- Isolation and identification of Aeromonas hydrophila, A. veronii and Vibrio cholerae O139 from diseased bester sturgeon using culture, MALDI-TOF, PCR and 16S sequencing.
- Virulence profiling: A. hydrophila carried multiple virulence and enterotoxin genes; A. veronii possessed aerA; V. cholerae O139 lacked ctxA and rfbO1.
- Experimental infections with A. hydrophila and V. cholerae O139 caused dose-dependent mortality, confirming pathogenicity and marking first concurrent detection in Bulgaria.
J Fish Dis. 2026 Sep 11:e70280. doi: 10.1111/jfd.70280. Online ahead of print.
ABSTRACT
This study investigated bacterial pathogens associated with disease and mortality in farmed bester sturgeon (Huso huso × Acipenser ruthenus) reared in freshwater cages in the Vacha Reservoir, Bulgaria. Affected fish exhibited lethargy, anorexia, haemorrhagic skin lesions and multifocal internal pathology. Histological examination revealed hepatic degeneration and vacuolar change, consistent with systemic bacterial infection. Bacterial isolates recovered from blood and internal organs were identified as Aeromonas hydrophila, A. veronii and Vibrio cholerae O139 using culture-based methods, MALDI-TOF MS, species-specific PCR and 16S rRNA gene sequencing. Virulence profiling showed that A. hydrophila carried multiple virulence-associated and enterotoxin genes, whereas A. veronii possessed only aerA. The V. cholerae O139 isolate lacked ctxA and rfbO1, confirming a non-toxigenic profile. In vivo infection trials with clinical sturgeon isolates A. hydrophila HGM24 and V. cholerae O139 GM24 produced dose-dependent mortality, demonstrating the pathogenic potential of both isolates. This case represents the first concurrent detection and characterisation of A. hydrophila, A. veronii and V. cholerae O139 in bester sturgeon in Bulgaria. It underscores the importance of integrated diagnostic approaches combining pathogen identification, virulence assessment, histopathology and experimental infection in freshwater aquaculture disease investigations.
PMID:42728603 | DOI:10.1111/jfd.70280
Share Evidence Blueprint
Save to Google Notes

Search Google Scholar
Save as PDF
⭐ My Revision List

