Functional SNPs in SYISL promoter significantly affect muscle fiber density and muscle traits in pigs

生物 单核苷酸多态性 基因型 外显子 SNP公司 分子生物学 连锁不平衡 发起人 遗传学 内分泌学 男科 基因 基因表达 医学
作者
Wei Lv,Yaxin Peng,Jingjing Hu,Mingfei Zhu,Yangcang Mao,Litong Wang,Guoshui Wang,Zaiyan Xu,Wangjun Wu,Bo Zuo
出处
期刊:Animal Genetics [Wiley]
卷期号:55 (1): 66-78
标识
DOI:10.1111/age.13370
摘要

Our previous studies showed that SYISL is a negative regulator of muscle growth and regeneration in mice, pigs and humans. SYISL knockout resulted in an increase in the density of muscle fibers and muscle growth. However, it is unclear whether there are natural mutations in pig SYNPO2 intron sense-overlapping lncRNA (pSYISL) that affect the expression of pSYISL and muscle growth traits. In this study, three SNPs in exons and six SNPs within the promoter of pSYISL were identified. Association analysis showed that the two SNPs in exons are significantly associated with loin muscle area (p < 0.05); the six SNPs in the promoter that show complete linkage are significantly associated with live backfat thickness and live loin muscle area in American Large White pigs. Bioinformatics and luciferase reporter assays as well as in vitro binding experiments indicated that the mutation of SNP rs702045770 (g.539G>A) leads to the loss of YY1 binding to the promoter, thus affecting the expression level of pSYISL, and we found that Jiangshan Black pigs with genotype GG have a higher expression level of pSYISL than genotype AA individuals, but the muscle fiber density was significantly lower than in genotype AA individuals. Furthermore, the association analysis showed that the carcass backfat thickness of genotype GG of SNP rs702045770 was significantly higher than that of other genotypes in (Pietrain × Duroc) × (Landrace × Yorkshire) crossbred pigs (p < 0.05). The glycolytic potential of genotype GG was significantly higher than that of other genotypes (p < 0.05). These results provide novel insight into the identification of functional SNPs in non-coding genomic regions.
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