Aeromonas veronii Is a Lethal Pathogen Isolated from Gut of Infected Labeo rohita : Molecular Insight to Understand the Bacterial Virulence and Its Induced Host Immunity.
Bijay Kumar BeheraSatya Narayan ParidaVikash KumarHimanshu Sekhar SwainPranaya Kumar ParidaKampan BisaiSouvik DharBasanta Kumar DasPublished in: Pathogens (Basel, Switzerland) (2023)
A case of severe mortality in farmed Labeo rohita was investigated to characterize the causative agent. We identified the bacterial strain as Aeromonas veronii isolated from the gut of infected L. rohita by biochemical assay, scanning electron microscopy and 16S rRNA gene sequence analysis. The in vivo challenge experiment showed that the LD 50 of A. veronii was 2.2 × 10 4 CFU/fish. Virulence gene investigation revealed that the isolated A. veronii possesses Aerolysin, Cytotoxic enterotoxin, Serine protease, Dnase and Type III secretion system genes. The isolated strain was resistant to two antibiotics (ampicillin and dicloxacillin) while susceptible to 22 other antibiotics. The study further revealed that A. veronii induced both stresses along with non-specific and specific immune responses marked by elevated cortisol HSP70, HSP90 and IgM levels in the treated L. rohita fingerlings. Although the bacterial pathogen enhances the immune response, the negative effect on fish, including stress, and high mortality, create concern and a need for A. veronii management in L. rohita farms. The knowledge gained from this study would facilitate future research aimed at assessing the pathogenicity of A. veronii , with an emphasis on microbial disease management in other farmed fish species.
Keyphrases
- immune response
- electron microscopy
- escherichia coli
- type iii
- genome wide
- pseudomonas aeruginosa
- high glucose
- staphylococcus aureus
- healthcare
- biofilm formation
- heat stress
- single cell
- copy number
- diabetic rats
- genome wide identification
- antimicrobial resistance
- dna methylation
- type diabetes
- microbial community
- heat shock protein
- endothelial cells
- dendritic cells
- cardiovascular disease
- risk factors
- heat shock
- toll like receptor
- high throughput
- newly diagnosed
- genome wide analysis