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Effect of the myostatin locus on muscle mass and intramuscular fat content in a cross between mouse lines selected for hypermuscularity

机译:肌肉生长抑制素基因座对选择用于过度肌肉运动的小鼠品系之间的杂交对肌肉质量和肌内脂肪含量的影响

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Background This study is aimed at the analysis of genetic and physiological effects of myostatin on economically relevant meat quality traits in a genetic background of high muscularity. For this purpose, we generated G3 populations of reciprocal crosses between the two hypermuscular mouse lines BMMI866, which carries a myostatin mutation and is lean, and BMMI806, which has high intramuscular and body fat content. To assess the relationship between muscle mass, body composition and muscle quality traits, we also analysed intramuscular fat content (IMF), water holding capacity (WHC), and additional physiological parameters in M. quadriceps and M. longissimus in 308 G3-animals. Results We found that individuals with larger muscles have significantly lower total body fat (r?=??0.28) and IMF (r?=??0.64), and in females, a lower WHC (r?=??0.35). In males, higher muscle mass was also significantly correlated with higher glycogen contents (r?=?0.2) and lower carcass pH-values 24 hours after dissection (r?=??0.19). Linkage analyses confirmed the influence of the myostatin mutation on higher lean mass (1.35 g), reduced body fat content (?1.15%), and lower IMF in M. longissimus (?0.13%) and M. quadriceps (?0.07%). No effect was found for WHC. A large proportion of variation of intramuscular fat content of the M. longissimus at the myostatin locus could be explained by sex (23%) and direction-of-cross effects (26%). The effects were higher in males (+0.41%). An additional locus with negative over-dominance effects on total fat mass (?0.55 g) was identified on chromosome 16 at 94 Mb (86–94 Mb) which concurs with fat related QTL in syntenic regions on SSC13 in pigs and BTA1 in cattle. Conclusion The data shows QTL effects on mouse muscle that are similar to those previously observed in livestock, supporting the mouse model. New information from the mouse model helps to describe variation in meat quantity and quality, and thus contribute to research in livestock.
机译:背景技术本研究旨在分析肌肉生长抑制素在高肌肉遗传背景下对与经济相关的肉质性状的遗传和生理效应。为此,我们在两个带有肌肉生长抑制素突变且瘦的超肌肉小鼠系BMMI866和具有高肌肉内和体内脂肪含量的BMMI806之间生成了G 3 相互交叉的群体。为了评估肌肉质量,身体成分与肌肉质量特征之间的关系,我们还分析了308 G >股四头肌和长爪肌中的肌肉内脂肪含量(IMF),持水量(WHC)和其他生理参数。 3 -动物。结果我们发现,肌肉较大的个体的总脂肪(r 2 = 0.28)和IMF(r 2 = 0.64)明显降低,而女性的WHC较低(r 2 = 0.35)。在男性中,解剖后24小时,较高的肌肉质量也与较高的糖原含量(r 2 = 0.2)和较低的car体pH值显着相关(r 2 = 0.19)。连锁分析证实了肌肉生长抑制素突变对瘦长体重(1.35 g),体脂含量减少(1.15%)和长肌支原体(?0.13%)和股四头肌(?0.07%)IMF降低的影响。未发现对WHC有影响。肌生长抑制素基因座处的长肌支原体肌肉内脂肪含量的很大一部分变化可以通过性别(23%)和交叉方向效应(26%)来解释。男性的影响更高(+ 0.41%)。在16号染色体上的94 Mb(86-94 Mb)处发现了另外一个对总脂肪量具有负显性作用的场所(?0.55 g),这与猪SSC13和牛的BTA1的同义区域中与脂肪相关的QTL一致。结论数据显示QTL对小鼠肌肉的作用与先前在牲畜中观察到的相似,从而支持了小鼠模型。来自小鼠模型的新信息有助于描述肉类数量和质量的变化,从而有助于家畜研究。

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