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首页> 外文期刊>Molecular genetics and genomics: MGG >Allelic variants in durum wheat (Triticum turgidum L. var. durum) DREB genes conferring tolerance to abiotic stresses
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Allelic variants in durum wheat (Triticum turgidum L. var. durum) DREB genes conferring tolerance to abiotic stresses

机译:硬质小麦(Triticum turgidum L. var。durum)DREB基因的等位基因变异赋予对非生物胁迫的耐受性

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摘要

To identify potential and useful markers able to discriminate promising lines of durum wheat (Triticum turgidum L. var durum) tolerant to salt and drought stresses, nucleotide sequences of Dehydration-Responsive-Element Binding Factor (DREB) genes were used to design primers probed with High Resolution Melting technology for the identification of allelic variants. DREB1, DREB2, DREB3, DREB4 and DREB5 conserved regions corresponding to EREBP/AP2 domain and containing the conserved core sequence (5'-TACCGACAT-3'), the protein site directly involved in DNA recognition, were analyzed. The validated primers were probed on four lines of durum wheat differentially tolerant to salt and drought stresses treated with solutions containing different salt concentrations. Some SNPs mutations were identified in the highly tolerant durum cultivar Jennah Khetifa treated with the maximum salt concentration (1.5 M). The SNPs mutations identified were non-synonymous (nsSNPs) causing changes in peptide sequences. These concerned amino acid residues directly involved in the maintenance of protein geometry, the recognition of the specific cis-element, and the contacts between the protein and DNA. A validation of the found SNPs was carried out by analyzing the regressions between DREBs SNPs allelic variants and some morpho-physiological characters in a RIL population, deriving from a cross between the two durum wheat genotypes utilized for SNPs detection, grown under contrasting environments. Several phenotypical characters have been assessed in the progeny across all the localities evaluating the different performances under different stress levels and related with SNPs occurrence. Significant relations between SNPs variants and morpho-physiological characteristics were found in the progeny growth in very severe drought environments, suggesting a role of the identified SNPs in conferring a superior capability to adverse stress conditions and, at the same time, the key role of these genes in empowering salt tolerance.
机译:为了鉴定能够区分有前景的耐盐和干旱胁迫的硬质小麦(Triticum turgidum L. var durum)的潜在和有用的标记,使用了脱水反应元件结合因子(DREB)基因的核苷酸序列来设计引物。高分辨率熔解技术,用于鉴定等位基因变体。分析了DREB1,DREB2,DREB3,DREB4和DREB5的保守区域,该区域对应于EREBP / AP2结构域并包含保守的核心序列(5'-TACCGACAT-3'),即直接参与DNA识别的蛋白质位点。经验证的引物在四种含盐浓度不同的溶液处理的耐盐和干旱胁迫的硬粒小麦品系上进行了探测。在以最大盐浓度(1.5 M)处理的高度耐受的硬粒小麦品种珍娜·赫蒂法(Jennah Khetifa)中鉴定出一些SNP突变。鉴定出的SNP突变是非同义词(nsSNPs),导致肽序列发生变化。这些与氨基酸残基有关的氨基酸残基直接参与蛋白质几何结构的维持,特定顺式元件的识别以及蛋白质与DNA之间的接触。通过分析DREBs SNPs等位基因变体与RIL群体中某些形态生理特征之间的回归,对发现的SNPs进行了验证,这是由在对比环境下生长的两个用于SNPs检测的硬质小麦基因型之间的杂交得到的。已在所有地区的后代中评估了几种表型特征,评估了在不同胁迫水平下的不同表现,并与SNP的发生有关。在非常严重的干旱环境中,子代生长中发现了SNP变异体与形态生理特征之间的重要关系,这表明已鉴定的SNP在赋予逆境胁迫条件的优异能力中发挥了作用,同时,这些也发挥了关键作用增强耐盐性的基因。

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