Functional differentiation of the ovine preadipocytes —insights from gene expression profiling

被引:0
作者
Zhiyun Hao
Xiayang Jin
Jiqing Wang
Yuzhu Luo
Jiang Hu
Xiu Liu
Shaobin Li
Fangfang Zhao
Mingna Li
机构
[1] Gansu Agricultural University,Gansu Key Laboratory of Herbivorous Animal Biotechnology, College of Animal Science and Technology
[2] Qinghai University,Academy of Animal Science and Veterinary Medicine
来源
Functional & Integrative Genomics | 2023年 / 23卷
关键词
Preadipocytes; Gene expression; RNA-Seq; Differentiation; Sheep;
D O I
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学科分类号
摘要
The preadipocytes differentiation is a vital process of lipogenesis; exploring the molecular mechanisms of lipogenesis contributes to improve the meat quality and final commercial income. Lipogenesis has been widely reported in other livestock, but little is known about the gene expression profiles at different stages during preadipocytes differentiation in sheep. In this study, ovine preadipocytes were cultured in vitro and then induced to begin differentiation. Then, the gene expression profiles of preadipocytes collected on day 0 (D0), day 2 (D2), and day 8 (D8) of differentiation were analyzed by RNA-seq technology. According to the findings, 2254 differentially expressed genes (DEGs) were found in D2 vs D0; 1817 DEGs and 1902 DEGs were found in D8 vs D0 and D8 vs D2, respectively. The DEGs were found to be enriched in several biological processes, including focal adhesion, ECM-receptor interaction, PI3K-Akt signaling pathway, steroid biosynthesis, and MAPK signaling pathway, according to Gene Ontology (GO) enrichment and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis. The regulatory network of the DEGs related to ovine preadipocytes differentiation was systematically constructed, which showed that hub genes might modulate ovine preadipocytes differentiation. In summary, preadipocyte differentiation is regulated by several key genes, including ACACB, CXCL6, SREBF1, INSIG1, APOE, GJA1, CDH11, SYNE1, PCSK1, S100A4, FN1, PLIN2, CXCL6, FN1, PTX3, and FABP3. This study provides a deeper knowledge of the roles of genes in sheep lipogenesis by revealing global gene expression profiles during preadipocyte differentiation.
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