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首页> 外文期刊>Journal of Agricultural Science >RNA-Seq Reveals Differentially Expressed Genes and Pathways Affecting Intramuscular Fat Metabolism in Huangshan Black Chicken Population
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RNA-Seq Reveals Differentially Expressed Genes and Pathways Affecting Intramuscular Fat Metabolism in Huangshan Black Chicken Population

机译:RNA-SEQ揭示了影响黄山黑鸡群肌内脂肪代谢的差异表达基因和途径

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Intramuscular fat (IMF) plays an important role in meat quality due to its positive correlation with juiciness, tenderness, and flavor. However, for chickens, the molecular mechanisms underlying IMF deposition in thigh muscle have not yet been determined. Here, to identify candidate genes and signaling pathways related to IMF deposition, we deeply explored the chicken transcriptome from thigh muscles of Huangshan Black Chickens with extremely high and low phenotypic values for intramuscular fat content. A total of 128 genes differentially expressed genes (DEGs) were detected, of which 94 were up-regulated and 34 were down-regulated. Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathways revealed these DEGs (including FABP4, G0S2, PLIN1, SCD1, LFABP, SLC1A6, SLC45A3, ACSBG1, LY86, ST8SIA5, SNAI2, HPGD, EDN2, and THRSP) were significantly enriched in lipid biosynthetic process, steroid biosynthetic and metabolic process, fatty acid metabolic process, and regulation of unsaturated fatty acid metabolic pathways. Additionally, we concluded an interaction network related to lipid metabolism, which might be contributed to the IMF deposition in chicken. Overall, we proposed some new candidate genes and interaction networks that can be associated with IMF deposition and used as biomarkers in meat quality improvement.
机译:由于其与脂肪,柔软和味道的正相关性,肌内脂肪(IMF)在肉质中起着重要作用。然而,对于鸡来说,尚未确定在大腿肌肉中的IMF沉积的分子机制。这里,为了鉴定与IMF沉积相关的候选基因和信号传导途径,我们深入从黄山黑鸡的大腿肌肉中探索了鸡肉转录组,具有极高且低的表型对肌内脂肪含量的表型值。检测到总共128个基因差异表达基因(DEG),其中94个被上调,34个被测调节。基因本体(GO)和京都基因和基因组(KEGG)途径(GEGG)途径揭示了这些次数(包括FABP4,GOS2,PLIN1,SCD1,LFABP,SLC1A6,SLC45A3,ACSBG1,LY86,ST8SIA5,SNAI2,HPGD,EDN2和THRSP)在脂质生物合成过程中显着富集,类固醇生物合成和代谢过程,脂肪酸代谢过程和不饱和脂肪酸代谢途径的调节。此外,我们结束了与脂质代谢相关的相互作用网络,这可能导致鸡肉中的IMF沉积。总体而言,我们提出了一些新的候选基因和相互作用网络,可以与IMF沉积相关,并用作肉质改善的生物标志物。

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