm

During a large-scale bacterial culturing effort of biofilms in the vicinity of a rainbow trout aquaculture facility in Idaho, USA, ten isolates were identified as having pathogen inhibiting activity and were characterized further. These isolates were shown to be Gram negative, rod-shaped bacteria belonging to the genus Pseudomonas. Whole genome comparisons and multi-locus sequence analysis using four housekeeping genes (16S rDNA, gyrA, rpoB, rpoD) showed that these 10 isolates clustered into four distinct species groups. These comparisons also indicated that these isolates were below the established species cutoffs for the genus Pseudomonas. Further phenotypic characterization using API 20NE, API ZYM, and BioLog GENIII assays and chemotaxonomic analysis of cellular fatty acids were carried out. Based on the genomic, physiological, and chemotaxonomic properties of these isolates, we concluded that these strains composed four novel species of Pseudomonas. The proposed names are: Pseudomonas apudapuas sp. nov. consisting of strains ID233, ID386T, and ID387 with ID386T (DSM 114641) as the type strain; Pseudomonas rubra sp. nov. consisting of strains ID291T, ID609, and ID1025 with ID291T (DSM 114640) as the type strain; Pseudomonas idahonensis sp. nov. consisting of strains ID357T and ID1048 with ID357T (DSM 114609) as the type strain; and Pseudomonas fontis sp. nov. consisting of strains ID656T and ID681 with ID656T (DSM 114610) as the type strain.

microbiology↗