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TaFLZ2D 通过卓越的离子胁迫耐受和 ROS 解毒能力增强耐盐性。

TaFLZ2D enhances salinity stress tolerance via superior ability for ionic stress tolerance and ROS detoxification.

机构信息

School of Biological Science and Technology, University of Jinan, Jinan, 250022, Shandong, China.

School of Biological Science and Technology, University of Jinan, Jinan, 250022, Shandong, China.

出版信息

Plant Physiol Biochem. 2021 Nov;168:516-525. doi: 10.1016/j.plaphy.2021.11.014. Epub 2021 Nov 13.

Abstract

Salinity stress severely affects plant growth and crop productivity. FCS-like zinc finger family genes (FLZ) play important roles in plant growth and stress responses. But most information of this family obtained was involved in sucrose signaling, limited function has been known in response to salinity stress. In this study, a novel FLZ gene TaFLZ2D has been isolated and characterized in response to salinity stress in wheat. TaFLZ2D was induced by both salinity stress and exogenous abscisic acid (ABA). Its transcript level was substantially higher in the salt resistant wheat cultivar SR3 than in its closely related but salt sensitive cultivar JN177. Transient expression in Nicotiana benthamiana leaf epidermal cells demonstrated TaFLZ2D was localized both in the cytoplasm membrane and nucleus. Constitutive expression of TaFLZ2D in Arabidopsis thaliana improved salinity stress tolerance and ABA sensitivity. Phenotype analysis under KCl and mannitol treatment demonstrated TaFLZ2D increased salinity stress tolerance mainly due to the superior ability to cope with ionic stress. TaFLZ2D over-expressing lines increased abscisic acid synthesis, peroxidase activity and reduced rate of water loss. Transcriptomic analysis demonstrated over-expression of TaFLZ2D regulated ABA-dependent and independent signaling pathway related genes expression and activated antioxidant related genes expression under normal condition and Ca signaling related genes expression under NaCl treatmemt. Taken together, TaFLZ2D is a positive regulator of salinity stress tolerance, which contributes to salinity stress mainly through superior ability for ionic stress tolerance and ROS detoxification.

摘要

盐胁迫严重影响植物的生长和作物的产量。FCS 样锌指家族基因(FLZ)在植物生长和应激反应中发挥重要作用。但是,该家族的大部分信息都涉及蔗糖信号转导,对于盐胁迫的反应功能有限。在本研究中,从小麦中分离并鉴定了一个新的 FLZ 基因 TaFLZ2D,它响应盐胁迫。TaFLZ2D 受到盐胁迫和外源脱落酸(ABA)的诱导。其转录水平在耐盐小麦品种 SR3 中明显高于其近缘但敏感的品种 JN177。在本氏烟草叶片表皮细胞中的瞬时表达表明 TaFLZ2D 定位于细胞质膜和细胞核。在拟南芥中组成型表达 TaFLZ2D 提高了盐胁迫耐受性和 ABA 敏感性。在 KCl 和甘露醇处理下的表型分析表明,TaFLZ2D 提高盐胁迫耐受性主要是由于其应对离子胁迫的能力更强。TaFLZ2D 过表达系增加了脱落酸的合成、过氧化物酶活性和降低水分流失率。转录组分析表明,过表达 TaFLZ2D 调节 ABA 依赖和独立的信号通路相关基因的表达,并在正常条件下激活抗氧化相关基因的表达,在 NaCl 处理下激活 Ca 信号相关基因的表达。总之,TaFLZ2D 是盐胁迫耐受性的正调控因子,主要通过离子胁迫耐受性和 ROS 解毒能力来提高盐胁迫耐受性。

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