Key Laboratory of Swine Genetics and Breeding of the Ministry of Agriculture and Rural Affairs, Huazhong Agricultural University, Wuhan, China.
Key Laboratory of Agriculture Animal Genetics, Breeding and Reproduction of the Ministry of Education, Huazhong Agricultural University, Wuhan, China.
Anim Genet. 2024 Feb;55(1):66-78. doi: 10.1111/age.13370. Epub 2023 Oct 25.
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.
我们之前的研究表明,SYISL 是小鼠、猪和人类肌肉生长和再生的负调控因子。SYISL 敲除导致肌肉纤维密度增加和肌肉生长。然而,目前尚不清楚猪 SYNPO2 内含子反义重叠长非编码 RNA(pSYISL)中是否存在自然突变会影响 pSYISL 的表达和肌肉生长性状。在本研究中,鉴定了 pSYISL 外显子中的三个 SNP 和启动子内的六个 SNP。关联分析表明,外显子中的两个 SNP 与腰大肌面积显著相关(p<0.05);启动子内的六个 SNP 完全连锁,与美国大白猪的活体背膘厚和活体腰大肌面积显著相关。生物信息学和荧光素酶报告基因检测以及体外结合实验表明,SNP rs702045770(g.539G>A)的突变导致 YY1 结合到启动子的丧失,从而影响 pSYISL 的表达水平,我们发现基因型 GG 的江山黑猪的 pSYISL 表达水平高于基因型 AA 的个体,但肌肉纤维密度明显低于基因型 AA 的个体。此外,关联分析表明,SNP rs702045770 基因型 GG 的胴体背膘厚在(皮特兰×杜洛克)×(长白猪×约克夏)杂交猪中显著高于其他基因型(p<0.05)。基因型 GG 的糖酵解能力显著高于其他基因型(p<0.05)。这些结果为鉴定非编码基因组区域中的功能 SNP 提供了新的见解。