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,唐先宇2,陈祎1,王婷3,夏石头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
    2. 湖南农业大学
    3. 湖南农业大学植物激素与生长发育湖南省重点实验室
  • 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

Transcriptional regulation of systemic acquired resistance

1, 1, 1,Ting Wang2,Shitou Xia   

  • 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核心环节。本文从SA、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、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、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