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首页> 外文期刊>Diseases of Aquatic Organisms >Generation and characterization of NV gene-knockout recombinant viral hemorrhagic septicemia virus (VHSV) genotype IVa
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Generation and characterization of NV gene-knockout recombinant viral hemorrhagic septicemia virus (VHSV) genotype IVa

机译:NV基因敲除重组病毒出血性败血病病毒(VHSV)基因型IVa的产生和鉴定

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ABSTRACT: A recombinant viral hemorrhagic septicemia virus (rVHSV-ΔNV-EGFP) containing the enhanced green fluorescent protein (EGFP) gene instead of the NV gene was produced using the reverse-genetics method. For use as a positive control, another recombinant virus (rVHSV-wild) was also generated, which had an identical nucleotide sequence to the wild-type VHSV genome except for a few artificially replaced nucleotides. The rVHSVs were rescued using a system controlled by T7 RNA polymerase supplied by a retroviral vector. Generation of rVHSV-ΔNV-EGFP and rVHSV-wild was confirmed by sequencing of RT-PCR products, and rescue of infectious rVHSVs was confirmed by observation of plaque formation. Replication efficiency of rVHSV-wild was distinctly lower than that of wild-type VHSV, suggesting that the artificially replaced nucleotides, especially when immediately preceding the G or NV gene start codons, might affect the replication of the virus. Replication of rVHSV-Δ-EGFP was slightly lower than that of rVHSV-wild when epithelioma papulosum cyprini cells were infected with multiplicity of infection (MOI) 1.0, but much lower when cells were infected with MOI 0.00001. These results suggest that the NV gene plays an important role in VHSV replication through interactions with host-cell responses, and the lower replication ability of rVHSV-wild compared to wild-type VHSV might be caused by replaced nucleotides just before the NV gene open reading frame (ORF) rather than the G gene ORF. In olive flounder Paralichthys olivaceus, rVHSV-wild produced slower-progressing mortalities than wild-type VHSV, whereas rVHSV-ΔNV-EGFP pathogenesis was highly attenuated. These results suggest that the NV protein of VHSV may play an important role not only in viral replication but also in viral pathogenesis.
机译:摘要:使用反向遗传学方法生产了包含增强的绿色荧光蛋白(EGFP)基因而不是NV基因的重组病毒出血性败血病病毒(rVHSV-ΔNV-EGFP)。为了用作阳性对照,还产生了另一种重组病毒(rVHSV-野生型),该重组病毒具有与野生型VHSV基因组相同的核苷酸序列,除了一些人工置换的核苷酸。使用由逆转录病毒载体提供的T7 RNA聚合酶控制的系统挽救rVHSV。通过RT-PCR产物的测序证实了rVHSV-ΔNV-EGFP和rVHSV-野生型的产生,并且通过观察噬菌斑形成来确认感染性rVHSV的拯救。 rVHSV-野生型的复制效率明显低于野生型VHSV,这表明人工取代的核苷酸,尤其是紧接在G或NV基因起始密码子之前的核苷酸,可能会影响病毒的复制。当上皮瘤浆状细胞被感染复数(MOI)1.0感染时,rVHSV-Δ-EGFP的复制稍低于野生型rVHSV,但当细胞被MOI 0.00001感染时,其复制则低得多。这些结果表明,NV基因通过与宿主细胞应答相互作用而在VHSV复制中起重要作用,与野生型VHSV相比,rVHSV野生型的复制能力较低可能是由于NV基因开放阅读之前被取代的核苷酸引起的。框架(ORF),而不是G基因ORF。在橄榄比目鱼中,rVHSV致死的死亡率比野生型VHSV慢,而rVHSV-ΔNV-EGFP的发病机理则大大减弱。这些结果表明,VHSV的NV蛋白不仅在病毒复制中起重要作用,而且在病毒发病机理中也可能起重要作用。

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