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首页> 外文期刊>BMC Genomics >Integrative analysis of circRNAs, miRNAs, and mRNAs profiles to reveal ceRNAs networks in chicken intramuscular and abdominal adipogenesis
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Integrative analysis of circRNAs, miRNAs, and mRNAs profiles to reveal ceRNAs networks in chicken intramuscular and abdominal adipogenesis

机译:Circrnas,MiRNA和MRNA型材的综合分析,揭示鸡肌肉内腹部患者的Cernas网络

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Tissue-specific fat deposition is regulated by a series of complex regulatory mechanisms. Reports indicate that epigenetic regulators, such as circular RNAs (circRNAs), are crucial in diseases progression, animal development, metabolism, and adipogenesis. In this study, to assess the functional roles of circRNAs in adipogenesis and tissue-specific fat deposition, we comprehensively analyzed the Ribo-Zero RNA-Seq and miRNAs data during chicken intramuscular and abdominal adipogenic differentiation. circRNAs and miRNAs profiles during chicken adipogenic differentiation were found in adipocytes derived from various adipose tissues. It was also discovered that high levels of downregulated miRNAs potentially promote adipogenesis by activating their target genes which are associated with fatty acid metabolism and adipogenic differentiation. Through analysis of the correlation between the expression levels of circRNAs and adipogenic genes, as well as the dynamic expression patterns of circRNAs during adipogenic differentiation, several candidate circRNAs were identified. Moreover, competing endogenous RNA (ceRNAs) networks were constructed during chicken intramuscular and abdominal adipogenesis by combining miRNAs with mRNAs data. Several candidate circRNAs potentially influence adipogenesis by regulating miRNAs via PPAR and fatty acid metabolism-related pathways were identified, such as circLCLAT1, circFNDC3AL, circCLEC19A and circARMH1. In conclusion, our findings reveal that circRNAs and the circRNA-miRNAs-mRNAs-ceRNAs network may play important roles in chicken adipocytes differentiation and tissue-specific fat deposition.
机译:组织特异性脂肪沉积由一系列复杂的调节机制调节。报告表明,表观遗传调节剂,如圆形RNA(Circrna),对疾病进展,动物发育,新陈代谢和脂肪发生至关重要。在这项研究中,评估CircRNA在脂肪发生和组织特异性脂肪沉积中的功能作用,我们在鸡肌肉内和腹部脂肪发生分化期间全面分析了核糖零RNA-SEQ和MIRNA数据。在衍生自各种脂肪组织的脂肪细胞中发现Circrnas和MiRNA型曲线。还发现,通过激活与脂肪酸代谢和脂肪生成分化相关的靶基因,高水平的下调的miRNA可能促进脂肪生成。通过分析CircrNA和脂肪基因的表达水平与脂肪分化期间Circrnas的动态表达模式,鉴定了几个候选芯片。此外,通过将miRNA与MRNA数据组合,在鸡肌内和腹部脂肪发生期间构建竞争内源性RNA(CERNAS)网络。通过PPAR和脂肪酸代谢相关途径调节miRNA,几种候选Circrnas潜在地影响脂肪发生,例如Circlclat1,Circfndc3al,Circlec19a和Circarmh1。总之,我们的研究结果表明,Circrnas和Circrna-MiRNA-MRNA-Cernas网络可能在鸡脂肪细胞分化和组织特异性脂肪沉积中发挥重要作用。

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