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Synthetic transcripts of double-stranded Birnavirus genome are infectious.

机译:双链猪瘟病毒基因组的合成转录本具有感染性。

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摘要

We have developed a system for generation of infectious bursal disease virus (IBDV), a segmented double-stranded RNA virus of the Birnaviridae family, with the use of synthetic transcripts derived from cloned cDNA. Independent full-length cDNA clones were constructed that contained the entire coding and noncoding regions of RNA segments A and B of two distinguishable IBDV strains of serotype I. Segment A encodes all of the structural (VP2, VP4, and VP3) and nonstructural (VP5) proteins, whereas segment B encodes the RNA-dependent RNA polymerase (VP1). Synthetic RNAs of both segments were produced by in vitro transcription of linearized plasmids with T7 RNA polymerase. Transfection of Vero cells with combined plus-sense transcripts of both segments generated infectious virus as early as 36 hr after transfection. The infectivity and specificity of the recovered chimeric virus was ascertained by the appearance of cytopathic effect in chicken embryo cells, by immunofluorescence staining of infected Vero cells with rabbit anti-IBDV serum, and by nucleotide sequence analysis of the recovered virus, respectively. In addition, transfectant viruses containing genetically tagged sequences in either segment A or segment B of IBDV were generated to confirm the feasibility of this system. The development of a reverse genetics system for double-stranded RNA viruses will greatly facilitate studies of the regulation of viral gene expression, pathogenesis, and design of a new generation of live vaccines.
机译:我们已经开发了一种系统,用于使用传染性法氏囊病病毒(IBDV),该病毒是Birnaviridae家族的分段双链RNA病毒,并使用从克隆的cDNA衍生的合成转录本。构建了独立的全长cDNA克隆,该克隆包含两个血清型I的两个可区分的IBDV菌株的RNA片段A和B的完整编码区和非编码区。片段A编码所有结构性(VP2,VP4和VP3)和非结构性(VP5) ),而区段B则编码RNA依赖性RNA聚合酶(VP1)。通过使用T7 RNA聚合酶体外转录线性化质粒产生了两个片段的合成RNA。早在转染后36小时,用两个片段的组合正转录本转染Vero细胞即可产生感染性病毒。通过在鸡胚细胞中出现细胞病变作用,通过用兔抗IBDV血清对感染的Vero细胞进行免疫荧光染色以及通过对回收病毒的核苷酸序列分析来确定回收的嵌合病毒的感染性和特异性。此外,还产生了在IBDV的A段或B段包含遗传标记序列的转染病毒,以确认该系统的可行性。用于双链RNA病毒的反向遗传学系统的发展将极大地促进对病毒基因表达的调节,发病机理以及新一代活疫苗设计的研究。

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