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1.
Microb Pathog ; 169: 105620, 2022 Aug.
Article in English | MEDLINE | ID: mdl-35690232

ABSTRACT

Edwardsiellosis is a serious bacterial disease affecting Nile tilapia (Oreochromis niloticus), causing septicemia and mortalities. Edwardsiella tarda and Edwardsiella anguillarum were isolated from Nile tilapia summer mortality events in Egypt. Diseased fish showed hemorrhagic septicemia, skin erosions, and eye opacity. A total of 24 Edwardsiella spp. isolates were retrieved from the investigated fish specimens. Phenotypic and biochemical characteristics grouped isolates into typical Ed. tarda (n = 14 strains) and atypical Ed. tarda (n = 10 strains). The BLAST analysis of sodB gene sequencing confirmed the conventional identification of typical Ed. tarda strains (n = 14) and reidentified all the atypical strains (n = 10) as Ed. anguillarum. Isolates showed a combination of virulence factors, including biofilm formation (66.6%), hemolysis (100%), chondroitinase (50%), and proteolytic activity (20.8%). The major part of isolates showed high resistance to ampicillin, amoxicillin, gentamycin antibiotics and harbored tetA, blaCTX-M, and aadA1 resistance genes. Pathogenicity testing of isolates in O. niloticus confirmed their virulence. Challenged fish exhibited septicemic signs similar to naturally diseased fish. Infections in naturally infected tilapia triggered acute and chronic histopathological alterations. Degenerative and necrotic changes were noticed in hematopoietic organs. Granulomas were noticed in between the hepatic parenchyma. The data extracted from the study confirm that accurate identification of the causative agents of edwardsiellosis should be reliant on genetic-based approaches. Analysis of the bacterium virulence properties offers insights into establishing novel therapeutics for edwardsiellosis control. The findings refer to the need for antimicrobial sensitivity testing to minimize antimicrobial resistance and increase therapy efficacy.


Subject(s)
Cichlids , Fish Diseases , Tilapia , Animals , Anti-Bacterial Agents/pharmacology , Cichlids/microbiology , Edwardsiella tarda , Fish Diseases/microbiology , Virulence
2.
Fish Shellfish Immunol ; 89: 354-360, 2019 Jun.
Article in English | MEDLINE | ID: mdl-30959182

ABSTRACT

Vibrio alginolyticus is an opportunistic and halophilic Gram-negative pathogen in limiting the development of aquatic industry and affecting human health. SODs are oxidative enzymes that play a critical role in oxidative defense. In this study, an in-frame deleted mutant strain (ΔsodB) was constructed by allelic exchange mutagenesis to investigate physiological role of sodB in pathogenicity of V. alginolyticus. The results exhibited that ΔsodB showed no differences in growth compared with wild-type strain HY9901 (WT), but led to increasing in biofilm formation, ECPase activity and sensitivity to hydrogen peroxide, decreasing in swarming motility, adherence to CIK cells, SOD activity and virulence. In addition, ΔsodB induced a high antibody titer and provided a valid protection with a relative percent survival value of 86.5% without inducing clinical symptoms after challenging with WT. These results suggest that sodB is important for normal physiological function, oxidation resistance and virulence in V. alginolyticus, and ΔsodB may be considered as an effective live attenuated vaccine against V. alginolyticus.


Subject(s)
Bacterial Proteins/genetics , Bacterial Vaccines/immunology , Bass/immunology , Fish Diseases/prevention & control , Superoxide Dismutase/genetics , Vibrio alginolyticus/immunology , Vibrio alginolyticus/physiology , Virulence Factors/genetics , Animals , Antioxidants/metabolism , Bacterial Proteins/metabolism , Fish Diseases/immunology , Mutagenesis , Stress, Physiological , Superoxide Dismutase/metabolism , Vaccines, Attenuated/immunology , Vibrio Infections/immunology , Vibrio Infections/prevention & control , Vibrio Infections/veterinary , Vibrio alginolyticus/genetics , Virulence , Virulence Factors/metabolism
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