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Analysis of Transcriptome and miRNAome in the Muscle of Bamei Pigs at Different Developmental Stages

SIMPLE SUMMARY: The pigs is the most popular agricultural animal in the world. Muscle growth—which has the highest economic value in pigs—can be regulated by multiple genes and involves complex regulatory mechanisms. It is necessary to understand the dynamics of muscle transcriptome during developme...

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Autores principales: Wu, Guofang, Ma, Lin, Wang, Lei, Zhou, Jiping, Ma, Yuhong, Yang, Chen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7401622/
https://www.ncbi.nlm.nih.gov/pubmed/32679676
http://dx.doi.org/10.3390/ani10071198
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author Wu, Guofang
Ma, Lin
Wang, Lei
Zhou, Jiping
Ma, Yuhong
Yang, Chen
author_facet Wu, Guofang
Ma, Lin
Wang, Lei
Zhou, Jiping
Ma, Yuhong
Yang, Chen
author_sort Wu, Guofang
collection PubMed
description SIMPLE SUMMARY: The pigs is the most popular agricultural animal in the world. Muscle growth—which has the highest economic value in pigs—can be regulated by multiple genes and involves complex regulatory mechanisms. It is necessary to understand the dynamics of muscle transcriptome during development to understand the muscle development mechanism. However, the genes and miRNAs that play regulatory roles underlying differences in the meat quality of pigs remain unclear. In the current study, qRT-PCR, miRNA-Seq, and RNA-Seq were applied to analyze and verify muscle tissues of pigs from three different developmental stages and screened genes, miRNAs and pathways related to pig muscle development. This study focused on analyzing the mechanisms of muscle development and uncover the development differences in muscle from embryo to adult. ABSTRACT: The growth of skeletal muscle involves complex developmental processes that play an important part in the determinization of pork quality. The investigation of skeletal muscle mRNA or miRNA profiles is especially important for finding molecular approaches to improve meat quality in pig breeding. Therefore, we studied the transcriptome (mRNA and miRNA) profiles of skeletal muscle with RNA-Seq in three developmental stages of pigs: 65-day embryonic (E65), postnatal 0 days (natal) and 10 months (adult). We found 10,035, 9050 and 4841 differentially expressed (DE) genes for natal vs. E65, adult vs. E65 and adult vs. natal, 55, 101 and 85 DE miRNA for natal vs. E65, adult vs. E65 and adult vs. natal, respectively. In addition, the target genes of DE miRNA that was in a negative correlation with the corresponding miRNA in the same comparison group were selected for enrichment analysis. Gene Ontology terms were mainly classified into developmental processes. Pathway analysis revealed enrichment in the Rap1 signaling pathway, citrate cycle and oxidative phosphorylation and carbon. Finally, RT-PCR was employed for validating the level of expression of 11 DE miRNA and 14 DEGs. The transcriptome profiles of skeletal muscle from the different developmental stages of the Bamei pigs were obtained. From these data, hundreds of DE miRNA and mRNA, and the miRNA–mRNA regulatory network can provide valuable insights into further understanding of key molecular mechanisms and improving the meat quality in pig breeding.
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spelling pubmed-74016222020-08-07 Analysis of Transcriptome and miRNAome in the Muscle of Bamei Pigs at Different Developmental Stages Wu, Guofang Ma, Lin Wang, Lei Zhou, Jiping Ma, Yuhong Yang, Chen Animals (Basel) Communication SIMPLE SUMMARY: The pigs is the most popular agricultural animal in the world. Muscle growth—which has the highest economic value in pigs—can be regulated by multiple genes and involves complex regulatory mechanisms. It is necessary to understand the dynamics of muscle transcriptome during development to understand the muscle development mechanism. However, the genes and miRNAs that play regulatory roles underlying differences in the meat quality of pigs remain unclear. In the current study, qRT-PCR, miRNA-Seq, and RNA-Seq were applied to analyze and verify muscle tissues of pigs from three different developmental stages and screened genes, miRNAs and pathways related to pig muscle development. This study focused on analyzing the mechanisms of muscle development and uncover the development differences in muscle from embryo to adult. ABSTRACT: The growth of skeletal muscle involves complex developmental processes that play an important part in the determinization of pork quality. The investigation of skeletal muscle mRNA or miRNA profiles is especially important for finding molecular approaches to improve meat quality in pig breeding. Therefore, we studied the transcriptome (mRNA and miRNA) profiles of skeletal muscle with RNA-Seq in three developmental stages of pigs: 65-day embryonic (E65), postnatal 0 days (natal) and 10 months (adult). We found 10,035, 9050 and 4841 differentially expressed (DE) genes for natal vs. E65, adult vs. E65 and adult vs. natal, 55, 101 and 85 DE miRNA for natal vs. E65, adult vs. E65 and adult vs. natal, respectively. In addition, the target genes of DE miRNA that was in a negative correlation with the corresponding miRNA in the same comparison group were selected for enrichment analysis. Gene Ontology terms were mainly classified into developmental processes. Pathway analysis revealed enrichment in the Rap1 signaling pathway, citrate cycle and oxidative phosphorylation and carbon. Finally, RT-PCR was employed for validating the level of expression of 11 DE miRNA and 14 DEGs. The transcriptome profiles of skeletal muscle from the different developmental stages of the Bamei pigs were obtained. From these data, hundreds of DE miRNA and mRNA, and the miRNA–mRNA regulatory network can provide valuable insights into further understanding of key molecular mechanisms and improving the meat quality in pig breeding. MDPI 2020-07-15 /pmc/articles/PMC7401622/ /pubmed/32679676 http://dx.doi.org/10.3390/ani10071198 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Communication
Wu, Guofang
Ma, Lin
Wang, Lei
Zhou, Jiping
Ma, Yuhong
Yang, Chen
Analysis of Transcriptome and miRNAome in the Muscle of Bamei Pigs at Different Developmental Stages
title Analysis of Transcriptome and miRNAome in the Muscle of Bamei Pigs at Different Developmental Stages
title_full Analysis of Transcriptome and miRNAome in the Muscle of Bamei Pigs at Different Developmental Stages
title_fullStr Analysis of Transcriptome and miRNAome in the Muscle of Bamei Pigs at Different Developmental Stages
title_full_unstemmed Analysis of Transcriptome and miRNAome in the Muscle of Bamei Pigs at Different Developmental Stages
title_short Analysis of Transcriptome and miRNAome in the Muscle of Bamei Pigs at Different Developmental Stages
title_sort analysis of transcriptome and mirnaome in the muscle of bamei pigs at different developmental stages
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7401622/
https://www.ncbi.nlm.nih.gov/pubmed/32679676
http://dx.doi.org/10.3390/ani10071198
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