Fast and efficient generation of a full-length balancer chromosome by a single Cre/loxP recombination event.

Cunxiang Ju, Mingkun Zhang, Min Guan, Song Li, Yuxi Zhang, Jing Zhao, Xiang Gao
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引用次数: 1

Abstract

Balancer chromosomes, primarily discovered and used in Drosophila melanogaster, are valuable tools to maintain lethal mutations in a particular genomic segment. Full-length balancer chromosomes would be particularly useful because of the capacity to maintain whole genomic traits. However, murine full-length balancer chromosomes generated via a single Cre/loxP recombination are still not demonstrated. In this study, we developed a novel mouse strain with full-length inverted chromosome 17 (Ch17Inv balancer) via a single Cre/loxP recombination event in mES cells. The Ch17Inv balancer mice are viable and phenotypically normal. When bred with other strains, the haplotype of chromosome 17 can be stably maintained as determined by the high throughput SNPs assay. Interestingly, we found that the recombination events were efficiently reduced within the inverted region but not eliminated. The method established in this study can be applied to generate other full-length balancer chromosomes. Moreover, the Ch17Inv balancer strain would be a valuable resource to maintain the entire chromosome 17 from different donor strains.

通过单个Cre/loxP重组事件快速高效地生成全长平衡染色体。
平衡染色体,主要是在果蝇中发现和使用的,是维持特定基因组片段致命突变的宝贵工具。全长平衡染色体尤其有用,因为它具有维持整个基因组特征的能力。然而,通过单个Cre/loxP重组产生的小鼠全长平衡染色体仍未得到证实。在这项研究中,我们通过在mES细胞中单个Cre/loxP重组事件,开发了一种具有全长倒位17号染色体(Ch17Inv balancer)的新型小鼠品系。Ch17Inv平衡小鼠存活,表型正常。当与其他菌株杂交时,17号染色体的单倍型可以稳定地保持,这是由高通量SNPs试验确定的。有趣的是,我们发现反向区域内的重组事件有效地减少了,但没有消除。本研究建立的方法可用于生成其他全长平衡染色体。此外,Ch17Inv平衡菌株可能是维持来自不同供体菌株的整个17号染色体的宝贵资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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