Characterization of Chromatin Accessibility in Fetal Bovine Chondrocytes

Author:

Zhang Qi1,Li Qian1,Wang Yahui1,Zhang Yapeng1,Peng Ruiqi1,Wang Zezhao1,Zhu Bo1,Xu Lingyang1ORCID,Gao Xue1,Chen Yan1,Gao Huijiang1,Hu Junwei2,Qian Cong2,Ma Minghao2,Duan Rui2,Li Junya1,Zhang Lupei12ORCID

Affiliation:

1. Key Laboratory of Animal (Poultry) Genetics Breeding and Reproduction, Ministry of Agriculture and Rural Affairs, Institute of Animal Science, Chinese Academy of Agricultural Sciences, Beijing 100193, China

2. Academy of Pingliang Red Cattle, 492 South Ring Road, Kongtong District, Pingliang 744000, China

Abstract

Despite significant advances of the bovine epigenome investigation, new evidence for the epigenetic basis of fetal cartilage development remains lacking. In this study, the chondrocytes were isolated from long bone tissues of bovine fetuses at 90 days. The Assay for Transposase-Accessible Chromatin with high throughput sequencing (ATAC-seq) and transcriptome sequencing (RNA-seq) were used to characterize gene expression and chromatin accessibility profile in bovine chondrocytes. A total of 9686 open chromatin regions in bovine fetal chondrocytes were identified and 45% of the peaks were enriched in the promoter regions. Then, all peaks were annotated to the nearest gene for Gene Ontology (GO) and Kyoto Encylopaedia of Genes and Genomes (KEGG) analysis. Growth and development-related processes such as amide biosynthesis process (GO: 0043604) and translation regulation (GO: 006417) were enriched in the GO analysis. The KEGG analysis enriched endoplasmic reticulum protein processing signal pathway, TGF-β signaling pathway and cell cycle pathway, which are closely related to protein synthesis and processing during cell proliferation. Active transcription factors (TFs) were enriched by ATAC-seq, and were fully verified with gene expression levels obtained by RNA-seq. Among the top50 TFs from footprint analysis, known or potential cartilage development-related transcription factors FOS, FOSL2 and NFY were found. Overall, our data provide a theoretical basis for further determining the regulatory mechanism of cartilage development in bovine.

Funder

National Natural Science Foundation of China

Pingliang Science and Technology Planned Project

Agricultural Science and Technology Innovation Program in the Chinese Academy of Agricultural Sciences

China Agriculture Research System of MOF and MARA, the National Beef Cattle Industrial Technology System

Key R&D project of Ningxia Hui Autonomous Region

Publisher

MDPI AG

Subject

General Veterinary,Animal Science and Zoology

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