Ishikawa Akira
Laboratory of Animal Genetics, Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya, Aichi, Japan.
J Hered. 2009 Jul-Aug;100(4):501-4. doi: 10.1093/jhered/esp004. Epub 2009 Mar 3.
The genetic basis of heterosis has not been elucidated. Previously, a congenic mouse strain with a 44-Mb genomic region of proximal chromosome 2 containing the allele derived from wild Mus musculus castaneus at Pbwg1, a quantitative trait locus (QTL) for body weight and growth, has been developed. In this study, to fine-map and characterize body weight QTLs on the congenic region, QTL analysis of body weight at 1, 3, 6, and 10 weeks after birth was performed on a population of 265 F(2) intercross mice between the developed congenic strain and its background strain C57BL/6J. A significant QTL (named Pbwg1.10) affecting body weight at 6 and 10 weeks of age was identified within an approximately 21-Mb support interval. Surprisingly, Pbwg1.10 had an overdominance effect and caused heterosis for body weight. This result supported the overdominance hypothesis explaining heterosis.
杂种优势的遗传基础尚未阐明。此前,已培育出一种近交系小鼠,其2号染色体近端有一个44兆碱基的基因组区域,该区域包含源自野生栗色小家鼠的等位基因,位于Pbwg1位点,这是一个影响体重和生长的数量性状基因座(QTL)。在本研究中,为了对该近交区域的体重QTL进行精细定位和特征分析,对由已培育的近交系与其背景品系C57BL/6J杂交产生的265只F(2)代杂交小鼠群体,在出生后1、3、6和10周进行了体重的QTL分析。在一个约21兆碱基的支持区间内,鉴定出一个影响6周龄和10周龄体重的显著QTL(命名为Pbwg1.10)。令人惊讶的是,Pbwg1.10具有超显性效应,并导致体重杂种优势。这一结果支持了解释杂种优势的超显性假说。