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通过酵母人工染色体的连续有丝分裂重组进行基因组重建。

Genomic reconstruction by serial mitotic recombination of yeast artificial chromosomes.

作者信息

Markie David, Jones Emma, Ragoussis Jiannis

机构信息

Pathology Department, Dunedin School of Medicine, New Zealand.

出版信息

Methods Mol Biol. 2006;349:117-26. doi: 10.1385/1-59745-158-4:117.

Abstract

DNA cloned in yeast artificial chromosomes (YACs) is a valuable resource for functional experiments in cell culture as well as whole animal systems. Where the size or chimerism of a YAC clone are limiting factors it may be desirable to generate recombinant YAC clones. One such approach is based on mitotic recombination, and we describe the development of a methodology that allows multiple recombination cycles for serial reconstruction of overlapping YACs. This approach employs retrofitting with standard plasmid vectors, transfer of YACs to a common haploid host by Kar1 mating, and selection for recombination with 5-fluoro-orotic acid.

摘要

克隆于酵母人工染色体(YAC)中的DNA是细胞培养以及整个动物系统功能实验的宝贵资源。当YAC克隆的大小或嵌合现象成为限制因素时,可能需要生成重组YAC克隆。一种这样的方法基于有丝分裂重组,我们描述了一种方法的开发,该方法允许进行多个重组循环以连续重建重叠的YAC。这种方法采用用标准质粒载体进行改造,通过Kar1交配将YAC转移到共同的单倍体宿主,并通过5-氟乳清酸选择重组。

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