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Gene Expression Essential for Myostatin Signaling and Skeletal Muscle Development Is Associated With Divergent Feed Efficiency in Pedigree Male Broilers

机译:肌肉生长抑制素信号和骨骼肌发育必不可少的基因表达与家系雄鸡的不同饲料效率相关

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摘要

>Background: Feed efficiency (FE, gain to feed) is an important genetic trait as 70% of the cost of raising animals is due to feed costs. The objective of this study was to determine mRNA expression of genes involved in muscle development and hypertrophy, and the insulin receptor-signaling pathway in breast muscle associated with the phenotypic expression of FE.>Methods: Breast muscle samples were obtained from Pedigree Male (PedM) broilers (8 to 10 week old) that had been individually phenotyped for FE between 6 and 7 week of age. The high FE group gained more weight but consumed the same amount of feed compared to the low FE group. Total RNA was extracted from breast muscle (n = 6 per group) and mRNA expression of target genes was determined by real-time quantitative PCR.>Results: Targeted gene expression analysis in breast muscle of the high FE phenotype revealed that muscle development may be fostered in the high FE PedM phenotype by down-regulation several components of the myostatin signaling pathway genes combined with upregulation of genes that enhance muscle formation and growth. There was also evidence of genetic architecture that would foster muscle protein synthesis in the high FE phenotype. A clear indication of differences in insulin signaling between high and low FE phenotypes was not apparent in this study.>Conclusion: These findings indicate that a gene expression architecture is present in breast muscle of PedM broilers exhibiting high FE that would support enhanced muscle development-differentiation as well as protein synthesis compared to PedM broilers exhibiting low FE.
机译:>背景:饲料效率(FE,饲料获得量)是重要的遗传特征,因为饲养动物的成本中有70%是由于饲料成本造成的。这项研究的目的是确定参与肌肉发育和肥大的基因的mRNA表达,以及与FE的表型表达有关的乳腺胰岛素受体信号通路。>方法:从家谱雄性(PedM)肉鸡(8至10周龄)中获得,这些个体已针对6至7周龄的FE进行了表型鉴定。与低FE组相比,高FE组体重增加,但消耗的饲料量相同。从胸肌中提取总RNA(每组n = 6),并通过实时定量PCR测定靶基因的mRNA表达。>结果:高FE型表彰的胸肌靶基因表达分析揭示了高FE PedM表型可能通过下调Myostatin信号通路基因的几个组成部分以及增强肌肉形成和生长的基因上调来促进肌肉发育。也有证据表明遗传结构会促进高FE表型的肌肉蛋白质合成。在这项研究中,没有清楚地表明高和低FE表型之间胰岛素信号的差异。>结论:这些发现表明,在表现出高FE的PedM肉鸡的胸肌中存在基因表达结构与表现出低FE的PedM肉鸡相比,它将支持增强的肌肉发育分化以及蛋白质合成。

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