Components of the gene network associated with genotype-dependent response of wheat to the Fusarium mycotoxin deoxynivalenol

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作者
Stephanie Walter
Josephine M. Brennan
Chanemougasoundharam Arunachalam
Khairul I. Ansari
Xuejun Hu
Mojibur R. Khan
Friederike Trognitz
Bodo Trognitz
Gerald Leonard
Damian Egan
Fiona M. Doohan
机构
[1] University College Dublin,Molecular Plant
[2] Austrian Research Centers GmbH (ARC),Microbe Interactions Laboratory, School of Biology and Environmental Sciences, College of Life Sciences
[3] University of Texas at Arlington,Biogenetics
[4] Department of Agriculture and Food,Natural Resources Division, Bioresources Department
[5] Dalian University,Department of Chemistry and Biochemistry
[6] University of Aarhus,Plant Health Laboratory
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Trichothecenes; Wheat cDNA microarray;
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摘要
The Fusarium mycotoxin deoxynivalenol (DON) facilitates fungal spread within wheat tissue and the development of Fusarium head blight disease. The ability of wheat spikelets to resist DON-induced bleaching is genotype-dependent. In wheat cultivar (cv.) CM82036 DON resistance is associated with a quantitative trait locus, Fhb1, located on the short arm of chromosome 3B. Gene expression profiling (microarray and real-time RT-PCR analyses) of DON-treated spikelets of progeny derived from a cross between cv. CM82036 and the DON-susceptible cv. Remus discriminated ten toxin-responsive transcripts associated with the inheritance of DON resistance and Fhb1. These genes do not exclusively map to Fhb1. Based on the putative function of the ten Fhb1-associated transcripts, we discuss how cascades involving classical metabolite biotransformation and sequestration processes, alleviation of oxidative stress and promotion of cell survival might contribute to the host response and defence against DON.
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页码:421 / 427
页数:6
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