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Approaches for Extracting Practical Information from Gene Co-expression Networks in Plant Biology

Plant and Cell Physiology · 2007 · Vol. 48(3) · pp. 381–390
Koh AokiYoshiyuki OgataDaisuke Shibata

Abstract

Gene co-expression, in many cases, implies the presence of a functional linkage between genes. Co-expression analysis has uncovered gene regulatory mechanisms in model organisms such as Escherichia coli and yeast. Recently, accumulation of Arabidopsis microarray data has facilitated a genome-wide inspection of gene co-expression profiles in this model plant. An approach using network analysis has provided an intuitive way to represent complex co-expression patterns between many genes. Co-expression network analysis has enabled us to extract modules, or groups of tightly co-expressed genes, associated with biological processes. Furthermore, integrated analysis of gene expression and metabolite accumulation has allowed us to hypothesize the functions of genes associated with specific metabolic processes. Co-expression network analysis is a powerful approach for data-driven hypothesis construction and gene prioritization, and provides novel insights into the system-level understanding of plant cellular processes.

Bioinformatics and Genomic NetworksMicrobial Metabolic Engineering and BioproductionPhotosynthetic Processes and MechanismsGeneGene expressionComputational biologyGene co-expression networkBiologyGene regulatory networkArabidopsisGeneticsRegulation of gene expressionMicroarray analysis techniques

MeSH terms

Cell WallPlantsTerpenesArabidopsisGene Expression Regulation, PlantGenome, PlantOligonucleotide Array Sequence AnalysisGenomicsDatabases, GeneticSystems Biology
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