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小鼠2号染色体的一个生长数量性状基因座(Pbwg1)区域包含影响生长和身体组成的紧密连锁基因座。

A growth QTL (Pbwg1) region of mouse chromosome 2 contains closely linked loci affecting growth and body composition.

作者信息

Ishikawa Akira, Kim Eun-Hee, Bolor Hasbaira, Mollah Md Bazlur R, Namikawa Takao

机构信息

Laboratory of Animal Genetics, Graduate School of Bioagricultural Sciences, Nagoya University, Chikusa, Nagoya, Aichi 464-8601, Japan.

出版信息

Mamm Genome. 2007 Apr;18(4):229-39. doi: 10.1007/s00335-007-9009-5. Epub 2007 May 19.

Abstract

Previous QTL studies have identified 24 QTLs for body weight and growth from 3 to 10 weeks after birth in an intersubspecific backcross mouse population between C57BL/6J and wild Mus musculus castaneus that has 60% of the body size of C57BL/6J. The castaneus allele at the most potent QTL (Pbwg1) on proximal chromosome 2 retards growth. In this study we have developed a congenic strain with a 44.1-Mb interval containing the castaneus allele at Pbwg1 by recurrent backcrossing to C57BL/6J. The congenic mouse developed was characterized by significantly higher body weight gain between 1 and 3 weeks of age and lower weight of white fat pads at 10 weeks of age than C57BL/6J. However, no clear difference in body weight at 1-10 weeks of age was observed between congenic and C57BL/6J strains. QTL analysis with 269 F(2) mice between the two strains did not identify any QTLs for body weight at 1, 3, 6, and 10 weeks of age, but it discovered eight closely linked QTLs affecting body weight gain from 1 to 3 weeks of age, lean body weight, weight of white fat pads, and body length within the Pbwg1 region. The castaneus alleles at all fat pad QTLs reduced the phenotypes, whereas at the remaining growth and body composition QTLs, they increased the trait values. These results illustrate that Pbwg1, which initially appeared to be a single locus, was resolved into several loci with opposite effects on the composition traits of overall body weight. This gives a reason for the loss of the Pbwg1 effect found in the original backcross population.

摘要

先前的数量性状基因座(QTL)研究在C57BL/6J和野生小家鼠栗色种之间的种间回交小鼠群体中,鉴定出了24个出生后3至10周体重和生长相关的QTL,该群体体型为C57BL/6J的60%。位于近端2号染色体上最有效的QTL(Pbwg1)处的栗色种等位基因会延缓生长。在本研究中,我们通过与C57BL/6J反复回交,培育出了一个含有Pbwg1处栗色种等位基因的44.1兆碱基区间的近交系。所培育的近交小鼠的特征是,与C57BL/6J相比,1至3周龄时体重显著增加,10周龄时白色脂肪垫重量更低。然而,近交系和C57BL/6J品系在1至10周龄时的体重未观察到明显差异。对两个品系之间的269只F2小鼠进行QTL分析,未鉴定出1、3、6和10周龄时体重相关的任何QTL,但发现了八个紧密连锁的QTL,影响1至3周龄时的体重增加、瘦体重、白色脂肪垫重量以及Pbwg1区域内的体长。所有脂肪垫QTL处的栗色种等位基因都降低了表型,而在其余生长和身体组成QTL处,它们增加了性状值。这些结果表明,最初看似是单个位点的Pbwg1被解析为几个对总体重组成性状有相反影响的位点。这就解释了在原始回交群体中发现的Pbwg1效应消失的原因。

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