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Genetic factors contributing to obesity and body weight can act through mechanisms affecting muscle weight, fat weight, or both

机译:导致肥胖和体重的遗传因素可通​​过影响肌肉重量,脂肪重量或两者的机制起作用

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摘要

Genetic loci for body weight and subphenotypes such as fat weight have been mapped repeatedly. However, the distinct effects of different loci and physiological interactions among different traits are often not accounted for in mapping studies. Here we used the method of structural equation modeling to identify the specific relationships between genetic loci and different phenotypes influencing body weight. Using this technique, we were able to distinguish genetic loci that affect adiposity from those that affect muscle growth. We examined the high body weight-selected mouse lines NMRI8 and DU6i and the intercross populations NMRI8 × DBA/2 and DU6i × DBA/2. Structural models help us understand whether genetic factors affect lean mass and fat mass pleiotropically or nonpleiotropically. Sex has direct effects on both fat and muscle weight but also influences fat weight indirectly via muscle weight. Three genetic loci identified in these two crosses showed exclusive effects on fat deposition, and five loci contributed exclusively to muscle weight. Two additional loci showed pleiotropic effects on fat and muscle weight, with one locus acting in both crosses. Fat weight and muscle weight were influenced by epistatic effects. We provide evidence that significant fat loci in strains selected for body weight contribute to fat weight both directly and indirectly via the influence on lean weight. These results shed new light on the action of genes in quantitative trait locus regions potentially influencing muscle and fat mass and thus controlling body weight as a composite trait.
机译:体重和亚表型(如脂肪体重)的遗传基因座已被反复定位。然而,在作图研究中通常不考虑不同基因座和不同性状之间的生理相互作用的独特影响。在这里,我们使用结构方程建模的方法来识别遗传位点和影响体重的不同表型之间的特定关系。使用该技术,我们能够区分影响肥胖的遗传基因座和影响肌肉生长的基因基因座。我们检查了高体重选择的小鼠系NMRI8和DU6i,以及交叉种群NMRI8×DBA / 2和DU6i×DBA / 2。结构模型有助于我们了解遗传因素是多效还是非多效地影响瘦肉和脂肪。性对脂肪和肌肉重量都有直接影响,但也会通过肌肉重量间接影响脂肪重量。在这两个杂交中鉴定出的三个基因座显示出对脂肪沉积的排他性影响,而五个基因座仅在肌肉重量中起作用。另外两个基因座对脂肪和肌肉重量表现出多效性作用,两个杂交中有一个基因座。脂肪重量和肌肉重量受上位性作用的影响。我们提供的证据表明,按体重选择的菌株中显着的脂肪位点通过对瘦体重的影响而直接或间接地促进了脂肪的重量。这些结果为定量性状基因座区域中基因的作用提供了新的线索,这些区域可能会影响肌肉和脂肪的质量,从而控制体重作为一种综合性状。

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