首页> 美国卫生研究院文献>BioMed Research International >Generation of Biotechnology-Derived Flavobacterium columnare Ghosts by PhiX174 Gene E-Mediated Inactivation and the Potential as Vaccine Candidates against Infection in Grass Carp
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Generation of Biotechnology-Derived Flavobacterium columnare Ghosts by PhiX174 Gene E-Mediated Inactivation and the Potential as Vaccine Candidates against Infection in Grass Carp

机译:通过PhiX174基因E介导的灭活产生生物技术衍生的黄杆菌幽灵并作为抗草in鱼感染的疫苗候选人的潜力

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摘要

Flavobacterium columnare is a bacterial pathogen causing high mortality rates for many freshwater fish species. Fish vaccination with a safe and effective vaccine is a potential approach for prevention and control of fish disease. Here, in order to produce bacterial ghost vaccine, a specific Flavobacterium lysis plasmid pBV-E-cat was constructed by cloning PhiX174 lysis gene E and the cat gene with the promoter of F. columnare into the prokaryotic expression vector pBV220. The plasmid was successfully electroporated into the strain F. columnare G4cpN22 after curing of its endogenous plasmid. F. columnare G4cpN22 ghosts (FCGs) were generated for the first time by gene E-mediated lysis, and the vaccine potential of FCG was investigated in grass carp (Ctenopharyngodon idellus) by intraperitoneal route. Fish immunized with FCG showed significantly higher serum agglutination titers and bactericidal activity than fish immunized with FKC or PBS. Most importantly, after challenge with the parent strain G4, the relative percent survival (RPS) of fish in FCG group (70.9%) was significantly higher than FKC group (41.9%). These results showed that FCG could confer immune protection against F. columnare infection. As a nonliving whole cell envelope preparation, FCG may provide an ideal alternative to pathogen-based vaccines against columnaris in aquaculture.
机译:黄杆菌是一种细菌病原体,可导致许多淡水鱼类的高死亡率。用安全有效的疫苗接种鱼是预防和控制鱼病的一种潜在方法。在此,为了生产细菌幽灵疫苗,通过将PhiX174裂解基因E和带有F.column启动子的cat基因克隆到原核表达载体pBV220中,构建了特定的黄杆菌裂解质粒pBV-E-cat。在将其内源质粒固化后,将质粒成功地电穿孔到G.cpN22圆柱菌株中。通过基因E介导的裂解首次产生了圆柱状F. G4cpN22幽灵(FCG),并通过腹膜内途径在草鱼(Ctenopharyngodon idellus)中研究了FCG的疫苗潜力。与FKC或PBS免疫的鱼相比,FCG免疫的鱼显示出更高的血清凝集滴度和杀菌活性。最重要的是,在用亲本菌株G4攻击后,FCG组(70.9%)的鱼类相对存活率(RPS)显着高于FKC组(41.9%)。这些结果表明,FCG可以赋予针对柱状镰刀菌感染的免疫保护。作为无生命的全细胞包膜制剂,FCG可以为水产养殖中针对柱状杆菌的基于病原体的疫苗提供理想的替代品。

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