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Coexpression analysis of tomato genes and experimental verification of coordinated expression of genes found in a functionally enriched coexpression module

  • Soichi Ozaki
  • , Yoshiyuki Ogata
  • , Kunihiro Suda
  • , Atsushi Kurabayashi
  • , Tatsuya Suzuki
  • , Naoki Yamamoto
  • , Yoko Iijima
  • , Taneaki Tsugane
  • , Takashi Fujii
  • , Chiaki Konishi
  • , Shuji Inai
  • , Somnuk Bunsupa
  • , Mami Yamazaki
  • , Daisuke Shibata
  • , Koh Aoki
  • Kazusa DNA Research Institute
  • Tohoku University
  • Chiba Prefectural Agriculture and Forestry Research Center
  • Meiji University
  • Nippon Del Monte Corporation
  • Chiba University

Research output: Contribution to journalArticlepeer-review

42 Citations (Scopus)

Abstract

Gene-to-gene coexpression analysis is a powerful approach to infer the function of uncharacterized genes. Here, we report comprehensive identification of coexpression gene modules of tomato (Solanum lycopersicum) and experimental verification of coordinated expression of module member genes. On the basis of the gene-to-gene correlation coefficient calculated from 67 microarray hybridization data points, we performed a network-based analysis. This facilitated the identification of 199 coexpression modules. A gene ontology annotation search revealed that 75 out of the 199 modules are enriched with genes associated with common functional categories. To verify the coexpression relationships between module member genes, we focused on one module enriched with genes associated with the flavonoid biosynthetic pathway. A non-enzyme, non-transcription factor gene encoding a zinc finger protein in this module was overexpressed in S. lycopersicum cultivar Micro-Tom, and expression levels of flavonoid pathway genes were investigated. Flavonoid pathway genes included in the module were up-regulated in the plant overexpressing the zinc finger gene. This result demonstrates that coexpression modules, at least the ones identified in this study, represent actual transcriptional coordination between genes, and can facilitate the inference of tomato gene function.

Original languageEnglish
Pages (from-to)105-116
Number of pages12
JournalDNA Research
Volume17
Issue number2
DOIs
Publication statusPublished - Apr 2010
Externally publishedYes

Keywords

  • Coexpression
  • Flavonoid
  • Solanum lycopersicum
  • Tomato
  • Zinc finger

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