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转录因子基因 TaWRKY76 通过调节小麦中与应激防御相关的过程赋予植物抗旱和耐盐性。

Transcription factor gene TaWRKY76 confers plants improved drought and salt tolerance through modulating stress defensive-associated processes in Triticum aestivum L.

机构信息

State Key Laboratory of North China Crop Improvement and Regulation, Hebei Agricultural University, Baoding, PR China; College of Agronomy, Hebei Agricultural University, Baoding, PR China.

College of Agronomy, Hebei Agricultural University, Baoding, PR China.

出版信息

Plant Physiol Biochem. 2024 Nov;216:109147. doi: 10.1016/j.plaphy.2024.109147. Epub 2024 Sep 27.

Abstract

WRKY transcription factor (TF) family acts as essential regulators in plant growth and abiotic stress responses. This study reported the function of TaWRKY76, a member of WRKY TF family in Triticum aestivum L., in regulating plant osmotic stress tolerance. TaWRKY76 transcripts were significantly upregulated upon drought and salt signaling, with dose extent- and stress temporal-dependent manners. Plant GUS activity assays suggested that stress responsive cis-acting elements, such as DRE and ABRE, exert essential roles in defining gene transcription under osmotic stress conditions. The TaWRKY76 protein targeted onto nucleus and possessed ability interacting with TaMYC2, a MYC TF member of wheat. TaWRKY76 and TaMYC2 positively regulated plant drought and salt adaptation by modulating osmotic stress-related physiological indices, including osmolyte contents, stomata movement, root morphology, and reactive oxygen species (ROS) homeostasis. Yeast one-hybrid assay indicated the binding ability of TaWRKY76 with promoters of TaDREB1;1, TaNCEB3, and TaCOR15;4. ChIP-PCR analysis confirmed that the osmotic stress genes are transcriptionally regulated by TaWRKY76. Moreover, the transgenic lines with knockdown of these stress-response genes displayed lowered plant biomass together with worsened root growth traits, decreased proline contents, and elevated ROS amounts. These results suggested that these stress defensive genes contributed to TaWRKY76-modulated osmotic stress tolerance. Highly positive correlations were observed between yield and the transcripts of TaWRKY76 in a wheat variety panel under field drought condition. A major haplotype TaWRKY76 Hap1 conferred improved drought tolerance. Our results suggested that TaWRKY76 is essential in plant drought and salt adaptation and a valuable target for molecular breeding stress-tolerant cultivars in Triticum aestivum L..

摘要

WRKY 转录因子(TF)家族在植物生长和非生物胁迫反应中起着重要的调节作用。本研究报道了 TaWRKY76 在调节植物渗透胁迫耐受性中的作用,TaWRKY76 是 Triticum aestivum L. 中 WRKY TF 家族的一个成员。干旱和盐信号处理后 TaWRKY76 的转录本显著上调,呈现剂量和时间依赖性。植物 GUS 活性分析表明,胁迫响应顺式作用元件,如 DRE 和 ABRE,在确定渗透胁迫条件下的基因转录中发挥重要作用。TaWRKY76 蛋白靶向细胞核,并具有与 TaMYC2 相互作用的能力,TaMYC2 是小麦 MYC TF 家族的成员。TaWRKY76 和 TaMYC2 通过调节渗透胁迫相关生理指标,包括渗透溶质含量、气孔运动、根系形态和活性氧(ROS)稳态,正向调节植物的干旱和盐适应。酵母单杂交实验表明 TaWRKY76 与 TaDREB1;1、TaNCEB3 和 TaCOR15;4 启动子具有结合能力。ChIP-PCR 分析证实,渗透胁迫基因受 TaWRKY76 的转录调控。此外,这些胁迫响应基因的敲低转基因系表现出植物生物量降低,根系生长特性变差,脯氨酸含量降低,ROS 含量升高。这些结果表明,这些应激防御基因有助于 TaWRKY76 调节的渗透胁迫耐受性。在田间干旱条件下,一个小麦品种群体中产量与 TaWRKY76 的转录本之间存在高度正相关。一个主要单倍型 TaWRKY76 Hap1 赋予了更好的耐旱性。我们的结果表明 TaWRKY76 对植物的干旱和盐适应是必不可少的,是培育 Triticum aestivum L. 耐胁迫品种的有价值的分子育种目标。

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