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Muscle hypertrophy in heavy weight Japanese quail line: Delayed muscle maturation and continued muscle growth with prolonged upregulation of myogenic regulatory factors

机译:重型日本鹌鹑品系中的肌肉肥大:延迟的肌肉成熟和持续的肌肉生长以及成肌调节因子的持续上调

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摘要

The objective of this study was to compare the temporal expression of myosin heavy chain (MyHC) isoforms, Pax7, and myogenic regulatory factors (MRF) between heavy weight (HW) and random bred control (RBC) Japanese quail lines during muscle development to better understand the mechanisms leading to increased skeletal muscle mass in the HW quail line selected for a greater BW at 4 wk of age separated from RBC quail. Expression of neonatal MyHC isoform began at 3 and 7 d posthatch in RBC and HW quail lines, respectively. In the RBC quail line, adult MyHC isoform, as a marker for muscle maturation, was expressed at 28 d posthatch with sustained expression through 75 d posthatch, whereas this protein was detected only at 75 d posthatch in the HW quail line. Moreover, Pax7 expression continued from embryonic ages to 14 d posthatch in the HW quail line and to 7 d posthatch in the RBC quail line. These expression patterns of MyHC isoforms and Pax7 in the HW quail line were accompanied by delayed muscle maturation and prolonged growth compared with the RBC quail line. Temporal expressions of the primary MRF showed that higher expression levels of MyoD and Myf-5 were observed at 9 and 11 d embryo in the HW quail line compared with the RBC quail line (P < 0.05). The HW quail line exhibited approximately 2 times greater average levels of myogenin expression from 7 to 75 d posthatch (P < 0.05) than the RBC quail line. Prolonged upregulation of these primary and secondary MRF during muscle development is associated with delayed maturation and continued muscle growth, which consequently would permit muscle hypertrophic potentials in the HW quail line compared with the RBC quail line
机译:本研究的目的是比较体重(HW)和随机繁殖对照(RBC)日本鹌鹑品系在肌肉发育过程中肌球蛋白重链(MyHC)同工型,Pax7和肌源调节因子(MRF)的时间表达,以更好地进行了解与红细胞鹌鹑分开的,在4周龄时选择更大BW的HW鹌鹑品系中导致骨骼肌质量增加的机制。新生MyHC亚型的表达分别在孵化后3天和7天在RBC和HW鹌鹑品系中开始。在RBC鹌鹑品系中,成年MyHC亚型作为肌肉成熟的标志物在孵化后28 d表达,并在孵化后75 d持续表达,而该蛋白仅在HW鹌鹑品系在孵化后75 d被检测到。此外,Pax7的表达从胚胎年龄一直延续到HW鹌鹑品系孵化后14 d和RBC鹌鹑品系孵化后7 d。与RBC鹌鹑品系相比,HW鹌鹑品系中MyHC亚型和Pax7的这些表达方式伴有肌肉成熟延迟和生长延长。初级MRF的时间表达表明,与RBC鹌鹑品系相比,HW鹌鹑品系在第9和11 d胚胎中观察到了更高的MyoD和Myf-5表达水平(P <0.05)。孵化后7至75 d,HW鹌鹑品系的肌生成素平均表达水平比RBC鹌鹑品系高出约2倍(P <0.05)。在肌肉发育过程中,这些原发性和继发性MRF的上调时间延长与延迟成熟和持续的肌肉生长有关,因此,与RBC鹌鹑品系相比,HW鹌鹑品系具有肌肉肥大的潜力

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