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PMID: 18705883 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Tissue-specific expression of a defence-related peroxidase in transgenic wheat potentiates cell death in pathogen-attacked leaf epidermis.

Molecular plant pathology ·Vol. 9 ·No. 1 ·2008-01-00 ·Pages 45-57

Schweizer P

Abstract

Gene technology can offer creative solutions to problems of agronomical relevance, which may not be solved by conventional breeding methods. One of the major problems of wheat cultivation is disease caused by a number of fungal pathogens including the wheat powdery mildew fungus Blumeria graminis f.sp. tritici (Bgt). Transgenic wheat plants that constitutively express the coding sequence of the defence-related wheat peroxidase TaPrx103 (previously TaPERO) in shoot epidermis under the control of the wheat GstA1 promoter were generated and found to exhibit enhanced resistance to Bgt (Altpeter et al., Plant. Mol. Biol. 57, 271-283). Here, I report on physiological and molecular analyses of these plants in order to assess the mode of action of the peroxidase encoded by the TaGstA1:TaPrx103 transgene. Epidermal cells of transgenic lines with enhanced resistance were found to respond to Bgt attack more frequently with hypersensitive cell death and the generation of hydrogen peroxide. By contrast, resistance of epidermal cell walls to degradation by fungal enzymes appeared to be similar in transgenic and wild-type plants. Moreover, the analysis of the abundance of approximately 10,000 wheat transcripts revealed no significant effect of the GstA1i:TaPrx103 transgene on host gene expression in non-inoculated leaves and only a marginal effect in Bgt-challenged leaves, compared with wild-type plants treated in the same manner. The results indicate that the TaPrx103 protein is involved in generating reactive oxygen species specifically in pathogen-attacked cells, which may lead to localized cell death and resistance. I therefore suggest that the transgenic plants presented here can be regarded as substantially equivalent to non-transgenic wheat.

MeSH Terms
Ascomycota/pathogenicity Cell Death Cell Wall/metabolism Expressed Sequence Tags Gene Expression Regulation, Plant Genes, Plant Hydrogen Peroxide/metabolism Immunity, Innate Peroxidases/genetics Phenotype Plant Diseases/genetics,microbiology Plant Epidermis/enzymology,genetics,microbiology Plant Leaves/enzymology,genetics,microbiology Plant Proteins/genetics Plants, Genetically Modified/enzymology,genetics,immunology,microbiology RNA, Plant/genetics Reverse Transcriptase Polymerase Chain Reaction Transgenes Triticum/enzymology,genetics,immunology,microbiology
Chemicals
Plant Proteins RNA, Plant Hydrogen Peroxide Peroxidases wheat peroxidase
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Schweizer Patrick
Leibniz-Institute of Plant Genetics and Crop Plant Research (IPK), Corrensstrasse 3, D-06466 Gatersleben, Germany. [email protected]
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Article Info
Journal
Molecular plant pathology
Abbr.
Mol Plant Pathol
ISSN
1364-3703
Published
2008-01-00
Pages
45-57
Language
English
Region
England
NLM ID
100954969
PMCID
PMC6640441
Subset
IM
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