首页> 外文期刊>Frontiers in Plant Science >Gene Expression and Yeast Two-Hybrid Studies of 1R-MYB Transcription Factor Mediating Drought Stress Response in Chickpea ( Cicer arietinum L.)
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Gene Expression and Yeast Two-Hybrid Studies of 1R-MYB Transcription Factor Mediating Drought Stress Response in Chickpea ( Cicer arietinum L.)

机译:1R-MYB转录因子介导鹰嘴豆干旱胁迫响应的基因表达和酵母两杂交研究( Aertinum L。)

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Drought stress has been one of the serious constraints affecting chickpea productivity to a great extent. Genomics-assisted breeding has a potential to accelerate breeding precisely and efficiently. In order to do so, understanding the molecular mechanisms for drought tolerance and identification of candidate genes are crucial. Transcription factors (TFs) have important roles in the regulation of plant stress related genes. In this context, quantitative real time-PCR (qRT-PCR) was used to study the differential gene expression of selected TFs, identified from large-scale expressed sequence tags (ESTs) analysis, in contrasting drought responsive genotypes. Root tissues of ICC 4958 (tolerant), ICC 1882 (sensitive), JG 11 (elite), and JG 11+ (introgression line) were used for the study. Subsequently, a candidate single repeat MYB ( 1R-MYB ) transcript that was remarkably induced in the drought tolerant genotypes under drought stress was cloned (coding sequence region for the 1R-MYB protein) and subjected to yeast two-hybrid (Y2H) analysis. The screening of a root cDNA library with Y2H using the 1R-MYB bait protein, identified three CDS encoding peptides namely, galactinol-sucrose galactosyltransferase 2, CBL (Calcineurin B-like)-interacting serine/threonine-protein kinase 25, and ABA responsive 17-like, which were confirmed by co-transformation in yeast. These findings provide preliminary insights into the ability of this 1R-MYB transcription factor to co-regulate drought tolerance mechanism in chickpea.
机译:干旱胁迫已成为很大程度上影响鹰嘴豆生产力的严重制约因素之一。基因组学辅助育种有潜力准确高效地促进育种。为此,了解耐旱的分子机制和鉴定候选基因至关重要。转录因子(TFs)在植物胁迫相关基因的调控中具有重要作用。在这种情况下,定量实时PCR(qRT-PCR)用于研究选定的TF的差异基因表达,该差异是从大规​​模表达序列标签(EST)分析中鉴定出来的,与干旱响应基因型形成对比。研究使用了ICC 4958(耐受性),ICC 1882(敏感),JG 11(精英)和JG 11+(渗入系)的根组织。随后,克隆了在干旱胁迫下在耐旱基因型中显着诱导的候选单重复MYB(1R-MYB)转录本(1R-MYB蛋白的编码序列区域),并进行了酵母双杂交(Y2H)分析。使用1R-MYB诱饵蛋白筛选带有Y2H的根cDNA文库,确定了三种CDS编码肽,即半乳糖醇-蔗糖半乳糖基转移酶2,相互作用的CBL(钙调神经磷酸酶B样)丝氨酸/苏氨酸蛋白激酶25和ABA响应通过酵母中的共转化证实了17-like。这些发现提供了对该1R-MYB转录因子共调节鹰嘴豆抗旱机制的能力的初步见解。

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