Expression Analysis of the TdDRF1 Gene in Field-Grown Durum Wheat under Full and Reduced Irrigation

Some of the key genes and regulatory mechanisms controlling drought response in durum wheat have been identified. One of the major challenges for breeders is how to use this knowledge for the achievement of drought stress tolerance. In the present study, we report the expression profiles of the gene...

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Veröffentlicht in:Genes 2022-03, Vol.13 (3), p.555
Hauptverfasser: Latini, Arianna, Cantale, Cristina, Thiyagarajan, Karthikeyan, Ammar, Karim, Galeffi, Patrizia
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container_issue 3
container_start_page 555
container_title Genes
container_volume 13
creator Latini, Arianna
Cantale, Cristina
Thiyagarajan, Karthikeyan
Ammar, Karim
Galeffi, Patrizia
description Some of the key genes and regulatory mechanisms controlling drought response in durum wheat have been identified. One of the major challenges for breeders is how to use this knowledge for the achievement of drought stress tolerance. In the present study, we report the expression profiles of the gene, at consecutive plant growth stages, from different durum wheat genotypes evaluated in two different field environments. The expression of a possible target gene ( ) of the gene was also investigated and analogies with the transcript profiles were found. The results of the qRT-PCR highlighted differences in molecular patterns, thus suggesting a genotype dependency of the gene expression in response to the stress induced. Furthermore, a statistical association between the expression of transcripts and agronomic traits was also performed and significant differences were found among genotypes, suggesting a relationship. One of the genotypes was found to combine molecular and agronomic characteristics.
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subjects Design
Drought
Droughts
Experiments
Gene expression
Genotype
Genotypes
Irrigation
Phenotype
Plant Proteins - genetics
Plant Proteins - metabolism
Thermal cycling
Transcription
Transcription factors
Triticum
Triticum durum
Variance analysis
title Expression Analysis of the TdDRF1 Gene in Field-Grown Durum Wheat under Full and Reduced Irrigation
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