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首页> 外文期刊>Obesity research >Characterization of QTL with major effects on fatness and growth on mouse chromosome 2.
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Characterization of QTL with major effects on fatness and growth on mouse chromosome 2.

机译:QTL的表征主要影响小鼠2号染色体上的脂肪和生长。

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OBJECTIVE: To isolate and characterize a region on mouse chromosome 2 harboring quantitative trait loci with large influences on growth and fatness. RESEARCH METHODS AND PROCEDURES: A congenic line [M16i.B6-(D2Mit306-D2Mit52); MB2] was created using the polygenic obese M16i selection line as the recipient for an approximately 38-centimorgan region from C57BL/6J. Males and females from M16i and MB2 were compared for body weight, body composition, feed consumption, and additional traits at 6, 15, and 24 weeks. Interactions of genotype and environment (low and high dietary fat) were investigated. Males (8 weeks) were evaluated for fatty acid profiles in liver and for transcriptional profiles in liver and adipose. RESULTS: Consequences of replacing M16i alleles with C57BL/6J alleles in MB2 were maximized at 15 weeks. MB2 mice were up to 15% lighter than M16i at this age, with no differences in feed consumption. As a percentage of body weight, MB2 had dramatically less epididymal (males) or perimetrial (females) fat (1.17% vs. 2.79% pooled across sex) and lower total lipids (16.1% vs. 23.3%) than M16i. Decreased adiposity in MB2 was not dependent on gender or diet. MB2 mice also had significant decreases in levels of leptin, insulin, and glucose, decreased de novo synthesis of hepatic fatty acid, and transcriptional changes for many genes both within, and external to, the congenic region. DISCUSSION: Results confirm the presence and large effects of mouse chromosome 2 quantitative trait loci and further define their phenotypic consequences related to energy balance. The MB2 congenic line is a powerful resource for eventual identification of pathways and mutations within genes regulating predisposition to growth and obesity.
机译:目的:分离并鉴定具有大量数量性状基因座的小鼠2号染色体上的一个区域,该区域对生长和肥胖有较大影响。研究方法和程序:同系系[M16i.B6-(D2Mit306-D2Mit52);使用多基因肥胖M16i选择系作为来自C57BL / 6J的大约38厘摩区域的受体,创建了MB2]。比较了M16i和MB2中的雄性和雌性的体重,身体组成,饲料消耗以及第6、15和24周的其他特征。研究了基因型和环境(低和高饮食脂肪)之间的相互作用。评估了男性(8周)的肝脏脂肪酸谱以及肝脏和脂肪的转录谱。结果:在第15周时,用MB57中的C57BL / 6J等位基因替换M16i等位基因的后果最大。在这个年龄段,MB2小鼠比M16i轻15%,饲料消耗没有差异。与体重百分比相比,MB2的附睾(男性)或子宫内膜(女性)脂肪显着减少(1.17%vs. 2.79%,跨性别),总脂质(16.1%vs. 23.3%)低于M16i。 MB2中肥胖的减少并不取决于性别或饮食。 MB2小鼠的瘦素,胰岛素和葡萄糖水平也显着降低,肝脏脂肪酸的从头合成降低,并且在同基因区域内部和外部的许多基因的转录变化。讨论:结果证实了小鼠2号染色体定量性状基因座的存在和巨大影响,并进一步确定了它们与能量平衡有关的表型后果。 MB2同系品系是一种强大的资源,可用于最终鉴定调节生长和肥胖易感性的基因内的途径和突变。

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