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A sequence-independent in vitro transposon-based strategy for efficient cloning of genomes of large DNA viruses as bacterial artificial chromosomes

机译:基于序列独立的体外转座子的策略可有效克隆大型DNA病毒的基因组作为细菌人工染色体

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摘要

Bacterial artificial chromosomes (BACs) derived from genomes of large DNA viruses are powerful tools for functional delineation of viral genes. Current methods for cloning the genomes of large DNA viruses as BACs require prior knowledge of the viral sequences or the cloning of viral DNA fragments, and are tedious because of the laborious process of multiple plaque purifications, which is not feasible for some fastidious viruses. Here, we describe a novel method for cloning the genomes of large DNA viruses as BACs, which entails direct in vitro transposition of viral genomes with a BAC cassette, and subsequent recovery in Escherichia coli. Determination of insertion sites and adjacent viral sequences identify the BAC clones for genetic manipulation and functional characterization. Compared to existing methods, this new approach is highly efficient, and does not require any information on viral sequences or cloning of viral DNA fragments, and plaque purifications. This method could potentially be used for discovering previously unidentified viruses.
机译:来源于大型DNA病毒基因组的细菌人工染色体(BAC)是病毒基因功能描述的有力工具。目前作为BAC克隆大DNA病毒基因组的方法需要先了解病毒序列或克隆病毒DNA片段,并且由于需要多次噬菌斑纯化的繁琐过程而十分繁琐,而这对于某些挑剔的病毒是不可行的。在这里,我们描述了一种用于克隆大型DNA病毒(如BAC)的基因组的新方法,该方法需要使用BAC盒直接在体外转移病毒基因组,并随后在大肠杆菌中恢复。插入位点和相邻病毒序列的确定可鉴定BAC克隆,以进行遗传操作和功能表征。与现有方法相比,该新方法非常高效,并且不需要任何有关病毒序列或病毒DNA片段克隆以及噬菌斑纯化的信息。此方法可能会用于发现以前未识别的病毒。

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