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Integrative analysis of transcriptomic data related to the liver of laying hens: from physiological basics to newly identified functions

机译:与母鸡肝脏肝脏转录组数据的综合分析:从生理基础到新识别的功能

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BACKGROUND:At sexual maturity, the liver of laying hens undergoes many metabolic changes to support vitellogenesis. In published transcriptomic approaches, hundreds of genes were reported to be overexpressed in laying hens and functional gene annotation using gene ontology tools have essentially revealed an enrichment in lipid and protein metabolisms. We reanalyzed some data from a previously published article comparing 38-week old versus 10-week old hens to give a more integrative view of the functions stimulated in the liver at sexual maturity and to move beyond current physiological knowledge. Functions were defined based on information available in Uniprot database and published literature.RESULTS:Of the 516 genes previously shown to be overexpressed in the liver of laying hens, 475 were intracellular (1.23-50.72 fold changes), while only 36 were predicted to be secreted (1.35-66.93 fold changes) and 5 had no related information on their cellular location. Besides lipogenesis and protein metabolism, we demonstrated that the liver of laying hens overexpresses several clock genes (which supports the circadian control of liver metabolic functions) and was likely to be involved in a liver/brain/liver circuit (neurotransmitter transport), in thyroid and steroid hormones metabolisms. Many genes were associated with anatomical structure development, organ homeostasis but also regulation of blood pressure. As expected, several secreted proteins are incorporated in yolky follicles but we also evidenced that some proteins are likely participating in fertilization (ZP1, MFGE8, LINC00954, OVOCH1) and in thyroid hormone maturation (CPQ). We also proposed that secreted proteins (PHOSPHO1, FGF23, BMP7 but also vitamin-binding proteins) may contribute to the development of peripheral organs including the formation of medullar bones to provide labile calcium for eggshell formation. Thirteen genes are uniquely found in chicken/bird but not in human species, which strengthens that some of these genes may be specifically related to avian reproduction.CONCLUSIONS:This study gives additional hypotheses on some molecular actors and mechanisms that are involved in basic physiological function of the liver at sexual maturity of hen. It also revealed some additional functions that accompany reproductive capacities of laying hens, and that are usually underestimated when using classical gene ontology approaches.
机译:背景:在性成熟时,铺设母鸡的肝脏经历了许多代谢变化,以支持vitellogisesis。在公开的转录组方法中,报告数百个基因在铺设母鸡和使用基因本体工具的功能基因注释中过表达,基本上揭示了脂质和蛋白质代谢的富集。我们重新分析了一篇关于先前发布的文章的一些数据,比较38周龄与10周龄母鸡,以提供更加综合的肝脏在性成熟时刺激的功能,并超越当前的生理知识。基于Uniprot数据库和发表的文献中可用的信息定义了功能。结果:在铺设母鸡的肝脏中之前显示过过表达的516个基因,475个细胞内(1.23-50.72折变化),但预计只有36个分泌(1.35-66.93折变化)和5在其蜂窝位置没有相关信息。除了脂肪生成和蛋白质代谢之外,我们证明婴儿床的肝脏过表达了几种时钟基因(支持肝脏代谢功能的昼夜核心控制),并且可能参与甲状腺中的肝脏/脑/肝电路(神经递质运输)和类固醇激素新陈代谢。许多基因与解剖结构发育有关,器官稳态,但也调节血压。如预期的那样,在YOLKY卵泡中掺入了几种分泌的蛋白质,但我们也证明了一些蛋白质可能参与受精(ZP1,MFGE8,LINC00954,OVOCH1)和甲状腺激素成熟(CPQ)。我们还提出了分泌的蛋白质(磷酸1,FGF23,BMP7,但也是维生素结合蛋白)可能有助于外周器官的发育,包括形成髓质骨骼,为蛋壳形成提供不稳定的钙。 13个基因在鸡/鸟类中唯一发现,但不在人类物种中发现,这加强了这些基因中的一些可能与禽流繁殖有关。结论:该研究给出了一些关于基本生理功能的一些分子作用仪和机制的额外假设母鸡性成熟的肝脏。它还揭示了伴随母鸡的生殖能力的一些额外功能,并且通常在使用典型基因本体方法时低估。

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