Efficacy of bivalent vaccine against Aeromonas salmonicida and Edwardsiella tarda infections in turbot

多宝鱼 迟缓爱德华氏菌 生物 菱鲆属 二价(发动机) 杀鲑气单胞菌 灭活疫苗 微生物学 接种疫苗 爱德华兹菌 免疫系统 病毒学 气单胞菌 佐剂 抗原 免疫学 渔业 细菌 鲶鱼 化学 遗传学 有机化学 真鮰属 金属
作者
Lin Su,Huimin Guo,Baoshan Guo,Jingyuan Yi,Zongrui Yang,Shun Zhou,Yunji Xiu
出处
期刊:Fish & Shellfish Immunology [Elsevier BV]
卷期号:139: 108837-108837 被引量:9
标识
DOI:10.1016/j.fsi.2023.108837
摘要

In recent years, more than one pathogenic organism has usually been isolated from diseased turbot Scophthalmus maximus, creating a pressing need for the development of combination vaccines to prevent fish diseases brought on simultaneously by various infections. In this study, the inactivated bivalent vaccine of Aeromonas salmonicida and Edwardsiella tarda was prepared by the formalin inactivation method. After challenge with A. salmonicida and E. tarda at 4 weeks post-vaccination in turbot, the relative percentage survival (RPS) of the inactivated bivalent vaccine was 77.1%. In addition, we assessed the effects of the inactivated bivalent vaccine and evaluated the immunological processes after immunization in a turbot model. Serum antibody titer and lysozyme activity of the vaccinated group were both upregulated and higher than that in control group after vaccination. The expression levels of genes (TLR2, IL-1β, CD4, MHCI, MHCⅡ) that related to antigen recognition, processing and presentation were also studied in the liver, spleen and kidney tissues of vaccinated turbot. All the detected genes in the vaccinated group had a significant upward trend, and most of them reached the maximum value at 3-4 weeks, which had significant differences from the control group, suggesting that antigen recognition, processing and presentation pathway was activated by the inactivated bivalent vaccine. Our study provides a basis for further application of the killed bivalent vaccine against A. salmonicida and E. tarda in turbot, making it good potential that can be applied in aquaculture.
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