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Inferring the Skeletal Muscle Developmental Changes of Grazing and Barn-Fed Goats from Gene Expression Data

机译:从基因表达数据推断放牧和谷仓喂养山羊骨骼肌的发育变化

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Thirty-six Xiangdong black goats were used to investigate age-related mRNA and protein expression levels of some genes related to skeletal muscle structural proteins, MRFs and MEF2 family, and skeletal muscle fiber type and composition during skeletal muscle growth under grazing (G) and barn-fed (BF) feeding systems. Goats were slaughtered at six time points selected to reflect developmental changes of skeletal muscle during nonrumination (days 0, 7, and 14), transition (day 42), and rumination phases (days 56 and 70). It was observed that the number of type IIx in the longissimus dorsi was increased quickly while numbers of type Ha and lib decreased slightly, indicating that these genes were coordinated during the rapid growth and development stages of skeletal muscle. No gene expression was affected (P > 0.05) by feeding system except Myf5 and Myf6. Protein expressions of MYOZ3 and MEF2C were affected (P < 0.05) by age, whereas PGC-1 alpha was linearly decreased in the G group, and only MYOZ3 protein was affected (P < 0.001) by feeding system. Moreover, it was found that PGC-1 alpha and MEE2C proteins may interact with each other in promoting muscle growth. The current results indicate that (1) skeletal muscle growth during days 0-70 after birth is mainly myofiber hypertrophy and differentiation, (2) weaning affects the expression of relevant genes. of skeletal muscle structural proteins, skeletal muscle growth, and skeletal muscle fiber type and composition, and (3) nutrition or feeding regimen mainly influences the expression of skeletal muscle growth genes.
机译:使用36只湘东黑山羊来研究与骨骼肌结构蛋白,MRF和MEF2家族有关的某些基因的年龄相关的mRNA和蛋白质表达水平,以及在放牧(G)和谷仓饲喂系统。在六个时间点宰杀山羊,以反映非反刍(第0、7和14天),过渡(第42天)和反刍阶段(第56和70天)期间骨骼肌的发育变化。观察到背最长肌中IIx型的数量迅速增加,而Ha和lib型的数量略有减少,这表明这些基因在骨骼肌的快速生长和发育阶段是协调的。除Myf5和Myf6外,饲喂系统均未影响基因表达(P> 0.05)。 MYOZ3和MEF2C的蛋白表达受年龄的影响(P <0.05),而G组的PGC-1α线性下降,并且只有MYOZ3蛋白受饲喂系统的影响(P <0.001)。而且,发现PGC-1α和MEE2C蛋白可能在促进肌肉生长中相互作用。目前的结果表明:(1)出生后0-70天的骨骼肌生长主要是肌纤维肥大和分化;(2)断奶影响相关基因的表达。骨骼肌结构蛋白,骨骼肌生长以及骨骼肌纤维类型和组成,以及(3)营养或喂养方式主要影响骨骼肌生长基因的表达。

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