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Special Feature: Complex Systems: From Chemistry to Systems Biology Special Feature: Modularity and interactions in the genetics of gene expression

机译:专题:复杂系统:从化学到系统生物学专题:基因表达的遗传学中的模块化和相互作用

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摘要

Understanding the effect of genetic sequence variation on phenotype is a major challenge that lies at the heart of genetics. We developed GOLPH (GenOmic Linkage to PHenotype), a statistical method to identify genetic interactions, and used it to characterize the landscape of genetic interactions between gene expression quantitative trait loci. Our results reveal that allele-specific interactions, in which a gene only exerts an influence on the phenotype in the presence of a particular allele at the primary locus, are widespread and that genetic interactions are predominantly nonadditive. The data portray a complex picture in which interacting loci influence the expression of modules of coexpressed genes involved in coherent biological processes and pathways. We show that genetic variation at a single gene can have a major impact on the global transcriptional response, altering interactions between genes through shutdown or activation of pathways. Thus, different cellular states occur not only in response to the external environment but also result from intrinsic genetic variation.
机译:理解遗传序列变异对表型的影响是遗传学的核心挑战。我们开发了GOLPH(GenOmic Linkage to PHenotype,基因组与表型的联系),一种鉴定遗传相互作用的统计方法,并用它来表征基因表达定量性状基因座之间遗传相互作用的态势。我们的研究结果表明,等位基因特异性相互作用是广泛存在的,而基因相互作用主要是非可加性的,其中一个基因仅在主要等位基因中存在特定等位基因时才对表型产生影响。数据描绘了一个复杂的图景,其中相互作用的基因座影响了参与相关生物学过程和途径的共表达基因模块的表达。我们表明单个基因的遗传变异可以对全球转录反应产生重大影响,通过关闭或激活途径改变基因之间的相互作用。因此,不同的细胞状态不仅响应于外部环境而发生,而且还源于固有的遗传变异。

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