[具体物质名称]在中国鲈生长过程中对成肌细胞增殖、融合的作用及其对肌肉结构的影响
The Role of in Myoblast Proliferation, Fusion, and Its Impact on Muscle Structure During the Growth of Chinese Perch ().
作者信息
Meng Yangyang, Zeng Wei, Zhu Xin, Bao Lingsheng, Pan Yaxiong, Li Honghui, Zhang Jianshe, Liu Lusha, Gao Zexia, Du Zhenyu, Chu Wuying
机构信息
College of Biological and Chemical Engineering, Changsha University, Changsha 410022, China.
Key Lab of Agricultural Animal Genetics, Breeding and Reproduction of Ministry of Education, Key Lab of Freshwater Animal Breeding, Ministry of Agriculture, College of Fisheries, Huazhong Agricultural University, Wuhan 430070, China.
出版信息
Animals (Basel). 2025 Apr 20;15(8):1177. doi: 10.3390/ani15081177.
plays a pivotal regulatory role in the growth of skeletal muscle across various organisms. Nonetheless, the specific mechanism by which governs skeletal muscle function in fish, particularly in the economically significant Chinese perch (), remains unclear. Within the muscle injury model in Chinese perch, we observed that expression was upregulated during the repair phase of fast muscle tissue, exhibiting an expression pattern analogous to that of . Following the knockdown of using -specific in vivo-siRNA in fast muscle tissues, the expression of myogenic regulatory factors () was significantly reduced in the -siRNA-treated group compared with the control group, whereas no significant differences were observed for and . Furthermore, the diameter of myofibers and the number of nuclei in single myofibers were reduced, and concurrently, the number of BrdU-positive cells (proliferating cells) was significantly reduced in the -siRNA-treated group. Taken together, this study demonstrates that Twist2 promotes myoblast proliferation and fusion, thereby regulating fast muscle growth in juvenile Chinese perch. These findings provide a clear direction for further exploration of molecular mechanisms underlying skeletal muscle growth in economic fish species.
在各种生物体的骨骼肌生长中发挥着关键的调节作用。然而,其在鱼类尤其是具有重要经济价值的中国鲈()中调控骨骼肌功能的具体机制仍不清楚。在中国鲈的肌肉损伤模型中,我们观察到在快肌组织修复阶段其表达上调,呈现出与类似的表达模式。在快肌组织中使用特异性体内小干扰RNA敲低后,与对照组相比,小干扰RNA处理组中肌源性调节因子()的表达显著降低,而和未观察到显著差异。此外,小干扰RNA处理组中肌纤维直径和单个肌纤维中的细胞核数量减少,同时,BrdU阳性细胞(增殖细胞)的数量显著减少。综上所述,本研究表明Twist2促进成肌细胞增殖和融合,从而调节幼年中国鲈的快肌生长。这些发现为进一步探索经济鱼类骨骼肌生长的分子机制提供了明确的方向。