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首页> 外文期刊>SIAM journal on applied dynamical systems >The influence of adiponectin on the transcriptomic profile of porcine luteal cells
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The influence of adiponectin on the transcriptomic profile of porcine luteal cells

机译:脂联素对猪肺细胞转录组剖面的影响

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摘要

Reproductive functions are closely related to nutritional status. Recent studies suggest that adiponectin may be a hormonal link between them. Adiponectin is an adipocytokine, abundantly expressed in adipose tissues. It plays a dominant role in lipid and carbohydrate metabolism by stimulating fatty acid oxidation, decreasing plasma triglycerides, and increasing cells' sensitivity to insulin and has direct antiatherosclerotic effects. The hormone is also postulated to play a modulatory role in the regulation of the reproductive system. The aim of this study was to identify differentially expressed genes (DE-genes) in response to adiponectin treatment of porcine luteal ovarian cells. The global expression of genes in the porcine ovary was investigated using the Porcine (V2) Two-color gene expression microarray, 4 x 44 (Agilent, USA). Analysis of the microarray data showed that 701 genes were differentially expressed and 389 genes showed a fold change greater than 1.2 (p < 0.05). Among this number, 186 genes were up-regulated and 203 were down-regulated. The list of DE-genes was used for gene ontology analyses. The biological process list was generated from up-regulated and down-regulated DE-genes. We found that up-regulated products of DE-genes take part in 30 biological processes and down-regulated products in 9. Analysis of the interaction network among DE-genes showed that adiponectin interacts with genes involved in important processes in luteal cells. These results provide a basis for future work describing the detailed interactions and relationships explaining local regulation of adiponectin actions in the ovary of pigs.
机译:生殖功能与营养状况密切相关。最近的研究表明,脂联素可能是它们之间的荷尔蒙连接。脂联素是一种脂肪蛋白,在脂肪组织中大量表达。它通过刺激脂肪酸氧化,降低血浆甘油三酯和增加细胞对胰岛素的敏感性并具有直接的抗炎症效应,在脂质和碳水化合物代谢中起显着作用。激素也被假设在生殖系统的调节中发挥调制作用。本研究的目的是鉴定鉴别差异表达的基因(De-基因)响应脂肪蛋白卵巢细胞的脂联素治疗。使用猪(V2)双色基因表达微阵列,4×44(Agilent,USA)研究了猪卵巢中基因的全局表达。微阵列数据的分析表明,701个基因差异表达,389个基因显示倍数大于1.2(P <0.05)。在该数量中,上调186个基因,下调203个基因。去基因列表用于基因本体学分析。生物学过程列表是从上调和下调的去调节的去序的脱谷物产生的。我们发现脱谷物的上调产物参加了30个生物学过程和9.脱离基因之间的相互作用网络的分析表明,脂联素与患有损伤细胞重要过程中涉及的基因相互作用。这些结果为未来的工作提供了描述详细的相互作用和关系,以解释猪卵巢中脂联素作用的局部调节。

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