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Identification of Candidate Genes related to Bovine Marbling using Protein-Protein Interaction Networks

机译:使用蛋白质-蛋白质相互作用网络鉴定与牛大理石纹有关的候选基因

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Complex traits are determined by the combined effects of many loci and are affected by gene networks or biological pathways. Systems biology approaches have an important role in the identification of candidate genes related to complex diseases or traits at the system level. The present study systemically analyzed genes associated with bovine marbling score and identified their relationships. The candidate nodes were obtained using MedScan text-mining tools and linked by protein-protein interaction (PPI) from the Human Protein Reference Database (HPRD). To determine key node of marbling, the degree and betweenness centrality (BC) were used. The hub nodes and biological pathways of our network are consistent with the previous reports about marbling traits, and also suggest unknown candidate genes associated with intramuscular fat. Five nodes were identified as hub genes, which was consistent with the network analysis using quantitative reverse-transcription PCR (qRT-PCR). Key nodes of the PPI network have positive roles (PPARγ, C/EBPα, and RUNX1T1) and negative roles (RXRA, CAMK2A) in the development of intramuscular fat by several adipogenesis-related pathways. This study provides genetic information for identifying candidate genes for the marbling trait in bovine.
机译:复杂性状由许多基因座的综合作用决定,并受基因网络或生物学途径的影响。系统生物学方法在鉴定与系统水平上的复杂疾病或性状有关的候选基因中具有重要作用。本研究系统地分析了与牛大理石纹评分相关的基因,并确定了它们之间的关系。候选节点是使用MedScan文本挖掘工具获得的,并通过人蛋白质参考数据库(HPRD)中的蛋白质-蛋白质相互作用(PPI)进行链接。为了确定大理石花纹的关键节点,使用了程度和中间度(BC)。我们网络的中心节点和生物学途径与先前有关大理石纹特征的报道一致,并且还暗示了与肌内脂肪相关的未知候选基因。五个节点被确定为中心基因,这与使用定量逆转录PCR(qRT-PCR)进行的网络分析一致。 PPI网络的关键节点在肌肉脂肪通过几种与脂肪形成相关的途径中的发育中具有正作用(PPARγ,C /EBPα和RUNX1T1)和负作用(RXRA,CAMK2A)。这项研究提供了遗传信息,用于鉴定牛大理石纹特征的候选基因。

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