Cargando…

Transcriptional states and chromatin accessibility during bovine myoblasts proliferation and myogenic differentiation

OBJECTIVES: Although major advances have been made in bovine epigenome study, the epigenetic basis for fetal skeletal muscle development still remains poorly understood. The aim is to recapitulated the time course of fetal skeletal muscle development in vitro, and explore the dynamic changes of chro...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Qian, Wang, Yahui, Hu, Xin, Zhang, Yapeng, Li, Hongwei, Zhang, Qi, Cai, Wentao, Wang, Zezhao, Zhu, Bo, Xu, Lingyang, Gao, Xue, Chen, Yan, Gao, Huijiang, Li, Junya, Zhang, Lupei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9136495/
https://www.ncbi.nlm.nih.gov/pubmed/35362202
http://dx.doi.org/10.1111/cpr.13219
_version_ 1784714194543706112
author Li, Qian
Wang, Yahui
Hu, Xin
Zhang, Yapeng
Li, Hongwei
Zhang, Qi
Cai, Wentao
Wang, Zezhao
Zhu, Bo
Xu, Lingyang
Gao, Xue
Chen, Yan
Gao, Huijiang
Li, Junya
Zhang, Lupei
author_facet Li, Qian
Wang, Yahui
Hu, Xin
Zhang, Yapeng
Li, Hongwei
Zhang, Qi
Cai, Wentao
Wang, Zezhao
Zhu, Bo
Xu, Lingyang
Gao, Xue
Chen, Yan
Gao, Huijiang
Li, Junya
Zhang, Lupei
author_sort Li, Qian
collection PubMed
description OBJECTIVES: Although major advances have been made in bovine epigenome study, the epigenetic basis for fetal skeletal muscle development still remains poorly understood. The aim is to recapitulated the time course of fetal skeletal muscle development in vitro, and explore the dynamic changes of chromatin accessibility and gene expression during bovine myoblasts proliferation and differentiation. METHODS: PDGFR‐ cells were isolated from bovine fetal skeletal muscle, then cultured and induced myogenic differentiation in vitro in a time‐course study (P, D0, D2,and D4). The assay for transposase‐accessible chromatin sequencing (ATAC‐seq) and RNA sequencing (RNA‐seq) were performed. RESULTS: Among the enriched transcriptional factors with high variability, we determined the effects of MAFF, ZNF384, and KLF6 in myogenesis using RNA interference (RNAi). In addition, we identified both stage‐specific genes and chromatin accessibility regions to reveal the sequential order of gene expression, transcriptional regulatory, and signal pathways involved in bovine skeletal muscle development. Further investigation integrating chromatin accessibility and transcriptome data was conducted to explore cis‐regulatory regions in line with gene expression. Moreover, we combined bovine GWAS results of growth traits with regulatory regions defined by chromatin accessibility, providing a suggestive means for a more precise annotation of genetic variants of bovine growth traits. CONCLUSION: Overall, these findings provide valuable information for understanding the stepwise regulatory mechanisms in skeletal muscle development and conducting beef cattle genetic improvement programs.
format Online
Article
Text
id pubmed-9136495
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-91364952022-06-04 Transcriptional states and chromatin accessibility during bovine myoblasts proliferation and myogenic differentiation Li, Qian Wang, Yahui Hu, Xin Zhang, Yapeng Li, Hongwei Zhang, Qi Cai, Wentao Wang, Zezhao Zhu, Bo Xu, Lingyang Gao, Xue Chen, Yan Gao, Huijiang Li, Junya Zhang, Lupei Cell Prolif Original Articles OBJECTIVES: Although major advances have been made in bovine epigenome study, the epigenetic basis for fetal skeletal muscle development still remains poorly understood. The aim is to recapitulated the time course of fetal skeletal muscle development in vitro, and explore the dynamic changes of chromatin accessibility and gene expression during bovine myoblasts proliferation and differentiation. METHODS: PDGFR‐ cells were isolated from bovine fetal skeletal muscle, then cultured and induced myogenic differentiation in vitro in a time‐course study (P, D0, D2,and D4). The assay for transposase‐accessible chromatin sequencing (ATAC‐seq) and RNA sequencing (RNA‐seq) were performed. RESULTS: Among the enriched transcriptional factors with high variability, we determined the effects of MAFF, ZNF384, and KLF6 in myogenesis using RNA interference (RNAi). In addition, we identified both stage‐specific genes and chromatin accessibility regions to reveal the sequential order of gene expression, transcriptional regulatory, and signal pathways involved in bovine skeletal muscle development. Further investigation integrating chromatin accessibility and transcriptome data was conducted to explore cis‐regulatory regions in line with gene expression. Moreover, we combined bovine GWAS results of growth traits with regulatory regions defined by chromatin accessibility, providing a suggestive means for a more precise annotation of genetic variants of bovine growth traits. CONCLUSION: Overall, these findings provide valuable information for understanding the stepwise regulatory mechanisms in skeletal muscle development and conducting beef cattle genetic improvement programs. John Wiley and Sons Inc. 2022-04-01 /pmc/articles/PMC9136495/ /pubmed/35362202 http://dx.doi.org/10.1111/cpr.13219 Text en © 2022 The Authors. Cell Proliferation published by John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Li, Qian
Wang, Yahui
Hu, Xin
Zhang, Yapeng
Li, Hongwei
Zhang, Qi
Cai, Wentao
Wang, Zezhao
Zhu, Bo
Xu, Lingyang
Gao, Xue
Chen, Yan
Gao, Huijiang
Li, Junya
Zhang, Lupei
Transcriptional states and chromatin accessibility during bovine myoblasts proliferation and myogenic differentiation
title Transcriptional states and chromatin accessibility during bovine myoblasts proliferation and myogenic differentiation
title_full Transcriptional states and chromatin accessibility during bovine myoblasts proliferation and myogenic differentiation
title_fullStr Transcriptional states and chromatin accessibility during bovine myoblasts proliferation and myogenic differentiation
title_full_unstemmed Transcriptional states and chromatin accessibility during bovine myoblasts proliferation and myogenic differentiation
title_short Transcriptional states and chromatin accessibility during bovine myoblasts proliferation and myogenic differentiation
title_sort transcriptional states and chromatin accessibility during bovine myoblasts proliferation and myogenic differentiation
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9136495/
https://www.ncbi.nlm.nih.gov/pubmed/35362202
http://dx.doi.org/10.1111/cpr.13219
work_keys_str_mv AT liqian transcriptionalstatesandchromatinaccessibilityduringbovinemyoblastsproliferationandmyogenicdifferentiation
AT wangyahui transcriptionalstatesandchromatinaccessibilityduringbovinemyoblastsproliferationandmyogenicdifferentiation
AT huxin transcriptionalstatesandchromatinaccessibilityduringbovinemyoblastsproliferationandmyogenicdifferentiation
AT zhangyapeng transcriptionalstatesandchromatinaccessibilityduringbovinemyoblastsproliferationandmyogenicdifferentiation
AT lihongwei transcriptionalstatesandchromatinaccessibilityduringbovinemyoblastsproliferationandmyogenicdifferentiation
AT zhangqi transcriptionalstatesandchromatinaccessibilityduringbovinemyoblastsproliferationandmyogenicdifferentiation
AT caiwentao transcriptionalstatesandchromatinaccessibilityduringbovinemyoblastsproliferationandmyogenicdifferentiation
AT wangzezhao transcriptionalstatesandchromatinaccessibilityduringbovinemyoblastsproliferationandmyogenicdifferentiation
AT zhubo transcriptionalstatesandchromatinaccessibilityduringbovinemyoblastsproliferationandmyogenicdifferentiation
AT xulingyang transcriptionalstatesandchromatinaccessibilityduringbovinemyoblastsproliferationandmyogenicdifferentiation
AT gaoxue transcriptionalstatesandchromatinaccessibilityduringbovinemyoblastsproliferationandmyogenicdifferentiation
AT chenyan transcriptionalstatesandchromatinaccessibilityduringbovinemyoblastsproliferationandmyogenicdifferentiation
AT gaohuijiang transcriptionalstatesandchromatinaccessibilityduringbovinemyoblastsproliferationandmyogenicdifferentiation
AT lijunya transcriptionalstatesandchromatinaccessibilityduringbovinemyoblastsproliferationandmyogenicdifferentiation
AT zhanglupei transcriptionalstatesandchromatinaccessibilityduringbovinemyoblastsproliferationandmyogenicdifferentiation