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一种基于大肠杆菌中零背景Tn7介导转座构建重组家蚕多角体病毒的高效方法。

A high efficient method of constructing recombinant Bombyx mori (silkworm) multiple nucleopolyhedrovirus based on zero-background Tn7-mediated transposition in Escherichia coli.

作者信息

Sun Jing Chen, Zhang Er Hui, Yao Lun Guang, Zhang Hong Ling, Jin Peng Fei

机构信息

College of Animal Science, South China Agricultural University, Guangzhou 510642, PR China.

出版信息

Biotechnol Prog. 2009 Mar-Apr;25(2):524-9. doi: 10.1002/btpr.125.

Abstract

A high efficient way for generation of recombinant Bombyx mori (silkworm) multiple nucleopolyhedrovirus by Tn7-mediated transposition in Escherichia coli was performed. The new system consists of a conditional replication donor vector pRCDM and an attTn7 site blocked E. coli containing BmNPV-Bacmid. The donor vector contains a replication origin derived from R6Kgamma, which propagated only in host cells with pir gene expression decreased in the transposition background greatly. Compared with original vector derived from pUC, the transposition efficiency increased from 5.7 to 66% ( approximately 10 fold) when using conditional replication vector pRCDM transposition into original BmDH10Bac. A further effort to decrease the transposition background was made by blocking the attTn7 site in host E. coli genome. The resulting attTn7 occupied BmDH10BacDeltaTn7 resulted in a significant increase from 5.7 to 23% ( approximately 4 fold) in the efficacy of generate recombinant BmNPV Bacmid by transposition. Furthermore, the transposition of BmDH10BacDeltaTn7 with pRCDM resulted typically in 100% white colonies, and it indicated that a zero transposition background was accomplished. This high efficient and zero background transposition system provides a new simple and rapid method for construction of recombinant BmNPV used to express target genes or produce gene-delivery virus particles in silkworm.

摘要

通过Tn7介导的转座在大肠杆菌中高效产生重组家蚕多角体病毒的方法得以实现。新系统由条件复制供体载体pRCDM和含有BmNPV - 杆粒的attTn7位点阻断的大肠杆菌组成。供体载体包含源自R6Kγ的复制起点,其仅在转座背景下pir基因表达降低的宿主细胞中繁殖。与源自pUC的原始载体相比,当使用条件复制载体pRCDM转座到原始BmDH10Bac中时,转座效率从5.7%提高到66%(约10倍)。通过阻断宿主大肠杆菌基因组中的attTn7位点进一步努力降低转座背景。所得的attTn7占据的BmDH10BacDeltaTn7使得通过转座产生重组BmNPV杆粒的效率从5.7%显著提高到23%(约4倍)。此外,BmDH10BacDeltaTn7与pRCDM转座通常产生100%白色菌落,这表明实现了零转座背景。这种高效且零背景的转座系统为构建用于在家蚕中表达靶基因或生产基因递送病毒颗粒的重组BmNPV提供了一种新的简单快速方法。

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