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首页> 外文期刊>BMC Genomics >Identification of the molecular regulation of differences in lipid deposition in dedifferentiated preadipocytes from different chicken tissues
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Identification of the molecular regulation of differences in lipid deposition in dedifferentiated preadipocytes from different chicken tissues

机译:不同鸡肉组织中消化不良前脂肪细胞脂沉积差异分子调控的鉴定

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A body distribution with high intramuscular fat and low abdominal fat is the ideal goal for broiler breeding. Preadipocytes with different origins have differences in terms of metabolism and gene expression. The transcriptome analysis performed in this study of intramuscular preadipocytes (DIMFPs) and adipose tissue-derived preadipocytes (DAFPs) aimed to explore the characteristics of lipid deposition in different chicken preadipocytes by dedifferentiation in vitro. Compared with DAFPs, the total lipid content in DIMFPs was reduced (P??0.05). Moreover, 72 DEGs related to lipid metabolism were screened, which were involved in adipocyte differentiation, fatty acid transport and fatty acid synthesis, lipid stabilization, and lipolysis. Among the 72 DEGs, 19 DEGs were enriched in the PPAR signaling pathway, indicating its main contribution to the regulation of the difference in lipid deposition between DAFPs and DIMFPs. Among these 19 genes, the representative APOA1, ADIPOQ, FABP3, FABP4, FABP7, HMGCS2, LPL and RXRG genes were downregulated, but the ACSL1, FABP5, PCK2, PDPK1, PPARG, SCD, SCD5, and SLC27A6 genes were upregulated (P??0.05 or P??0.01) in the DIMFPs. In addition, the well-known pathways affecting lipid metabolism (MAPK, TGF-beta and calcium) and the pathways related to cell communication were enriched, which may also contribute to the regulation of lipid deposition. Finally, the regulatory network for the difference in lipid deposition between chicken DAFPs and DIMFPs was proposed based on the above information. Our data suggested a difference in lipid deposition between DIMFPs and DAFPs of chickens in vitro and proposed a molecular regulatory network for the difference in lipid deposition between chicken DAFPs and DIMFPs. The lipid content was significantly increased in DAFPs by the direct mediation of PPAR signaling pathways. These findings provide new insights into the regulation of tissue-specific fat deposition and the optimization of body fat distribution in broilers.
机译:具有高肌内脂肪和低腹部脂肪的身体分布是肉鸡繁殖的理想目标。具有不同起源的前脂肪细胞在代谢和基因表达方面具有差异。在本研究肌内前脂肪细胞(DIMFP)和脂肪组织衍生的前脂肪细胞(Dafps)的研究中进行的转录组分析旨在通过在体外除去不同鸡前脂肪细胞中的脂质沉积的特征。与Dafps相比,DiMFP中的总脂质含量降低(p≤≤0.05)。此外,筛选了与脂质代谢有关的72只患者,其参与脂肪细胞分化,脂肪酸输送和脂肪酸合成,脂质稳定性和脂解。在72次DEGS中,在PPAR信号传导途径中富集了19次,表明其对调节DAFP和DIMFP之间的脂质沉积差异的主要贡献。在这些19基因中,下调代表性ApoA1,AdipoQ,Fabp3,Fabp4,Fabp7,HMGCS2,LPL和RXRG基因,但上调ACSL1,FABP5,PCK2,PDPK1,PPARG,SCD,SCD5和SLC27A6基因(P?在DIMFPS中&Δ05或p≤0.05或p≤0.05或p。此外,富集了影响脂质代谢(MAPK,TGF-BETA和钙)和与细胞通信相关的途径的公知途径富集,这也可能有助于对脂质沉积的调节。最后,基于上述信息提出了鸡Dafps和DIMFP之间脂质沉积差异的调节网络。我们的数据表明,体外鸡的DIMFP和Dafps之间的脂质沉积差异,提出了鸡Dafps和DiMFP之间的脂质沉积差异的分子调节网络。通过PPAR信号传导途径的直接调解,DAFPS在DAFP中显着增加了脂质含量。这些调查结果为组织特异性脂肪沉积和肉鸡体脂肪分布的优化提供了新的见解。

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