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Joint tanscriptomic and metabolomic analyses reveal changes in the primary metabolism and imbalances in the subgenome orchestration in the bread wheat molecular response to Fusarium graminearum
- Source :
- Genes Genomes Genetics G3 5, 2579-2592 (2015), G3: Genes|Genomes|Genetics
- Publication Year :
- 2015
-
Abstract
- Fusarium head blight is a prevalent disease of bread wheat (Triticum aestivum L.), which leads to considerable losses in yield and quality. Quantitative resistance to the causative fungus Fusarium graminearum is poorly understood. We integrated transcriptomics and metabolomics data to dissect the molecular response to the fungus and its main virulence factor, the toxin deoxynivalenol in near-isogenic lines segregating for two resistance quantitative trait loci, Fhb1 and Qfhs.ifa-5A. The data sets portrait rearrangements in the primary metabolism and the translational machinery to counter the fungus and the effects of the toxin and highlight distinct changes in the metabolism of glutamate in lines carrying Qfhs.ifa-5A. These observations are possibly due to the activity of two amino acid permeases located in the quantitative trait locus confidence interval, which may contribute to increased pathogen endurance. Mapping to the highly resolved region of Fhb1 reduced the list of candidates to few genes that are specifically expressed in presence of the quantitative trait loci and in response to the pathogen, which include a receptor-like protein kinase, a protein kinase, and an E3 ubiquitin-protein ligase. On a genome-scale level, the individual subgenomes of hexaploid wheat contribute differentially to defense. In particular, the D subgenome exhibited a pronounced response to the pathogen and contributed significantly to the overall defense response.
- Subjects :
- Quantitative Trait Loci
deoxynivalenol
Glutamic Acid
Fhb1
Quantitative trait locus
Plant disease resistance
Biology
Investigations
Fusarium Head Blight
Qfhs.ifa-5a
Deoxynivalenol
Resistance Qtl
Transcriptome
Metabolomics
Fusarium
Gene Expression Regulation, Plant
Genetics
resistance QTL
Molecular Biology
Pathogen
Gene
Genetics (clinical)
Triticum
Disease Resistance
Plant Diseases
Gene Expression Profiling
Qfhs.ifa-5A
Ubiquitination
Computational Biology
RNA Ligase (ATP)
food and beverages
Genomics
Gene expression profiling
Fusarium head blight
Molecular Response
Host-Pathogen Interactions
Metabolome
Basal Metabolism
Trichothecenes
Metabolic Networks and Pathways
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Journal :
- Genes Genomes Genetics G3 5, 2579-2592 (2015), G3: Genes|Genomes|Genetics
- Accession number :
- edsair.doi.dedup.....a7aa845f47578620d997b2a50907bfb6