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Pig fetal skeletal muscle development is associated with genome-wide DNA hypomethylation and corresponding alterations in transcript and microRNA expression.
Corbett, R J; Ford, L M; Raney, N E; Grabowski, J M; Ernst, C W.
Afiliação
  • Corbett RJ; Genetics & Genome Sciences Graduate Program, Michigan State University, East Lansing, MI 48824, USA.
  • Ford LM; Genetics & Genome Sciences Graduate Program, Michigan State University, East Lansing, MI 48824, USA.
  • Raney NE; Department of Animal Science, Michigan State University, East Lansing, MI 48824, USA.
  • Grabowski JM; Department of Animal Science, Michigan State University, East Lansing, MI 48824, USA.
  • Ernst CW; Department of Animal Science, Michigan State University, East Lansing, MI 48824, USA.
Genome ; 66(4): 68-79, 2023 Apr 01.
Article em En | MEDLINE | ID: mdl-36876850
ABSTRACT
Fetal myogenesis represents a critical period of porcine skeletal muscle development and requires coordinated expression of thousands of genes. Epigenetic mechanisms, including DNA methylation, drive transcriptional regulation during development; however, these processes are understudied in developing porcine tissues. We performed bisulfite sequencing to assess DNA methylation in pig longissimus dorsi muscle at 41- and 70-days gestation (dg), as well as RNA- and small RNA-sequencing to identify coordinated changes in methylation and expression between myogenic stages. We identified 45 739 differentially methylated regions (DMRs) between stages, and the majority (N = 34 232) were hypomethylated at 70 versus 41 dg. Integration of methylation and transcriptomic data revealed strong associations between differential gene methylation and expression. Differential miRNA methylation was significantly negatively correlated with abundance, and dynamic expression of assayed miRNAs persisted postnatally. Motif analysis revealed significant enrichment of myogenic regulatory factor motifs among hypomethylated regions, suggesting that DNA hypomethylation may function to increase accessibility of muscle-specific transcription factors. We show that developmental DMRs are enriched for GWAS SNPs for muscle- and meat-related traits, demonstrating the potential for epigenetic processes to influence phenotypic diversity. Our results enhance understanding of DNA methylation dynamics of porcine myogenesis and reveal putative cis-regulatory elements governed by epigenetic processes.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Metilação de DNA / MicroRNAs Idioma: En Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Estados Unidos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Metilação de DNA / MicroRNAs Idioma: En Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Estados Unidos