植物学报 ›› 2025, Vol. 60 ›› Issue (5): 1-0.DOI: 10.11983/CBB25088  cstr: 32102.14.CBB25088

• 特邀综述 •    

系统获得性抗性的转录调控

粟思琳1, 2, 唐先宇1, 2, 陈祎1, 2, 王婷1, 2, 夏石头1, 2*   

  1. 1湖南农业大学, 植物激素与生长发育湖南省重点实验室, 长沙 410128; 2湖南农业大学生物科学技术学院, 长沙 410128
  • 收稿日期:2025-05-19 修回日期:2025-07-02 出版日期:2025-09-10 发布日期:2025-07-08
  • 通讯作者: 夏石头
  • 基金资助:
    国家自然科学基金面上项目(No.31971836)和湖南省研究生科研创新项目(No.CX20230686) 

Transcriptional Regulation of Systemic Acquired Resistance

Silin Su1, 2, Xianyu Tang1, 2, Yi Chen1, 2, Ting Wang1, 2, Shitou Xia1, 2*   

  1. 1Hunan Provincial Key Laboratory of Phytohormones and Growth Development, Hunan Agricultural University, Changsha

    410128, China; 2College of Bioscience and Biotechnology, Hunan Agricultural University, Changsha 410128, China

  • Received:2025-05-19 Revised:2025-07-02 Online:2025-09-10 Published:2025-07-08
  • Contact: Shitou Xia

摘要: 系统获得性抗性(SAR)是植物重要的防御机制, 可显著增强植株对病原微生物的抗性, 且具系统性、持久性和广谱性特征, 其转录调控为抗性激活的核心环节。该文从水杨酸(SA)和Pip/NHP的合成, NPR1、NPR3/NPR4受体和Pip/NHP移动信号等的转录调控, 以及TGA和WRKY转录因子家族调控等方面综述了SAR的转录调控研究进展, 为深入理解植物免疫调控网络以及系统探究植物在复杂环境中平衡生长与防御的机制提供参考。

关键词: SAR, 转录调控, 水杨酸, 哌啶酸, N - 羟基哌啶酸

Abstract: Systemic acquired resistance (SAR) is a crucial defense mechanism in plants, which can significantly enhance the plant's resistance to pathogenic microorganisms. SAR has systemic, persistent, and broad-spectrum characteristics, whose transcriptional regulation plays a central role in the process. Here, the research progress on transcriptional regulation of SAR from the synthesis of SA, Pip/NHP, transcriptional regulation of NPR1, NPR3/NPR4 receptors and Pip/NHP mobile signals, as well as TGA, WRKY transcription factor family regulation was reviewed, providing a reference for a deeper understanding of plant immune regulatory networks, and systematic exploration of the mechanisms by which plants balanced growth and defense in complex environments.

Key words: Systemic acquired resistance, Transcriptional regulation, Salicylic acid, Pipecolic acid, N-hydroxypipecolic acid