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通过 PhiC31 整合酶介导的盒式交换在桑蚕体内进行转基因的位点特异性整合。

In vivo site-specific integration of transgene in silkworm via PhiC31 integrase-mediated cassette exchange.

机构信息

State Key Laboratory of Silkworm Genome Biology, Key Laboratory for Sericulture Functional Genomics and Biotechnology of Agricultural Ministry, Southwest University, BeiBei, Chongqing 400716, China.

出版信息

Insect Biochem Mol Biol. 2013 Nov;43(11):997-1008. doi: 10.1016/j.ibmb.2013.08.001. Epub 2013 Aug 22.

Abstract

Current techniques for genetic engineering of the silkworm Bombyx mori genome utilize transposable elements, which result in positional effects and insertional mutagenesis through random insertion of exogenous DNA. New methods for introducing transgenes at specific positions are therefore needed to overcome the limitations of transposon-based strategies. Although site-specific recombination systems have proven powerful tools for genome manipulation in many organisms, their use has not yet been well established for the integration of transgenes in the silkworm. We describe a method for integrating target genes at pre-defined chromosomal sites in the silkworm via phiC31/att site-specific recombination system-mediated cassette exchange. Successful recombinase-mediated cassette exchange (RMCE) was observed in the two transgenic target strains with an estimated transformation efficiency of 3.84-7.01%. Our results suggest that RMCE events between chromosomal attP/attP target sites and incoming attB/attB sites were more frequent than those in the reciprocal direction. This is the first report of in vivo RMCE via phiC31 integrase in the silkworm, and thus represents a key step toward establishing genome manipulation technologies in silkworms and other lepidopteran species.

摘要

目前,对家蚕基因组进行遗传工程的技术利用转座元件,通过外源 DNA 的随机插入导致位置效应和插入突变。因此,需要新的方法将转基因在特定位置引入,以克服基于转座子策略的局限性。尽管位点特异性重组系统已被证明是许多生物体中基因组操作的有力工具,但它们在蚕中用于转基因的整合尚未得到很好的确立。我们描述了一种通过 phiC31/att 位点特异性重组系统介导的盒交换在家蚕中整合目标基因到预定义染色体位点的方法。在两个转基因靶标菌株中观察到成功的重组酶介导的盒交换(RMCE),估计转化率为 3.84-7.01%。我们的结果表明,染色体 attP/attP 靶位点与进入的 attB/attB 位点之间的 RMCE 事件比相反方向的 RMCE 事件更频繁。这是首次在家蚕中通过 phiC31 整合酶进行体内 RMCE 的报道,因此代表了在家蚕和其他鳞翅目物种中建立基因组操作技术的关键步骤。

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