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绘制小鼠生殖脂垫变异的上位网络图谱。

Mapping the epistatic network underlying murine reproductive fatpad variation.

机构信息

Department of Anatomy and Neurobiology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

Genetics. 2011 Feb;187(2):597-610. doi: 10.1534/genetics.110.123505. Epub 2010 Nov 29.

Abstract

Genome-wide mapping analyses are now commonplace in many species and several networks of interacting loci have been reported. However, relatively few details regarding epistatic interactions and their contribution to complex trait variation in multicellular organisms are available and the identification of positional candidate loci for epistatic QTL (epiQTL) is hampered, especially in mammals, by the limited genetic resolution inherent in most study designs. Here we further investigate the genetic architecture of reproductive fatpad weight in mice using the F(10) generation of the LG,SM advanced intercross (AI) line. We apply multiple mapping techniques including a single-locus model, locus-specific composite interval mapping (CIM), and tests for multiple QTL per chromosome to the 12 chromosomes known to harbor single-locus QTL (slQTL) affecting obesity in this cross. We also perform a genome-wide scan for pairwise epistasis. Using this combination of approaches we detect 199 peaks spread over all 19 autosomes, which potentially contribute to trait variation including all eight original F(2) loci (Adip1-8), novel slQTL peaks on chromosomes 7 and 9, and several novel epistatic loci. Extensive epistasis is confirmed involving both slQTL confidence intervals (C.I.) as well as regions that show no significant additive or dominance effects. These results provide important new insights into mapping complex genetic architectures and the role of epistasis in complex trait variation.

摘要

全基因组图谱分析现在在许多物种中很常见,已经报道了几个相互作用的基因座网络。然而,关于上位性相互作用及其对多细胞生物复杂性状变异的贡献的细节相对较少,并且由于大多数研究设计固有的遗传分辨率有限,对上位性 QTL(epiQTL)的位置候选基因座的鉴定受到阻碍,特别是在哺乳动物中。在这里,我们使用 LG、SM 高级互交(AI)系的 F(10)代,进一步研究了小鼠生殖脂肪垫重量的遗传结构。我们应用了多种映射技术,包括单基因座模型、基因座特异性复合区间映射(CIM)和每个染色体上多个 QTL 的测试,这些技术可用于研究该杂交中影响肥胖的 12 个已知含有单基因座 QTL(slQTL)的染色体。我们还进行了全基因组对上位性的扫描。通过这种组合方法,我们在所有 19 条常染色体上检测到了 199 个峰,这些峰可能有助于包括所有八个原始 F(2)基因座(Adip1-8)在内的性状变异,7 号和 9 号染色体上的新 slQTL 峰以及几个新的上位性基因座。广泛的上位性得到了证实,涉及到 slQTL 置信区间(CI)以及没有显著加性或显性效应的区域。这些结果为映射复杂的遗传结构和上位性在复杂性状变异中的作用提供了重要的新见解。

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