首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Efficient high-resolution genetic mapping of mouse interspersed repetitive sequence PCR products, toward integrated genetic and physical mapping of the mouse genome.
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Efficient high-resolution genetic mapping of mouse interspersed repetitive sequence PCR products, toward integrated genetic and physical mapping of the mouse genome.

机译:高效的小鼠散布的重复序列PCR产物的高分辨率遗传图谱,朝向小鼠基因组的综合遗传图谱和物理图谱。

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摘要

The ability to carry out high-resolution genetic mapping at high throughput in the mouse is a critical rate-limiting step in the generation of genetically anchored contigs in physical mapping projects and the mapping of genetic loci for complex traits. To address this need, we have developed an efficient, high-resolution, large-scale genome mapping system. This system is based on the identification of polymorphic DNA sites between mouse strains by using interspersed repetitive sequence (IRS) PCR. Individual cloned IRS PCR products are hybridized to a DNA array of IRS PCR products derived from the DNA of individual mice segregating DNA sequences from the two parent strains. Since gel electrophoresis is not required, large numbers of samples can be genotyped in parallel. By using this approach, we have mapped > 450 polymorphic probes with filters containing the DNA of up to 517 backcross mice, potentially allowing resolution of 0.14 centimorgan. This approach also carries the potential for a high degree of efficiency in the integration of physical and genetic maps, since pooled DNAs representing libraries of yeast artificial chromosomes or other physical representations of the mouse genome can be addressed by hybridization of filter representations of the IRS PCR products of such libraries.
机译:在小鼠中以高通量进行高分辨率遗传作图的能力是在物理作图项目中遗传锚定重叠群的生成以及复杂性状的遗传基因座作图的关键速率限制步骤。为了满足这一需求,我们开发了一种高效,高分辨率的大规模基因组作图系统。该系统基于通过使用散布的重复序列(IRS)PCR识别小鼠品系之间的多态性DNA位点的方法。将单个克隆的IRS PCR产物与IRS PCR产物的DNA阵列杂交,该IRS PCR产物源自分离自两个亲本菌株的DNA序列的单个小鼠的DNA。由于不需要凝胶电泳,因此可以并行对大量样品进行基因分型。通过使用这种方法,我们已经用包含最多517个回交小鼠的DNA的过滤器对> 450个多态探针进行了定位,潜在地允许分辨率为0.14厘摩。这种方法在整合物理图谱和遗传图谱方面也具有很高的潜力,因为代表酵母人工染色体文库或小鼠基因组其他物理代表的合并DNA可以通过IRS PCR的过滤代表杂交来解决。此类库的产品。

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