Liu Tian, Todhunter Rory J, Wu Song, Hou Wei, Mateescu Raluca, Zhang Zhiwu, Burton-Wurster Nancy I, Acland Gregory M, Lust George, Wu Rongling
Department of Statistics, University of Florida, Gainesville, FL 32611, USA.
Genomics. 2007 Aug;90(2):276-84. doi: 10.1016/j.ygeno.2007.04.004. Epub 2007 May 24.
Genetic imprinting may have played a more notable role in shaping embryonic development of plants, animals, and humans than previously appreciated. Quantitative trait loci that are imprinted (iQTL) exert monoallelic effects, depending on the parent of origin, which is an exception to the laws of Mendelian genetics. In this article, we present a modified random effect-based mapping model to use in a genome-wide scan for the distribution of iQTL that contribute to genetic variance for a complex trait in a structured pedigree. This model, implemented with the maximum likelihood method, capitalizes on a network of relatedness for maternally and paternally derived alleles through identical-by-descent sharing, thus allowing for the discrimination of the genetic variances due to alleles derived from maternal and paternal parents. The model was employed to map iQTL responsible for canine hip dysplasia in a multihierarchical canine pedigree, founded with seven greyhounds and six Labrador retrievers. Of eight significant QTL detected, three, located on CFA1, CFA8, and CF28, were found to trigger significant parent-of-origin effects on the age of femoral capital ossification measured at the left and right hips of a canine. The detected iQTL provide important candidate regions for fine-mapping of imprinted genes and for studying their structure and function in the control of complex traits.
基因印记在塑造植物、动物和人类的胚胎发育过程中所起的作用,可能比之前所认识到的更为显著。被印记的数量性状基因座(iQTL)会产生单等位基因效应,具体取决于其亲本来源,这是孟德尔遗传学定律的一个例外情况。在本文中,我们提出了一种基于随机效应的改良映射模型,用于在全基因组扫描中寻找iQTL的分布情况,这些iQTL对结构化家系中复杂性状的遗传变异有贡献。该模型采用最大似然法实现,通过同源性共享利用母系和父系等位基因的亲缘关系网络,从而能够区分来自母本和父本等位基因所导致的遗传变异。该模型被用于在一个由七只灵缇犬和六只拉布拉多寻回犬建立的多层次犬类家系中,绘制与犬髋关节发育不良相关的iQTL图谱。在检测到的八个显著QTL中,位于犬1号染色体(CFA1)、犬8号染色体(CFA8)和犬28号染色体(CF28)上的三个QTL,被发现对犬左右髋关节股骨骨骺骨化年龄产生显著的亲本来源效应。检测到的iQTL为印记基因的精细定位以及研究它们在复杂性状控制中的结构和功能,提供了重要的候选区域。