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Protective immunity induced by DNA vaccine encoding viral membrane protein against SGIV infection in grouper

机译:DNA疫苗编码病毒膜蛋白诱导的保护性免疫因素在石斑鱼中进行SGIV感染

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Singapore grouper iridovirus (SGIV) is the main grouper-infecting virus in southern China that causes serious economic losses. However, there is no effective way to control this viral disease. In this study, SGIV ORP19R (SGIV-19R) encoding a viral membrane protein was constructed into pcDNA3.1-HA and then was used to evaluate the immune protective effects in grouper Epinephelus coioides. Subcellular localization showed that SGIV-19R distributed in the cytoplasm and co-localization analysis indicated the protein partially co-localized with the endoplasmic reticulum (ER). RT-PCR and Western blot analyses confirmed the expression of the vaccine plasmids in grouper muscle tissues. Moreover, the transcription levels of tumor necrosis factor alpha (TNF-alpha), interleulcin-1 beta (IL-1 beta), myxovirus resistance 1 (Mx1) and immunoglobulin M (IgM) genes were significantly up-regulated in the spleen, liver and kidney of vaccinated groupers. SGIV challenge experiments showed the relative percent survival (RPS) was significantly enhanced in fish with 49.9% at the DNA dose of 45 mu g pcDNA3.1-19R, while 75.0% RPS when using 90 mu g pcDNA3.1-19R. Meanwhile, vaccination with pcDNA3.1-19R significantly reduced the virus replication, evidenced by a low viral load in the spleen of survivals groupers after SGIV challenge. These results imply that pcDNA3.1-19R could induce protective immunity in grouper, and might be a potential vaccine candidate for controlling SGIV disease.
机译:新加坡石斑鱼Iridovirus(SGIV)是中国南方主要的石斑鱼感染病毒,导致严重的经济损失。然而,没有有效的方法来控制这种病毒疾病。在该研究中,将编码病毒膜蛋白的SGIV ORP19R(SGIV-19R)构建为PCDNA3.1-HA,然后用于评估石榴肾上腺素的免疫保护作用。亚细胞定位表明,分布在细胞质和共定位分析中的SGIV-19R表明蛋白质与内质网(ER)部分共同地定位。 RT-PCR和Western Blot分析证实了在石斑鱼肌肉组织中疫苗质粒的表达。此外,在脾脏,肝脏中显着上调肿瘤坏死因子α(TNF-α),白细胞抗性1β(IL-1β),骨甲病毒抗性1(MX1)和免疫球蛋白M(IgM)基因的转录水平显着上调和接种疫苗的肾脏。 SGIV挑战实验表明,在45μgpCDNA3.1-19R的DNA剂量的DNA剂量下的鱼类中,在鱼类剂量下显着增强了相对百分比的存活率(RPS),而使用90μgpcdna3.1-19r,75.0%RPS。同时,用PCDNA3.1-19R疫苗显着降低病毒复制,在SGIV挑战后生存病毒分组的脾脏病毒载体的低病毒载量证明了。这些结果意味着PCDNA3.1-19R可以在石斑鱼中诱导保护性免疫力,并且可能是用于控制SGIV疾病的潜在疫苗候选者。

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