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构建野桑蚕(鳞翅目:天蚕科)多角体核型多角体病毒 Bacmid 系统。

Construction of the Antheraea pernyi (Lepidoptera: Saturniidae) Multicapsid Nucleopolyhedrovirus Bacmid System.

机构信息

Liaoning Ocean and Fisheries Science Research Institute, Liaoning Academy of Agricultural Sciences, Dalian, China.

出版信息

J Insect Sci. 2020 Aug 1;20(5). doi: 10.1093/jisesa/ieaa088.

Abstract

In this study, we established the Antheraea pernyi multicapsid nucleopolyhedrovirus (AnpeNPV) bacmid system for the construction of a Bac-to-Bac expression system and the generation of virus mutants. The CopyRight pSMART BAC cloning vector harboring the chloramphenicol resistance gene was introduced into the AnpeNPV genome to produce the AnpeNPV bacmid that could be propagated in Escherichia coli with stable replication. The enhanced green fluorescent protein (EGFP) was successfully expressed in both Tn-Hi5 cells and A. pernyi pupae using the AnpeNPV Bac-to-Bac expression system. To generate the AnpeNPV mutants, we developed the AnpeNPV bacmid/λ Red recombination system that facilitated the deletion of viral genes from the AnpeNPV genome. The genes cathepsin and chitinase were deleted and a derivative AnpeNPV Bac-to-Bac expression system was constructed. Furthermore, we demonstrated that the novel expression system could be used to express human epidermal growth factor in A. pernyi pupae. Taken together, the AnpeNPV bacmid system provides a powerful tool to create the AnpeNPV Bac-to-Bac expression system for protein expression in A. pernyi pupae. Further, it helps to knock-out genes from the AnpeNPV genome with λ Red recombination system for identification of the role of viral genes involved in regulating gene expression, DNA replication, virion structure, and infectivity during the AnpeNPV infection process.

摘要

在这项研究中,我们建立了柞蚕多角体核型多角体病毒(AnpeNPV)的 bacmid 系统,用于构建 Bac-to-Bac 表达系统和产生病毒突变体。携带氯霉素抗性基因的 CopyRight pSMART BAC 克隆载体被引入 AnpeNPV 基因组中,产生能够在大肠杆菌中稳定复制的 AnpeNPV bacmid。利用 AnpeNPV Bac-to-Bac 表达系统,成功地在 Tn-Hi5 细胞和柞蚕蛹中表达了增强型绿色荧光蛋白(EGFP)。为了产生 AnpeNPV 突变体,我们开发了 AnpeNPV bacmid/λ Red 重组系统,该系统有助于从 AnpeNPV 基因组中删除病毒基因。我们删除了 cathepsin 和 chitinase 基因,并构建了一个衍生的 AnpeNPV Bac-to-Bac 表达系统。此外,我们证明了该新型表达系统可用于在柞蚕蛹中表达人表皮生长因子。总之,AnpeNPV bacmid 系统为在柞蚕蛹中表达蛋白提供了一个强大的工具,用于创建 AnpeNPV Bac-to-Bac 表达系统。此外,它有助于利用 λ Red 重组系统从 AnpeNPV 基因组中敲除基因,以鉴定在 AnpeNPV 感染过程中参与调节基因表达、DNA 复制、病毒粒子结构和感染力的病毒基因的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ced/7494183/cc4489e7cc91/ieaa088f0001.jpg

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