Metabolomics,Unknown,Transcriptomics,Genomics,Proteomics

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Transcriptional regulation of ROS controls the transition from proliferation to differentiation in the root


ABSTRACT: We isolated the meristematic and elongation zones of Col-0, upb1-1 mutant and 35S::UPB1-3YFP/upb1-1 plants by micro-dissection and extracted RNA from each section independently. To identify genes that might mediate UPB1 function we conducted a series of microarray experiments. The spatial distribution of the UPB1 protein suggested that it might exert a different effect on gene expression in the meristematic and elongation zones. Therefore, we isolated the meristematic and elongation zones by micro-dissection and extracted RNA from each section independently. Total RNA was isolated from approximately 60 meristem- and elongation zones of Col-0, upb1-1 and 35S::UPB1-3YFP #2 6 day old plants. Two biological replicates were performed for each experiment.

ORGANISM(S): Arabidopsis thaliana

SUBMITTER: HIRONAKA TSUKAGOSHI 

PROVIDER: E-GEOD-21876 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Transcriptional regulation of ROS controls transition from proliferation to differentiation in the root.

Tsukagoshi Hironaka H   Busch Wolfgang W   Benfey Philip N PN  

Cell 20101101 4


The balance between cellular proliferation and differentiation is a key aspect of development in multicellular organisms. Using high-resolution expression data from the Arabidopsis root, we identified a transcription factor, UPBEAT1 (UPB1), that regulates this balance. Genomewide expression profiling coupled with ChIP-chip analysis revealed that UPB1 directly regulates the expression of a set of peroxidases that modulate the balance of reactive oxygen species (ROS) between the zones of cell prol  ...[more]

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