Wang Shan-He, Wang Shun-Hong, Li Hong, Sun Gui-Rong, Lyu Shi-Jie, Liu Xiao-Jun, Li Zhuan-Jian, Kang Xiang-Tao
College of Animal Science and Veterinary Medicine, Henan Agricultural University, Henan Innovative Engineering Research Center of Poultry Germplasm Resource, Zhengzhou, 450002, P.R. China.
Genome. 2015 Feb;58(2):81-90. doi: 10.1139/gen-2015-0001. Epub 2015 May 6.
Polymorphisms in miRNA genes could potentially alter various biological processes by influencing the processing and (or) target selection of miRNAs. The rs14120863 (C > G) mutation, which we characterized in a Gushi-Anka F2 resource population, resides in the precursor region of miR-1666. Association analysis with chicken carcass and growth traits showed that the SNP was significantly associated with carcass weight, evisceration weight, breast muscle weight, leg muscle weight, and body weight at 8 weeks of age, as well as some body size indexes including shank girth, chest breadth, breast bone length, and body slanting length, in the Gushi-Anka F2 resource population. Quantitative RT-PCR results showed that miR-1666 expression levels in muscle tissues differed within various genotypes. Experiment in DF1 cells further confirmed that the SNP in miR-1666 could significantly alter mature miRNA production. Subsequently, using dual-luciferase report assay, we verified that miR-1666 could perform its function through targeting of the CBFB gene. In conclusion, the SNP in the precursor of miR-1666 could significantly reduce mature miR-1666 production. It may further affect the function of miR-1666 through the target gene CBFB, hence it is associated with chicken growth traits.
微小RNA(miRNA)基因中的多态性可能通过影响miRNA的加工和(或)靶标选择来潜在地改变各种生物学过程。我们在固始-安卡F2资源群体中鉴定出的rs14120863(C>G)突变位于miR-1666的前体区域。与鸡胴体和生长性状的关联分析表明,在固始-安卡F2资源群体中,该单核苷酸多态性(SNP)与胴体重、去内脏重、胸肌重、腿肌重、8周龄体重以及一些体尺指标(包括胫围、胸宽、胸骨长和体斜长)显著相关。定量逆转录聚合酶链反应(qRT-PCR)结果显示,不同基因型的肌肉组织中miR-1666表达水平存在差异。DF1细胞实验进一步证实,miR-1666中的SNP可显著改变成熟miRNA的产生。随后,通过双荧光素酶报告基因检测,我们验证了miR-1666可通过靶向CBFB基因发挥其功能。总之,miR-1666前体中的SNP可显著降低成熟miR-1666的产生。它可能通过靶基因CBFB进一步影响miR-1666的功能,因此与鸡的生长性状相关。