Ishikawa Akira, Hatada Sayuri, Nagamine Yoshitaka, Namikawa Takao
Laboratory of Animal Genetics, Division of Applied Genetics and Physiology, Graduate School of Bioagricultural Sciences, Nagoya University, Chikusa-ku, Nagoya 464-8601, Japan.
Genet Res. 2005 Apr;85(2):127-37. doi: 10.1017/S001667230500738X.
We performed a quantitative trait locus (QTL) analysis of eight body weights recorded weekly from 3 weeks to 10 weeks after birth and two weight gains recorded between 3 weeks and 6 weeks, and between 6 weeks and 10 weeks in an inter-sub-specific backcross population of wild Mus musculus castaneus mice captured in the Philippines and the common inbred strain C57BL/6J ( M. musculus domesticus ), to elucidate the complex genetic architecture of body weight and growth. Interval mapping identified 17 significant QTLs with main effects on 11 chromosomes. In particular, the main effect of the most potent QTL on proximal chromosome 2 increased linearly with age, whereas other QTLs exerted effects on either the early or late growth period. Surprisingly, although wild mice displayed 60% of the body size of their C57BL/6J counterparts, the wild-derived allele enhanced growth at two QTLs. Interestingly, five of the 17 main-effect QTLs identified had significant epistatic interaction effects. Five new epistatic QTLs with no main effects were identified on different chromosomes or regions. For one pair of epistatic QTLs, mice that were heterozygous for the wild-derived allele at one QTL and homozygous for that allele at another QTL exhibited the most rapid growth in all four possible genotypic combinations. Out of the identified QTLs, several showed significant sex-specific effects.
我们对在菲律宾捕获的野生小家鼠栗色种小鼠与常见近交系C57BL/6J(小家鼠)的种间回交群体,进行了出生后3周龄至10周龄每周记录一次的8个体重以及3周龄至6周龄、6周龄至10周龄记录的2个体重增加量的数量性状基因座(QTL)分析,以阐明体重和生长的复杂遗传结构。区间作图法在11条染色体上鉴定出17个具有主要效应的显著QTL。特别地,位于近端2号染色体上最显著的QTL的主要效应随年龄呈线性增加,而其他QTL对早期或晚期生长阶段发挥作用。令人惊讶的是,尽管野生小鼠的体型仅为其C57BL/6J对应小鼠的60%,但野生来源的等位基因在两个QTL上增强了生长。有趣的是,所鉴定出的17个主要效应QTL中有5个具有显著的上位性互作效应。在不同染色体或区域上鉴定出5个无主要效应的新上位性QTL。对于一对上位性QTL,在一个QTL上为野生来源等位基因杂合子且在另一个QTL上为该等位基因纯合子的小鼠,在所有四种可能的基因型组合中生长速度最快。在所鉴定出的QTL中,有几个表现出显著的性别特异性效应。