Wellcome Trust Center for Human Genetics, University of Oxford, Oxford OX3 7BN, United Kingdom; email:
Annu Rev Genomics Hum Genet. 2013;14:421-39. doi: 10.1146/annurev-genom-091212-153419. Epub 2013 Jul 3.
Progress in complex trait mapping in mice has been accelerated by the development of new populations suited to high-resolution mapping and by statistical methodologies that control for population structure. When combined with newly acquired catalogs of sequence variation in inbred strains, the genetic architecture of these new populations makes it possible to dissect complex traits down to the level of single variants. These analyses have shown not only that complex traits are caused by multiple contributing loci but also that each locus is likely due to the combined effects of multiple causal DNA variants. In combination with new rapid methods for producing transgenic mice that make it efficient to test candidate genes and variants, these advances significantly enhance the mouse genetics toolbox for dissecting quantitative traits.
在小鼠复杂性状的图谱绘制方面取得了进展,新的群体适合进行高分辨率图谱绘制,统计方法也可以控制群体结构。将这些新群体与新获得的近交系序列变异目录结合起来,可以将复杂性状分解到单个变体的水平。这些分析不仅表明复杂性状是由多个贡献基因座引起的,而且还表明每个基因座都可能是由多个因果 DNA 变体的综合效应引起的。与新的快速生产转基因小鼠的方法相结合,这种方法可以有效地测试候选基因和变体,这些进展显著增强了用于解析数量性状的小鼠遗传学工具包。