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一种与应激相关的转录因子,属于 YL-1 家族,在不同干旱敏感程度的杜伦小麦品种中受到不同的调节。

A stress-related transcription factor belonging to the YL-1 family is differently regulated in durum wheat cultivars differing in drought sensitivity.

机构信息

Department of Chemistry, Life Sciences and Environmental Sustainability, University of Parma, Parco Area delle Scienze, 11/A, 43124, Parma, Italy.

Department of Biological and Environmental Sciences and Technologies, University of Salento, Via Monteroni 165, 73100, Lecce, Italy.

出版信息

Plant Physiol Biochem. 2022 Jan 1;170:307-315. doi: 10.1016/j.plaphy.2021.12.016. Epub 2021 Dec 20.

Abstract

The Mediterranean area is characterised by unfavorable environmental conditions such as heat stress and drought responsible for yield loss of crops like durum wheat, widely cultivated in this area. The response of plants to stressing environments is mediated by activation of a complex gene network, strictly related to the genetic background. Among the genes induced by drought, those coding for proteins acting as key regulators of signal transduction are of great interest. Characterization of these genes is a crucial point to understand their potential roles in plant stress response, also in view of their possible use in molecular breeding. In this work we have characterised a Triticum durum gene, named TdDRG1, in two commercial cultivars, Primadur and Svevo, differing for drought stress resistance. TdDRG1 codes for a putative transcription factor belonging to the VPS72/YL-1 family, highly conserved in plants and animals. The expression analysis indicates that this gene is expressed at higher level in roots of the resistant cultivar Svevo, than in the susceptible Primadur. The gene structure was determined in both cultivars and the regulatory activity of 5' upstream regions was analyzed by transient expression analysis using tobacco protoplasts. Dissimilar expression level of TdDRG1 in the two cultivars can be explained by the differences observed in gene structure. In particular, differences in 5' upstream regions could account for contrasting ability to cope with drought of the two cultivars. The data obtained in this study provide indications for further insight into the molecular basis of differences in drought stress response.

摘要

地中海地区的环境条件不利,如热应激和干旱,这导致该地区广泛种植的硬粒小麦等作物减产。植物对胁迫环境的反应是通过激活一个与遗传背景密切相关的复杂基因网络来介导的。在干旱诱导的基因中,那些编码作为信号转导关键调节剂的蛋白质的基因是非常有趣的。这些基因的特征描述是理解它们在植物应激反应中的潜在作用的关键,也考虑到它们在分子育种中的可能用途。在这项工作中,我们在两个商业品种,Primadur 和 Svevo 中对一个硬粒小麦基因 TdDRG1 进行了特征描述,这两个品种对干旱胁迫有不同的抗性。TdDRG1 编码一个假定的转录因子,属于植物和动物中高度保守的 VPS72/YL-1 家族。表达分析表明,该基因在抗性品种 Svevo 的根中表达水平高于易感品种 Primadur。在两个品种中确定了基因结构,并通过烟草原生质体的瞬时表达分析分析了 5'上游区域的调节活性。两个品种中 TdDRG1 的表达水平不同,可以用基因结构观察到的差异来解释。特别是,5'上游区域的差异可能导致两个品种对干旱的应对能力不同。本研究获得的数据为进一步深入了解干旱胁迫反应差异的分子基础提供了依据。

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