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A comprehensive analysis of hydrogen peroxide-induced gene expression in tobacco.


ABSTRACT: Hydrogen peroxide plays a central role in launching the defense response during stress in plants. To establish a molecular profile provoked by a sustained increase in hydrogen peroxide levels, catalase-deficient tobacco plants (CAT1AS) were exposed to high light (HL) intensities over a detailed time course. The expression kinetics of >14000 genes were monitored by using transcript profiling technology based on cDNA-amplified fragment length polymorphism. Clustering and sequence analysis of 713 differentially expressed transcript fragments revealed a transcriptional response that mimicked that reported during both biotic and abiotic stresses, including the up-regulation of genes involved in the hypersensitive response, vesicular transport, posttranscriptional processes, biosynthesis of ethylene and jasmonic acid, proteolysis, mitochondrial metabolism, and cell death, and was accompanied by a very rapid up-regulation of several signal transduction components. Expression profiling corroborated by functional experiments showed that HL induced photoinhibition in CAT1AS plants and that a short-term HL exposure of CAT1AS plants triggered an increased tolerance against a subsequent severe oxidative stress.

SUBMITTER: Vandenabeele S 

PROVIDER: S-EPMC307701 | biostudies-literature | 2003 Dec

REPOSITORIES: biostudies-literature

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A comprehensive analysis of hydrogen peroxide-induced gene expression in tobacco.

Vandenabeele Steven S   Van Der Kelen Katrien K   Dat James J   Gadjev Ilya I   Boonefaes Tom T   Morsa Stijn S   Rottiers Pieter P   Slooten Luit L   Van Montagu Marc M   Zabeau Marc M   Inze Dirk D   Van Breusegem Frank F  

Proceedings of the National Academy of Sciences of the United States of America 20031211 26


Hydrogen peroxide plays a central role in launching the defense response during stress in plants. To establish a molecular profile provoked by a sustained increase in hydrogen peroxide levels, catalase-deficient tobacco plants (CAT1AS) were exposed to high light (HL) intensities over a detailed time course. The expression kinetics of >14000 genes were monitored by using transcript profiling technology based on cDNA-amplified fragment length polymorphism. Clustering and sequence analysis of 713 d  ...[more]

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