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Generation of a Mouse Full-length Balancer with Versatile Cassette-shuttling Selection Strategy

机译:具有通用盒式穿梭选择策略的鼠标全长平衡器的生成

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Balancer chromosomes are important tools for a variety of genetic manipulations in lower model organisms, owing to their ability to suppress recombination. In mouse, however, such effort has not been accomplished, mostly due to the size of the chromosomes and the complexity of multiple step chromosomal engineering. We developed an effective and versatile cassette-shuttling selection (CASS) strategy involving only two selection markers to achieve the sequential production of multiple large inversions along the chromosome. Using this strategy, we successfully generated the first full-length balancer in mice and showed that Balancer 17M-GFP can efficiently suppress recombination. Our study has not only generated a useful genetic resource, but also provided a strategy for constructing mammalian balancer chromosomes.
机译:平衡染色体由于具有抑制重组的能力,因此是在较低模型生物中进行多种遗传操作的重要工具。然而,在小鼠中,这种努力尚未完成,这主要是由于染色体的大小和多步染色体工程的复杂性。我们开发了一种有效且通用的盒式穿梭选择(CASS)策略,仅涉及两个选择标记即可实现沿着染色体的多个大倒位的顺序生成。使用此策略,我们成功地在小鼠中生成了第一个全长平衡器,并表明Balancer 17M-GFP可以有效地抑制重组。我们的研究不仅产生了有用的遗传资源,而且提供了构建哺乳动物平衡染色体的策略。

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