生物
增强子
骨骼肌
染色质
细胞生物学
遗传学
表观遗传学
表观遗传学
转录组
基因
基因组
MEF2C公司
氧化磷酸化
基因表达调控
肌节
计算生物学
转录调控
基因亚型
生物化学
体内
作者
Shuailong Zheng,Hainan Wu,Min Liu,Kunpeng Wu,Shuntao Huang,Zulfiqar Ahmed,Lenox Pius,MengJin Zhu,Dequan Xu
标识
DOI:10.1002/advs.202523959
摘要
Skeletal muscle fiber composition is a key determinant of meat quality and metabolic traits. The early postnatal period constitutes a primary window for muscle fiber transformation. In this study, distinct muscle fiber composition is analyzed by histological and molecular characterization of longissimus dorsi muscle of 2-week-old lean-type and Chinese indigenous pigs. Multi-omics analyses reveal divergence in chromatin states, enhancer landscapes, and promoter activity between breeds. Lean-type pigs show increased chromatin accessibility and enhancer activation at genes involved in oxidative metabolism and myogenesis, whereas Chinese indigenous pigs exhibit enriched regulatory features at glycolytic and biosynthetic loci. Breed-specific SNPs and indels are enriched in a subset of enhancers and potentially influence transcriptional regulation. Higher-order genome architecture further contributes to transcriptional divergence through A/B compartment switching and topologically associating domain boundary remodeling. Promoter-enhancer interaction mapping reveals breed-specific cis-regulatory networks, and transcriptional output correlates with enhancer density. Functional validation identifies a super-enhancer upstream of PPP3CB that recruits MEF2C to activate oxidative fiber programs. In vitro and in vivo perturbation assays confirm that the PPP3CB-MEF2C feedback loop governs muscle fiber-type specification. Collectively, these findings delineate the epigenomic and 3D genomic architecture underlying early muscle fiber characteristics and provide mechanistic insights relevant to improving meat quality.
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