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Establishing glucose- and ABA-regulated transcription networks in Arabidopsis by microarray analysis and promoter classification using a Relevance Vector Machine

Authors :
Karim Sorefan
Yunhai Li
Sophie Hadingham
Caroline Smith
Michael W. Bevan
Gavin C. Cawley
Sean Walsh
Kee Khoon Lee
Source :
Genome Research. 16:414-427
Publication Year :
2006
Publisher :
Cold Spring Harbor Laboratory, 2006.

Abstract

Establishing transcriptional regulatory networks by analysis of gene expression data and promoter sequences shows great promise. We developed a novel promoter classification method using a Relevance Vector Machine (RVM) and Bayesian statistical principles to identify discriminatory features in the promoter sequences of genes that can correctly classify transcriptional responses. The method was applied to microarray data obtained from Arabidopsis seedlings treated with glucose or abscisic acid (ABA). Of those genes showing >2.5-fold changes in expression level, ∼70% were correctly predicted as being up- or down-regulated (under 10-fold cross-validation), based on the presence or absence of a small set of discriminative promoter motifs. Many of these motifs have known regulatory functions in sugar- and ABA-mediated gene expression. One promoter motif that was not known to be involved in glucose-responsive gene expression was identified as the strongest classifier of glucose-up-regulated gene expression. We show it confers glucose-responsive gene expression in conjunction with another promoter motif, thus validating the classification method. We were able to establish a detailed model of glucose and ABA transcriptional regulatory networks and their interactions, which will help us to understand the mechanisms linking metabolism with growth in Arabidopsis. This study shows that machine learning strategies coupled to Bayesian statistical methods hold significant promise for identifying functionally significant promoter sequences.

Details

ISSN :
10889051
Volume :
16
Database :
OpenAIRE
Journal :
Genome Research
Accession number :
edsair.doi.dedup.....abc1bfb0352645ff5018770009b65272
Full Text :
https://doi.org/10.1101/gr.4237406