中国农业科技导报 ›› 2025, Vol. 27 ›› Issue (10): 10-23.DOI: 10.13304/j.nykjdb.2024.0290

• 农业创新论坛 • 上一篇    

植物表皮蜡质生物合成及其分子调控研究进展

赵雄(), 马关柳, 郭通琴, 何国菊, 赵许朋, 刘声传()   

  1. 贵阳学院生物与环境工程学院,贵阳 550005
  • 收稿日期:2024-04-12 接受日期:2024-09-18 出版日期:2025-10-15 发布日期:2025-10-15
  • 通讯作者: 刘声传
  • 作者简介:赵雄E-mail: zhaox@gyu.cn
  • 基金资助:
    贵州省基础研究计划(自然科学)面上项目(黔科合基础MS〔2025〕089);2024年贵阳学院研究生科研基金项目(2024YJSKY03);国家自然科学基金项目(31760227);2023年贵州省国家级大学生创新创业训练计划项目(202310976064);贵阳学院校级团队项目(筑院通字〔2018〕28教学团队03)

Recent Advances on Cuticular Wax Biosynthesis and Its Molecular Regulation in Plants

Xiong ZHAO(), Guanliu MA, Tongqin GUO, Guoju HE, Xupeng ZHAO, Shengchuan LIU()   

  1. School of Biological and Environmental Engineering,Guiyang University,Guiyang 550005,China
  • Received:2024-04-12 Accepted:2024-09-18 Online:2025-10-15 Published:2025-10-15
  • Contact: Shengchuan LIU

摘要:

表皮蜡质是覆盖在陆地植物地上部分最外层的一层疏水性保护屏障,在植物抵御生物和非生物胁迫等方面起重要作用。模式植物表皮蜡质生物合成转运途径已被逐渐揭示,一些结构基因和调控基因相继被发掘和鉴定,但其合成转运的分子调控机制仍不很清楚,且在非模式植物中的研究较少。总结了植物表皮蜡质结构、组分和功能,并阐述了植物表皮蜡质的生物合成和转运机制、相关结构基因的功能,重点梳理了植物表皮蜡质生物合成的转录、转录后、翻译后和表观遗传调控机制,并对今后研究重点进行展望,以期为植物表皮蜡质的后续研究与农业生产实践提供启示。

关键词: 植物, 表皮蜡质, 抗胁迫, 生物合成, 调控机制

Abstract:

The cuticular wax, a hydrophobic protective barrier covering most aerial plant organs, plays crucial roles in defending against biotic and abiotic stresses. Although the cuticular wax biosynthesis and transport pathway has been progressively elucidated in model plants, with the identification of several structural and regulatory genes, the underlying molecular mechanisms remain largely unknown, particularly in non-model plants. The structure, components, and functions of the plant cuticular wax were introduced,and the mechanisms of cuticular wax biosynthesis and transport were outlined, highlighting the roles of associated structural genes. The regulatory mechanisms underlying cuticular wax biosynthesis at the transcriptional, post-transcriptional, post-translational, and epigenetic levels were critically examined. Finally, the major research trends in this field were discussed,which aimed to provide valuable insights for further research on plant cuticular wax and its implications for agricultural production.

Key words: plant, cuticular wax, stress resistance, biosynthesis, regulatory mechanism

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