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Optimizing Genomic Methods for Mapping and Identification of Candidate Variants in ENU Mutagenesis Screens Using Inbred Mice

机译:使用近亲小鼠在ENU诱变筛选中定位和鉴定候选变异的优化基因组方法

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摘要

Positional cloning of ENU-induced mutations has traditionally relied on analysis of polymorphic variation between two strains. In contrast, the application of whole-genome sequencing (WGS) has enabled gene discovery in mutant lines maintained on an inbred genetic background. This approach utilizes genetic variation derived from ENU-induced variants for mapping and reduces the likelihood of phenotypic variation, making it an ideal method for genetic modifier screening. Here, we describe the results of such a screen, wherein we determined the minimal number of mutant genomic DNA samples to include in our analyses and improved the sensitivity of our screen by individually barcoding each genomic DNA library. We present several unique cases to illustrate this approach’s efficacy, including the discovery of two distinct mutations that generate essentially identical mutant phenotypes, the ascertainment of a non-ENU-induced candidate variant through homozygosity mapping, and an approach for the identification of putative dominant genetic modifiers.
机译:ENU诱导的突变的位置克隆传统上依赖于分析两个菌株之间的多态性变异。相比之下,全基因组测序(WGS)的应用已使在近交遗传背景下维持的突变株系中的基因发现成为可能。这种方法利用了由ENU诱导的变异产生的遗传变异进行作图,并降低了表型变异的可能性,使其成为遗传修饰物筛选的理想方法。在这里,我们描述了这种筛选的结果,其中我们确定了分析中包括的最少数量的突变基因组DNA样本,并通过分别对每个基因组DNA文库进行条形码编码来提高了筛选的灵敏度。我们提出了几种独特的案例来说明这种方法的功效,包括发现两个产生基本相同的突变表型的独特突变,通过纯合作图确定非ENU诱导的候选变体以及一种确定推定的优势遗传基因的方法修饰符。

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