首页> 外文期刊>BMC Genetics >Genetic background (DDD/Sgn versus C57BL/6J) strongly influences postnatal growth of male mice carrying the A y allele at the agouti locus: identification of quantitative trait loci associated with diabetes and body weight loss
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Genetic background (DDD/Sgn versus C57BL/6J) strongly influences postnatal growth of male mice carrying the A y allele at the agouti locus: identification of quantitative trait loci associated with diabetes and body weight loss

机译:遗传背景(DDD / Sgn与C57BL / 6J)强烈影响在刺豚鼠位点携带y等位基因的雄性小鼠的出生后生长:与糖尿病和体重减轻相关的定量性状基因座的鉴定

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Background Mice carrying the Ay allele at the agouti locus become obese and are heavier than their non-Ay littermates. However, this does not hold true for the genetic background of the DDD mouse strain. At 22 weeks of age, DDD.Cg-Ay females are heavier than DDD females, whereas DDD.Cg-Ay males are lighter than DDD males. This study aimed to determine the possible cause and identify the genes responsible for the lower body weight of DDD.Cg-Ay males. Results Growth curves of DDD.Cg-Ay mice were analyzed and compared with those of B6.Cg-Ay mice from 5 to 25 weeks. In DDD.Cg-Ay males, body weight gain stopped between 16 and 17 weeks and the body weight gradually decreased; thus, the lower body weight was a consequence of body weight loss. Quantitative trait locus (QTL) mapping was performed in backcrossed (BC) males of DDD?×?(B6?×?DDD.Cg-Ay) F1-Ay mice. For the body weight at 25 weeks, significant QTLs were identified on chromosomes 1 and 4. The DDD allele was associated with a lower body weight at both loci. In particular, the QTL on chromosome 4 interacted with the Ay allele. Furthermore, suggestive QTLs for plasma glucose and high molecular weight adiponectin levels were coincidentally mapped to chromosome 4. The DDD allele was associated with increased glucose and decreased adiponectin levels. When the body weight at 25 weeks and plasma glucose levels were considered as dependent and independent variables, respectively, BC Ay males were classified into two groups according to statistical analysis using the partition method. Mice of one group had significantly higher glucose and lower adiponectin levels than those of the other group and exhibited body weight loss as observed with DDD-Ay males. Conclusions The lower body weight of DDD.Cg-Ay male mice was a consequence of body weight loss. Diabetes mellitus has been suggested to be a possible contributory factor causing body weight loss. The QTL on distal chromosome 4 contained the major responsible genes. This QTL interacted with the Ay allele, implying the reason why body weight loss occurs in DDD.Cg-Ay but not in DDD males.
机译:背景在刺豚鼠位点携带A y 等位基因的小鼠变得肥胖,并且比非A y 同窝仔重。但是,这对于DDD小鼠品系的遗传背景并不成立。在22周龄时,DDD.Cg-A y 雌性比DDD雌性重,而DDD.Cg-A y 雄性则比DDD雄性轻。本研究旨在确定可能的原因并鉴定引起DDD.Cg-A y 男性低体重的基因。结果分析了DDD.Cg-A y 小鼠5至25周的生长曲线,并与B6.Cg-A y 小鼠进行了比较。在DDD.Cg-A y 男性中,体重增加在16周至17周之间停止,体重逐渐下降;因此,较低的体重是体重减轻的结果。在DDD?×?(B6?×?DDD.Cg-A y )F 1 -A回交(BC)雄性中进行数量性状基因座(QTL)作图 y 小鼠。对于25周时的体重,在1号和4号染色体上鉴定出显着的QTL。DDD等位基因在两个基因座均与较低的体重有关。特别是,第4号染色体上的QTL与A y 等位基因相互作用。此外,血浆葡萄糖和高分子量脂联素水平的暗示性QTL一致地定位于4号染色体。DDD等位基因与血糖升高和脂联素水平降低相关。当将25周体重和血浆葡萄糖水平分别作为因变量和自变量时,根据BC A y 雄性的划分方法,通过统计学分析将其分为两组。与DDD-A y 雄性小鼠相比,一组小鼠的葡萄糖水平显着升高,脂联素水平明显降低,并且体重减轻。结论DDD.Cg-A y 雄性小鼠体重偏低是体重减轻的结果。有人建议糖尿病可能是导致体重减轻的原因。远端4号染色体上的QTL包含主要负责基因。该QTL与A y 等位基因相互作用,这暗示了DDD.Cg-A y 发生体重减轻的原因,而DDD雄性则没有。

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