首页> 外文期刊>Journal of Veterinary Science >Recombinant-attenuated Salmonella Pullorum strain expressing the hemagglutinin-neuraminidase protein of Newcastle disease virus (NDV) protects chickens against NDV and Salmonella Pullorum challenge
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Recombinant-attenuated Salmonella Pullorum strain expressing the hemagglutinin-neuraminidase protein of Newcastle disease virus (NDV) protects chickens against NDV and Salmonella Pullorum challenge

机译:表达新城疫病毒(NDV)血凝素神经氨酸酶蛋白的重组减毒沙门氏菌鸡白痢毒株可保护鸡免受NDV和沙门氏菌鸡白痢的攻击

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Newcastle disease virus (NDV) and Salmonella Pullorum have significant damaging effects on the poultry industry, but no previous vaccine can protect poultry effectively. In this study, a recombinant-attenuated S. Pullorum strain secreting the NDV hemagglutinin-neuraminidase (HN) protein, C79-13ΔcrpΔasd (pYA-HN), was constructed by using the suicide plasmid pREasd-mediated bacteria homologous recombination method to form a new bivalent vaccine candidate against Newcastle disease (ND) and S. Pullorum disease (PD). The effect of this vaccine candidate was compared with those of the NDV LaSota and C79-13ΔcrpΔasd (pYA) strains. The serum hemagglutination inhibition antibody titers, serum immunoglobulin G (IgG) antibodies, secretory IgA, and stimulation index in lymphocyte proliferation were increased significantly more (p < 0.01) in chickens inoculated with C79-13ΔcrpΔasd (pYA-HN) than with C79-13ΔcrpΔasd (pYA) but were not significantly increased compared with the chickens immunized with the LaSota live vaccine (p > 0.05). Moreover, the novel strain provides 60% and 80% protective efficacy against the NDV virulent strain F48E9 and the S. Pullorum virulent strain C79-13. In summary, in this study, a recombinant-attenuated S. Pullorum strain secreting NDV HN protein was constructed. The generation of the S. Pullorum C79-13ΔcrpΔasd (pYA-HN) strain provides a foundation for the development of an effective living-vector double vaccine against ND and PD.
机译:新城疫病毒(NDV)和白痢沙门氏菌对家禽业具有明显的破坏作用,但是以前的疫苗都不能有效地保护家禽。在这项研究中,通过使用自杀质粒pREasd介导的细菌同源重组方法构建了分泌NDV血凝素神经氨酸酶(HN)蛋白C79-13ΔcrpΔasd(pYA-HN)的重组减毒链霉菌菌株,以形成新的抗新城疫(ND)和白痢链球菌(PD)的二价疫苗候选药物。将该候选疫苗的效果与NDV LaSota和C79-13ΔcrpΔasd(pYA)菌株的效果进行了比较。接种C79-13ΔcrpΔasd(pYA-HN)的鸡的血清血凝抑制抗体滴度,血清免疫球蛋白G(IgG)抗体,分泌型IgA和淋巴细胞增殖刺激指数显着高于C79-13ΔcrpΔasd接种的鸡(p <0.01)。 (pYA),但与用LaSota活疫苗免疫的鸡相比没有明显增加(p> 0.05)。此外,该新菌株对NDV强毒株F48E9和白痢链球菌强毒株C79-13提供60%和80%的保护效力。总而言之,在这项研究中,构建了分泌NDV HN蛋白的重组减毒链球菌菌株。普氏链球菌C79-13ΔcrpΔasd(pYA-HN)菌株的产生为开发针对ND和PD的有效活载体双重疫苗奠定了基础。

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