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The Association of Multiple Interacting Genes with Specific Phenotypes in Rice Using Gene Coexpression Networks1[C][W][OA]

机译:基于基因共表达网络的水稻多个互作基因与特定表型的关联[C] [W] [OA]

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摘要

Discovering gene sets underlying the expression of a given phenotype is of great importance, as many phenotypes are the result of complex gene-gene interactions. Gene coexpression networks, built using a set of microarray samples as input, can help elucidate tightly coexpressed gene sets (modules) that are mixed with genes of known and unknown function. Functional enrichment analysis of modules further subdivides the coexpressed gene set into cofunctional gene clusters that may coexist in the module with other functionally related gene clusters. In this study, 45 coexpressed gene modules and 76 cofunctional gene clusters were discovered for rice (Oryza sativa) using a global, knowledge-independent paradigm and the combination of two network construction methodologies. Some clusters were enriched for previously characterized mutant phenotypes, providing evidence for specific gene sets (and their annotated molecular functions) that underlie specific phenotypes.
机译:由于许多表型是复杂的基因-基因相互作用的结果,发现给定表型表达基础的基因集非常重要。使用一组微阵列样本作为输入构建的基因共表达网络可以帮助阐明紧密共表达的基因集(模块),这些基因集与已知功能和未知功能的基因混合在一起。模块的功能富集分析进一步将共表达的基因组细分为可以与其他功能相关的基因簇共存于模块中的共功能的基因簇。在这项研究中,使用全局的,与知识无关的范例以及两种网络构建方法的组合,发现了水稻(稻(Oryza sativa))的45个共表达的基因模块和76个共功能的基因簇。一些簇富集了先前表征的突变表型,为特定表型基础的特定基因集(及其带注释的分子功能)提供了证据。

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