College of Animal Science and Technology, Yangzhou University, Yangzhou 225009, China; Joint International Research Laboratory of Agriculture & Agri-Product Safety, Yangzhou University, Yangzhou 225009, China.
College of Animal Science and Technology, Yangzhou University, Yangzhou 225009, China; Joint International Research Laboratory of Agriculture & Agri-Product Safety, Yangzhou University, Yangzhou 225009, China.
Poult Sci. 2022 Nov;101(11):102120. doi: 10.1016/j.psj.2022.102120. Epub 2022 Aug 8.
The regulation of skeletal muscle growth and development in chicken is complex. MicroRNAs (miRNAs) have been found to play an important role in the process, and more research is needed to further understand the regulatory mechanism of miRNAs. In this study, leg muscles of Jinghai yellow chickens at 300 d with low body weight (slow-growing group) and high body weight (fast-growing group) were collected for miRNA sequencing (miRNA-seq) and Bioinformatics analysis revealed 12 differentially expressed miRNAs (DEMs) between the two groups. We predicted 150 target genes for the DEMs, and GO and KEGG pathway analysis showed the target genes of miR-24-3p and novel_miR_133 were most enriched in the terms related to growth and development. Moreover, networks of DEMs and target genes showed that miR-24-3p and novel_miR_133 were the 2 core miRNAs. Hence, miR-24-3p was selected for further functional exploration in chicken primary myoblasts (CPMs) with molecular biology technologies including qPCR, cell counting kit-8 (CCK-8), 5-ethynyl-2'-deoxyuridine (EdU) and immunofluorescence. When proliferating CPMs were transfected with miR-24-3p mimic, the expression of cyclin dependent kinase inhibitor 1A (P21) was up-regulated and both CCK-8 and EdU assays showed that the proliferation of CPMs was inhibited. However, when the inhibitor was transfected into the proliferating CPMs, the opposite results were found. In differentiated CPMs, transfection with miR-24-3p mimic resulted in up regulation of MYOD, MYOG and MYHC after 48 h. Myotube areas also increased significantly compared to the mimic negative control (NC) group. When treated with inhibitor, differentiation CPMs produced the opposite effects. Overall, we revealed 2 miRNAs (novel_miR_133 and miR-24-3p) significantly related with growth and development and further proved that miR-24-3p could suppress the proliferation and promote differentiation of CPMs. The results would facilitate understanding the effects of miRNAs on the growth and development of chickens at the post-transcriptional level and could also have an important guiding role in yellow-feathered chicken breeding.
鸡骨骼肌生长发育的调控机制十分复杂。现已发现 microRNAs(miRNAs)在这一过程中发挥着重要作用,但仍需进一步研究以深入了解 miRNAs 的调控机制。本研究采集了 300 日龄低体重(生长缓慢组)和高体重(生长迅速组)京海黄鸡的腿部肌肉进行 miRNA 测序(miRNA-seq)和生物信息学分析,结果显示两组间存在 12 个差异表达 miRNAs(DEMs)。我们预测了这些 DEMs 的 150 个靶基因,GO 和 KEGG 通路分析表明,miR-24-3p 和 novel_miR_133 的靶基因在与生长和发育相关的术语中最为富集。此外,DEMs 和靶基因网络显示,miR-24-3p 和 novel_miR_133 是 2 个核心 miRNAs。因此,选择 miR-24-3p 进一步利用分子生物学技术在鸡原代肌母细胞(CPM)中进行功能研究,包括 qPCR、细胞计数试剂盒-8(CCK-8)、5-乙炔基-2'-脱氧尿苷(EdU)和免疫荧光检测。当增殖的 CPM 转染 miR-24-3p 模拟物时,细胞周期蛋白依赖性激酶抑制剂 1A(P21)的表达上调,CCK-8 和 EdU 检测均表明 CPM 的增殖受到抑制。然而,当将抑制剂转染到增殖的 CPM 中时,得到了相反的结果。在分化的 CPM 中,转染 miR-24-3p 模拟物 48 h 后 MYOD、MYOG 和 MYHC 的表达上调。与模拟物阴性对照(NC)组相比,肌管面积也显著增加。用抑制剂处理时,分化的 CPM 产生相反的效果。总的来说,我们发现 2 个 miRNA(novel_miR_133 和 miR-24-3p)与生长和发育显著相关,并进一步证明 miR-24-3p 可抑制 CPM 的增殖并促进其分化。该结果有助于从转录后水平理解 miRNAs 对鸡生长发育的影响,对黄羽肉鸡的选育也具有重要的指导作用。