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Planta ; 247(2): 459-469, 2018 Feb.
Article in English | MEDLINE | ID: mdl-29075873

ABSTRACT

MAIN CONCLUSION: A and B genome copies of DRF1 gene in durum wheat were isolated and sequenced using gene variability. B genome specific polymorphism resulted, in a RIL population, in relationship with grain yield mainly in drought condition. Drought tolerance is one of the main components of yield potential and stability, and its improvement is a major challenge to breeders. Transcription factors are considered among the best candidate genes for developing functional markers, since they are components of the signal transduction pathways that coordinate the expression of several downstream genes. Polymorphisms of the Triticum durum dehydration responsive factor 1 (TdDRF1) gene that belongs to DREB2 transcription factor family were identified and specifically assigned to the A or B genome. A panel of primers was derived to selectively isolate the corresponding gene copies. These molecular information were also used to develop a new molecular marker: an allele-specific PCR assay discriminating two genotypes (Mohawk and Cocorit) was developed and used for screening a durum wheat recombinant inbred line population (RIL-pop) derived from the above genotypes. Phenotypic data from the RIL-pop grown during two seasons, under different environmental conditions, adopting an α-lattice design with two repetitions, were collected, analyzed and correlated with molecular data from the PCR assay. A significant association between a specific polymorphism in the B genome copy of the TdDRF1 gene and the grain yield in drought conditions were observed.


Subject(s)
Polymorphism, Genetic/genetics , Quantitative Trait Loci/genetics , Transcription Factors/genetics , Triticum/genetics , Alleles , Dehydration , Droughts , Edible Grain , Genotype , Phenotype , Plant Proteins/genetics , Plant Proteins/metabolism , Stress, Physiological , Transcription Factors/metabolism , Triticum/growth & development , Triticum/metabolism
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