4.7 Article

Transcriptome Analysis of Differentially Expressed mRNA Related to Pigeon Muscle Development

Journal

ANIMALS
Volume 11, Issue 8, Pages -

Publisher

MDPI
DOI: 10.3390/ani11082311

Keywords

pigeon; skeletal muscle; development and growth; WGCNA; transcriptomics

Funding

  1. Priority Academic Program Development of Jiangsu Higher Education Institutions
  2. China Agriculture Research System of MOF and MARA [CARS-41]
  3. Natural Science Foundation of Jiangsu Province [BK20180909]
  4. Project of Natural Science Research in College and University of Jiangsu Province [18KJB230006]
  5. Natural Science Foundation of Yangzhou City [YZ2018096]
  6. Yangzhou University Science and Technique Innovation Foundation [2019CXJ168]

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The study utilized RNA sequencing to explore gene expression in pigeon skeletal muscle development, identifying differentially expressed genes across different developmental stages. Weighted gene co-expression network analysis (WGCNA) revealed gene modules correlated with pigeon muscle growth and embryonic development, providing insights into the molecular mechanisms. A KEGG pathway analysis highlighted pathways involved in pigeon skeletal muscle growth and development, with selected genes validated by qRT-PCR. This research enhances understanding of gene expression and regulation in pigeon muscle development.
Simple Summary The growth and development of skeletal muscle determine the meat production performance of pigeons and are regulated by complex gene networks. To explore the genes involved in regulating the growth and development of pigeon skeletal muscle, RNA sequencing (RNA-seq) was used to characterise gene expression profiles during the development and growth of pigeon breast muscle and identify differentially expressed genes (DEGs) among different stages. This study expanded the diversity of pigeon mRNA, and it was helpful to understand the role of mRNA in pigeon muscle development and growth. The mechanisms behind the gene expression and regulation that modulate the development and growth of pigeon skeletal muscle remain largely unknown. In this study, we performed gene expression analysis on skeletal muscle samples at different developmental and growth stages using RNA sequencing (RNA-Seq). The differentially expressed genes (DEGs) were identified using edgeR software. Weighted gene co-expression network analysis (WGCNA) was used to identify the gene modules related to the growth and development of pigeon skeletal muscle based on DEGs. A total of 11,311 DEGs were identified. WGCNA aggregated 11,311 DEGs into 12 modules. Black and brown modules were significantly correlated with the 1st and 10th day of skeletal muscle growth, while turquoise and cyan modules were significantly correlated with the 8th and 13th days of skeletal muscle embryonic development. Four mRNA-mRNA regulatory networks corresponding to the four significant modules were constructed and visualised using Cytoscape software. Twenty candidate mRNAs were identified based on their connectivity degrees in the networks, including Abca8b, TCONS-00004461, VWF, OGDH, TGIF1, DKK3, Gfpt1 and RFC5, etc. A KEGG pathway enrichment analysis showed that many pathways were related to the growth and development of pigeon skeletal muscle, including PI3K/AKT/mTOR, AMPK, FAK, and thyroid hormone pathways. Five differentially expressed genes (LAST2, MYPN, DKK3, B4GALT6 and OGDH) in the network were selected, and their expression patterns were quantified by qRT-PCR. The results were consistent with our sequencing results. These findings could enhance our understanding of the gene expression and regulation in the development and growth of pigeon muscle.

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