Multiple-trait QTL mapping for body and organ weights in a cross between NMRI8 and DBA/2 mice.

Christina Neuschl, Gudrun A Brockmann, Sara A Knott
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引用次数: 16

Abstract

Multiple-trait analyses have been shown to improve the detection of quantitative trait loci (QTLs) with multiple effects. Here we applied a multiple-trait approach on obesity- and growth-related traits that were surveyed in 275 F2 mice generated from an intercross between the high body weight selected line NMRI8 and DBA/2 as lean control. The parental lines differed 2.5-fold in body weight at the age of 6 weeks. Within the F2 population, the correlations between body weight and weights of abdominal fat weight, muscle, liver and kidney at the age of 6 weeks were about 0.8. A least squares multiple-trait QTL analysis was performed on these data to understand more precisely the cause of the genetic correlation between body weight, body composition traits and weights of inner organs. Regions on Chr 1, 2, 7 and 14 for body weights at different early ages and regions on Chr 1, 2, 4, 7, 14, 17 and 19 for organ weights at 6 weeks were found to have significant multiple effects at the genome-wide level.

NMRI8与DBA/2杂交小鼠体重和器官重量的多性状QTL定位。
多性状分析已被证明可以提高多效应数量性状位点(qtl)的检测。在这里,我们应用多性状方法研究了275只F2小鼠的肥胖和生长相关性状,这些小鼠是由高体重选择系NMRI8和DBA/2作为瘦对照杂交产生的。亲本系6周龄时体重相差2.5倍。F2群体6周龄时体重与腹部脂肪、肌肉、肝脏和肾脏的相关系数约为0.8。为了更准确地了解体重、体组成性状与内脏重量遗传相关的原因,对这些数据进行了最小二乘多性状QTL分析。研究发现,Chr 1、2、7和14上的区域与不同早期体重有关,Chr 1、2、4、7、14、17和19上的区域与6周时器官重量有关,在全基因组水平上具有显著的多重效应。
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