Shu Jingting, Li Huifang, Shan Yanju, Xu Wenjuan, Chen Wenfeng, Song Chi, Song Weitao
Key Laboratory for Poultry Genetics and Breeding of Jiangsu Province, Institute of Poultry Science, Chinese Academy of Agricultural Science, Yangzhou, 225125, China.
Dev Genes Evol. 2015 Jun;225(3):139-48. doi: 10.1007/s00427-015-0501-8. Epub 2015 May 13.
The insulin-like growth factor I (IGF-I)-calcineurin (CaN)-NFATc signaling pathways have been implicated in the regulation of myocyte hypertrophy and fiber-type specificity. In the present study, the expression of the CnAα, NFATc3, and IGF-I genes was quantified by RT-PCR for the first time in the breast muscle (BM) and leg muscle (LM) on days 13, 17, 21, 25, and 27 of embryonic development, as well as at 7 days posthatching (PH), in Gaoyou and Jinding ducks, which differ in their muscle growth rates. Consistent expression patterns of CnAα, NFATc3, and IGF-I were found in the same anatomical location at different development stages in both duck breeds, showing significant differences in an age-specific fashion. However, the three genes were differentially expressed in the two different anatomical locations (BM and LM). CnAα, NFATc3, and IGF-I messenger RNA (mRNA) could be detected as early as embryonic day 13 (ED13), and the highest level appeared at this stage in both BM and LM. Significant positive relationships were observed in the expression of the studied genes in the BM and LM of both duck breeds. Also, the expression of these three genes showed a positive relationship with the percentage of type IIb fibers and a negative relationship with the percentage of type I fibers and type IIa fibers. Our data indicate differential expression and coordinated developmental regulation of the selected genes involved in the IGF-I-calcineurin-NFATc3 pathway in duck skeletal muscle during embryonic and early PH growth and development; these data also indicate that this signaling pathway might play a role in the regulation of myofiber type transition.
胰岛素样生长因子I(IGF-I)-钙调神经磷酸酶(CaN)-活化T细胞核因子c(NFATc)信号通路与心肌肥大和纤维类型特异性的调节有关。在本研究中,首次通过逆转录聚合酶链反应(RT-PCR)对高邮鸭和金定鸭胚胎发育第13、17、21、25和27天以及出雏后7天(PH)的胸肌(BM)和腿肌(LM)中CnAα、NFATc3和IGF-I基因的表达进行了定量分析,这两个鸭种的肌肉生长速率不同。在两个鸭种的不同发育阶段,相同解剖位置的CnAα、NFATc3和IGF-I呈现出一致的表达模式,以年龄特异性方式表现出显著差异。然而,这三个基因在两个不同解剖位置(BM和LM)存在差异表达。早在胚胎第13天(ED13)就能检测到CnAα、NFATc3和IGF-I信使核糖核酸(mRNA),且在BM和LM的这一阶段均出现最高水平。在两个鸭种的BM和LM中,所研究基因的表达之间均观察到显著的正相关关系。此外,这三个基因的表达与IIb型纤维百分比呈正相关,与I型纤维和IIa型纤维百分比呈负相关。我们的数据表明,在鸭胚胎期和出雏后早期生长发育过程中,IGF-I-钙调神经磷酸酶-NFATc3通路中所选基因存在差异表达和协调的发育调控;这些数据还表明该信号通路可能在肌纤维类型转变的调节中发挥作用。