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Comparison of protective efficacy between two DNA vaccines encoding DnaK and GroEL against fish nocardiosis
- Source :
- Fishshellfish immunology. 95
- Publication Year :
- 2019
-
Abstract
- Fish nocardiosis is a chronic granulomatous bacterial disease mainly caused by three pathogenic bacteria, including Nocardia seriolae, N. asteroids and N. salmonicida. Molecular chaperone DnaK and GroEL were identified to be the common antigens of the three pathogenic Nocardia species in our previous studies. To evaluate the immune protective effect of two DNA vaccines encoding DnaK or GroEL against fish nocardiosis, hybrid snakehead were vaccinated and the immune responses induced by these two vaccines were comparatively analyzed. The results suggested it needed at least 7 d to transport DnaK or GroEL gene from injected muscle to head kidney, spleen and liver and stimulate host's immune system for later protection after immunization by DNA vaccines. Additionally, non-specific immunity parameters (serum lysozyme (LYZ), peroxidase (POD), acid phosphatase (ACP), alkaline phosphatase (AKP) and superoxide dismutase (SOD) activities), specific antibody (IgM) production and immune-related genes (MHCIα, MHCIIα, CD4, CD8α, IL-1β and TNFα) were used to evaluate the immune responses induced in vaccinated hybrid snakehead. It proved that all the above-mentioned immune activities were significantly enhanced after immunization with these two DNA vaccines. The protective efficacy of pcDNA-DnaK and pcDNA-GroEL DNA vaccines, in terms of relative percentage survival (RPS), were 53.01% and 80.71% respectively. It demonstrated that these two DNA vaccines could increase the survival rate of hybrid snakehead against fish nocardiosis, albeit with variations in immunoprotective effects. Taken together, these results indicated that both pcDNA-DnaK and pcDNA-GroEL DNA vaccines could boost the innate, humoral and cellular immune response in hybrid snakehead and show highly protective efficacy against fish nocardiosis, suggesting that DnaK and GroEL were promising vaccine candidates. These findings will promote the development of DNA vaccines against fish nocardiosis in aquaculture.
- Subjects :
- 0301 basic medicine
Nocardia Infections
Aquaculture
Aquatic Science
Biology
Nocardia
Microbiology
DNA vaccination
03 medical and health sciences
Fish Diseases
Immune system
Antigen
Bacterial Proteins
Immunity
medicine
Vaccines, DNA
Environmental Chemistry
Animals
Immunity, Cellular
Bacterial disease
Nocardiosis
04 agricultural and veterinary sciences
General Medicine
Chaperonin 60
medicine.disease
GroEL
Immunity, Innate
Immunity, Humoral
030104 developmental biology
Immunization
biological sciences
Bacterial Vaccines
040102 fisheries
bacteria
0401 agriculture, forestry, and fisheries
Molecular Chaperones
Subjects
Details
- ISSN :
- 10959947
- Volume :
- 95
- Database :
- OpenAIRE
- Journal :
- Fishshellfish immunology
- Accession number :
- edsair.doi.dedup.....e1fd8cc945bcc5652dce1b82ad930a60