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Single-nucleotide polymorphism-gene intermixed networking reveals co-linkers connected to multiple gene expression phenotypes

机译:单核苷酸多态性-基因混合网络揭示了与多个基因表达表型相关的共接头

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摘要

Gene expression profiles and single-nucleotide polymorphism (SNP) profiles are modern data for genetic analysis. It is possible to use the two types of information to analyze the relationships among genes by some genetical genomics approaches. In this study, gene expression profiles were used as expression traits. And relationships among the genes, which were co-linked to a common SNP(s), were identified by integrating the two types of information. Further research on the co-expressions among the co-linked genes was carried out after the gene-SNP relationships were established using the Haseman-Elston sib-pair regression. The results showed that the co-expressions among the co-linked genes were significantly higher if the number of connections between the genes and a SNP(s) was more than six. Then, the genes were interconnected via one or more SNP co-linkers to construct a gene-SNP intermixed network. The genes sharing more SNPs tended to have a stronger correlation. Finally, a gene-gene network was constructed with their intensities of relationships (the number of SNP co-linkers shared) as the weights for the edges.
机译:基因表达谱和单核苷酸多态性(SNP)谱是用于遗传分析的现代数据。通过某些遗传基因组学方法,可以使用两种信息来分析基因之间的关系。在这项研究中,基因表达谱被用作表达特征。通过整合两种类型的信息,可以确定与共同的SNP共关联的基因之间的关系。使用Haseman-Elston同胞对回归建立基因与SNP的关系后,对共连接基因之间的共表达进行了进一步研究。结果表明,如果基因与SNP之间的连接数超过六个,则在共连接基因之间的共表达显着更高。然后,基因通过一个或多个SNP共接头相互连接,以构建基因-SNP混合网络。共享更多SNP的基因倾向于具有更强的相关性。最后,构建了一个基因-基因网络,其关系强度(共享的SNP共接头的数量)作为边缘的权重。

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