首页> 外文OA文献 >Isolation and molecular characterization of ERF1, an ethylene response factor gene from durum wheat (Triticum turgidum L. subsp. durum), potentially involved in salt-stress responses
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Isolation and molecular characterization of ERF1, an ethylene response factor gene from durum wheat (Triticum turgidum L. subsp. durum), potentially involved in salt-stress responses

机译:硬粒小麦(Triticum turgidum L. subsp。durum)的乙烯反应因子基因ERF1的分离和分子特性,可能与盐胁迫反应有关

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摘要

As food crop, wheat is of prime importance for human society. Nevertheless, our understanding of the genetic and molecular mechanisms controlling wheat productivity conditions has been, so far, hampered by the lack of sufficient genomic resources. The present work describes the isolation and characterization of TdERF1, an ERF gene from durum wheat (Triticum turgidum L. subsp. durum). The structural features of TdERF1 supported the hypothesis that it is a novel member of the ERF family in durum wheat and, considering its close similarity to TaERF1 of Triticum aestivum, it probably plays a similar role in mediating responses to environmental stresses. TdERF1 displayed an expression pattern that discriminated between two durum wheat genotypes contrasted with regard to salt-stress tolerance. The high number of cis-regulatory elements related to stress responses present in the TdERF1 promoter and the ability of TdERF1 to regulate the transcription of ethylene and drought-responsive promoters clearly indicated its potential role in mediating plant responses to a wide variety of environmental constrains. TdERF1 was also regulated by abscisic acid, ethylene, auxin, and salicylic acid, suggesting that it may be at the crossroads of multiple hormone signalling pathways. Four TdERF1 allelic variants have been identified in durum wheat genome, all shown to be transcriptionally active. Interestingly, the expression of one allelic form is specific to the tolerant genotype, further supporting the hypothesis that this gene is probably associated with the susceptibility/tolerance mechanism to salt stress. In this regard, the TdERF1 gene may provide a discriminating marker between tolerant and sensitive wheat varieties.
机译:作为粮食作物,小麦对人类社会至关重要。然而,到目前为止,由于缺乏足够的基因组资源,我们对控制小麦生产条件的遗传和分子机制的理解受到阻碍。本工作描述了硬粒小麦(Triticum turgidum L. subsp。durum)的ERF基因TdERF1的分离和鉴定。 TdERF1的结构特征支持以下假设:它是硬粒小麦中ERF家族的一个新成员,并且考虑到它与普通小麦的TaERF1非常相似,它可能在介导对环境胁迫的响应中起类似的作用。 TdERF1显示了一种表达模式,该模式在耐盐胁迫性方面对比了两种硬粒小麦基因型。 TdERF1启动子中存在大量与胁迫响应相关的顺式调控元件,以及TdERF1调节乙烯和干旱响应性启动子转录的能力,清楚地表明了其在介导植物对多种环境约束的响应中的潜在作用。 TdERF1还受到脱落酸,乙烯,生长素和水杨酸的调节,这表明它可能处于多种激素信号通路的十字路口。在硬粒小麦基因组中已鉴定出四个TdERF1等位基因变体,均显示出转录活性。有趣的是,一种等位基因形式的表达是特异于耐受基因型的,进一步支持了这一基因可能与对盐胁迫的敏感性/耐受机制有关的假设。在这方面,TdERF1基因可以提供耐受性和敏感性小麦品种之间的区别标记。

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