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Updated: Aug 28, 2026

Immunization of Adult Zebrafish for the Preclinical Screening of DNA-based Vaccines
Published on: October 30, 2018
Construction and Immunological Evaluation of a Bivalent DNA Vaccine Targeting Micropterus salmoides Rhabdovirus and
Boge Gu1,2, Pengzhen Yu1,2, Jinhao Su1,2
1Laboratory of Biochemistry and Molecular Biology, School of Marine Sciences, Ningbo University, Ningbo 315211, China.
Abstract:
The largemouth bass (Micropterus salmoides) is persistently threatened by Micropterus salmoides rhabdovirus (MSRV) and largemouth bass ranavirus (LMBV), highlighting the need for combined immunization strategies. Here, a bivalent DNA vaccine pEGFP-G-MCP was constructed by concatenating the highly immunogenic fragments of MSRV glycoprotein (MSRV-G) and LMBV main capsid protein (LMBV-MCP) using a flexible linker peptide, and its immunogenicity and protective effect were systematically evaluated. Fish were immunized by intramuscular injection of 200 ng of plasmid on day 1, followed by a booster immunization on day 8. Blood and tissues were collected at 10, 20, and 30 d post-last immunization. The results showed that pEGFP-G-MCP immunization induced G- and MCP-specific antibodies and upregulated the expression of immunity-related genes. The bivalent vaccine achieved a relative percent survival (RPS) of 93.3% against MSRV and 90.0% against LMBV, which were higher than those of the monovalent vaccine groups. Additionally, the bivalent vaccine reduced viral mRNA and alleviated pathological damage in MSRV- or LMBV-infected fish. These results indicate that pEGFP-G-MCP confers immune protection against MSRV and LMBV, providing a foundation for combined prevention and control of MSRV and LMBV.

