植物学报

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Karrikins介导的植物生长发育调控与逆境响应机制

聂小繁1,朱晨博1,杨凯心1,付佳何1,贾文博1,谢微1,李亮亮1,李伟强2   

  1. 1. 中国科学院东北地理与农业生态研究所
    2. 中国科学院东北地理与农业生态研究所;吉林大安农田生态系统国家野外科学观测研究站
  • 收稿日期:2025-12-02 修回日期:2026-01-22 出版日期:2026-07-28 发布日期:2026-07-28
  • 通讯作者: 李伟强
  • 基金资助:
    国家重点研发计划(苏打盐碱地快速培肥与产能提升技术集成与示范);国家自然科学基金(KUF1与DLK2基因调控植物适应干旱胁迫的分子机理)

Advances in Karrikin-Mediated Regulation of Plant Growth and Stress Response Mechanisms

1,   

  • Received:2025-12-02 Revised:2026-01-22 Online:2026-07-28 Published:2026-07-28

摘要: Karrikins (KARs,烟素)是一类植物源材料燃烧产生的丁烯酸内酯化合物,早期研究发现其可显著促进多种植物种子的萌发。分子生物学证据显示,植物感知KARs的信号通路是一套高度保守的分子机制,核心组分包括受体蛋白KARRIKIN INSENSITIVE 2 (KAI2)、F-box蛋白MORE AXILLARY BRANCHES 2 (MAX2)以及下游转录抑制因子SUPPRESSOR OF MAX2 1 (SMAX1)/SMAX1-LIKE 2 (SMXL2)。KAR信号通路不仅能够调控植物生长发育过程(如促进种子萌发、抑制下胚轴伸长、调节根系发育),还可显著增强植物对干旱、高盐、高温、低温等非生物胁迫和生物胁迫的抗性。本综述结合现有研究进展,系统梳理KAR信号通路的组成、传导机制及生物学功能,旨在为深入解析KAR信号介导的植物生长发育调控及逆境适应机制提供参考,并为后续研究方向提供思路。

关键词: 生长发育, Karrikins, 逆境适应

Abstract: Karrikins (KARs) are a class of butenolide compounds produced by the combustion of plant-derived materials. Early studies demonstrated that KARs can significantly promote seed germination in a wide range of plant species. Molecular biological evidence has revealed that the signaling pathway through which plants perceive KARs is a highly conserved molecular mechanism, with core components including the receptor protein KARRIKIN INSENSITIVE 2 (KAI2), the F-box protein MORE AXILLARY BRANCHES 2 (MAX2), and the downstream transcriptional repressors SUPPRESSOR OF MAX2 1 (SMAX1)/SMAX1-LIKE 2 (SMXL2). The KAR signaling pathway not only regulates key processes of plant growth and development (e.g., promoting seed germination, inhibiting hypocotyl elongation, and modulating root system development) but also enhances plant resistance to various abiotic stresses (such as drought, high salinity, extreme high temperature, and extreme low temperature) and biotic stresses. Based on the current research progress, this review systematically summarizes the composition, signal transduction mechanism, and biological functions of the KAR signaling pathway. It aims to provide a reference for in-depth elucidation of the regulatory mechanisms underling KAR signal-mediated plant growth and development as well as stress adaptation, and to offer insights for future research directions.

Key words: Growth and development, Karrikins, Stress adaptation

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