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首页> 外文期刊>BMC Genomics >Transcriptome profile of liver at different physiological stages reveals potential mode for lipid metabolism in laying hens
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Transcriptome profile of liver at different physiological stages reveals potential mode for lipid metabolism in laying hens

机译:肝脏在不同生理阶段的转录组谱揭示了蛋鸡脂质代谢的潜在模式

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Liver is an important metabolic organ that plays a critical role in lipid synthesis, degradation, and transport; however, the molecular regulatory mechanisms of lipid metabolism remain unclear in chicken. In this study, RNA-Seq technology was used to investigate differences in expression profiles of hepatic lipid metabolism-related genes and associated pathways between juvenile and laying hens. The study aimed to broaden the understanding of liver lipid metabolism in chicken, and thereby to help improve laying performance in the poultry industry. RNA-Seq analysis was carried out on total RNA harvested from the liver of juvenile (n?=?3) and laying (n?=?3) hens. Compared with juvenile hens, 2567 differentially expressed genes (1082 up-regulated and 1485 down-regulated) with P?≤?0.05 were obtained in laying hens, and 960 of these genes were significantly differentially expressed (SDE) at a false discovery rate (FDR) of ≤0.05 and fold-change ≥2 or ≤0.5. In addition, most of the 198 SDE novel genes (91 up-regulated and 107 down-regulated) were discovered highly expressed, and 332 SDE isoforms were identified. Gene ontology (GO) enrichment and KEGG (Kyoto Encyclopedia of Genes and Genomes) pathway analysis showed that the SDE genes were most enrichment in steroid biosynthesis, PPAR signaling pathway, biosynthesis of unsaturated fatty acids, glycerophospholipid metabolism, three amino acid pathways, and pyruvate metabolism (P?≤?0.05). The top significantly enriched GO terms among the SDE genes included lipid biosynthesis, cholesterol and sterol metabolic, and oxidation reduction, indicating that principal lipogenesis occurred in the liver of laying hens. This study suggests that the majority of changes at the transcriptome level in laying hen liver were closely related to fat metabolism. Some of the SDE uncharacterized novel genes and alternative splicing isoforms that were detected might also take part in lipid metabolism, although this needs further investigation. This study provides valuable information about the expression profiles of mRNAs from chicken liver, and in-depth functional investigations of these mRNAs could provide new insights into the molecular networks of lipid metabolism in chicken liver.
机译:肝脏是重要的代谢器官,在脂质合成,降解和运输中起着至关重要的作用。然而,在鸡中脂质代谢的分子调控机制仍不清楚。在这项研究中,RNA-Seq技术用于研究肝脂质代谢相关基因的表达谱差异以及幼鸡和蛋鸡之间的相关途径。该研究旨在拓宽对鸡肝脏脂质代谢的了解,从而帮助提高家禽业的产蛋性能。对从幼年(n = 3)和产蛋(n = 3)母鸡肝脏中收集的总RNA进行RNA-Seq分析。与未成年母鸡相比,在蛋鸡中获得了2567个差异表达基因(1082个上调和1485个下调),P≤≤0.05,其中960个基因以错误发现率显着差异表达(SDE)( FDR)≤0.05,倍数变化≥2或≤0.5。另外,发现198个SDE新基因中的大多数(91个上调和107个下调)被高度表达,并鉴定出332个SDE同工型。基因本体论(GO)富集和KEGG(京都基因与基因组百科全书)途径分析表明,SDE基因在类固醇生物合成,PPAR信号传导途径,不饱和脂肪酸的生物合成,甘油磷脂代谢,三个氨基酸途径和丙酮酸中最富集代谢(P≤≤0.05)。在SDE基因中,最丰富的GO术语包括脂质生物合成,胆固醇和固醇代谢以及氧化还原,表明主要的脂肪生成发生在蛋鸡的肝脏中。这项研究表明,蛋鸡肝脏转录组水平的大多数变化与脂肪代谢密切相关。一些SDE未表征的新基因和其他剪接同工型也可能参与脂质代谢,尽管这需要进一步研究。这项研究提供了有关鸡肝中mRNA表达谱的有价值的信息,对这些mRNA的深入功能研究可以为鸡肝脂质代谢的分子网络提供新的见解。

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