Mineral Nutrition Research Division, Institute of Animal Sciences, Chinese Academy of Agricultural Sciences, Beijing, 100193, China.
Sci Rep. 2017 Jul 13;7(1):5278. doi: 10.1038/s41598-017-05702-5.
Fat deposition of beef cattle varies between breeds. However, the regulation mechanism is still not elucidated completely at molecular level. In the present study, we comparatively analyzed transcriptome of subcutaneous adipose tissue between Wagyu and Holstein cattle with a significant difference in fat deposition to identify key genes associated with fat metabolism and adipogenesis by high-throughput RNA-seq technology. A total of 59,149,852 and 69,947,982 high quality reads were generated, respectively. With further analysis, 662 differentially expressed genes were identified. Gene Ontology and KEGG pathway analysis revealed that many differentially expressed genes were enriched in several biological processes and pathways relevant to adipogenesis and lipid metabolism, in which PPAR and fatty acid metabolism signaling pathways with related genes such as PPARγ, PLIN2 and ELOVL6 et al. play a critical role. Protein-protein interaction network analysis showed EGR1, FOS, SERPINE1, AGT, MMP2 may have great impact on adipocyte differentiation and adipogenesis. Moreover, potential alternative splicing events and single nucleotide polymorphisms (SNPs) were also identified. In summary, we comprehensively analyzed and discussed the transcriptome of subcutaneous adipose tissue of Wagyu and Holstein cattle, which might provide a theoretical basis for better understanding molecular mechanism of fat metabolism and deposition in beef cattle.
牛的脂肪沉积在不同品种之间存在差异。然而,在分子水平上,其调控机制仍不完全清楚。本研究通过高通量 RNA-seq 技术,比较分析了脂肪沉积存在显著差异的和牛与荷斯坦牛皮下脂肪组织的转录组,以鉴定与脂肪代谢和脂肪生成相关的关键基因。分别产生了总计 59,149,852 和 69,947,982 条高质量读数。进一步分析发现,有 662 个差异表达基因。GO 注释和 KEGG 通路分析表明,许多差异表达基因富集在与脂肪生成和脂质代谢相关的几个生物学过程和途径中,其中与相关基因如 PPARγ、PLIN2 和 ELOVL6 等有关的 PPAR 和脂肪酸代谢信号通路发挥着关键作用。蛋白质-蛋白质相互作用网络分析表明,EGR1、FOS、SERPINE1、AGT、MMP2 可能对脂肪细胞分化和脂肪生成有重大影响。此外,还鉴定了潜在的选择性剪接事件和单核苷酸多态性(SNP)。总之,我们全面分析和讨论了和牛与荷斯坦牛皮下脂肪组织的转录组,这可能为更好地理解肉牛脂肪代谢和沉积的分子机制提供理论依据。