欢迎访问《应用生态学报》官方网站,今天是

应用生态学报 ›› 2026, Vol. 37 ›› Issue (4): 1329-1341.doi: 10.13287/j.1001-9332.202604.003

• 综合评述 • 上一篇    下一篇

植物花源挥发性有机化合物的合成、释放及生态功能研究进展

桂晴1,2,3, 马长乐1,2,3*, 王李娟1,2,3   

  1. 1西南林业大学园林园艺学院, 昆明 650224;
    2云南省园林绿化植物资源培育与应用重点实验室, 昆明 650224;
    3云南省功能性花卉资源及产业化技术工程研究中心, 昆明 650224
  • 收稿日期:2025-12-20 修回日期:2026-02-27 出版日期:2026-04-18 发布日期:2026-05-29
  • 通讯作者: *E-mail: mcl@swfu.edu.cn
  • 作者简介:桂 晴, 女, 1998年生, 博士研究生。主要从事园林植物应用研究。E-mail: gsm3511@163.com
  • 基金资助:
    云南省教育厅科学研究基金项目(2025Y0859)和云南省农业联合专项重点项目(202301BD070001-150)

Research progress on the synthesis, emission, and ecological functions of floral volatile organic compounds

GUI Qing1,2,3, MA Changle1,2,3*, WANG Lijuan1,2,3   

  1. 1College of Landscape Architecture and Horticulture Science, Southwest Forestry University, Kunming 650224, China;
    2Key Laboratory of Landscaping Plant Resource Cultivation and Application of Yunnan Province, Kunming 650224, China;
    3Yunnan Province Engineering Research Center for Functional Flower Resources and Industrialization, Kunming 650224, China
  • Received:2025-12-20 Revised:2026-02-27 Online:2026-04-18 Published:2026-05-29

摘要: 植物花源挥发性有机化合物(FVOCs)是植物次生代谢的重要产物,在植物生长发育和繁殖过程中发挥重要作用,它既是植物介导传粉者访花的核心化学信号,也是植物应对胁迫的重要防御屏障。目前,FVOCs研究焦点主要集中于挥发性物质的成分鉴定、合成代谢通路解析及关键调控基因挖掘。本文综述了FVOCs的合成与释放及生态功能的研究现状并提出研究展望。在合成代谢通路研究中,对于萜类与苯丙烷及苯环类的合成途径和调控机制较为清晰,但对脂肪酸衍生物还缺乏系统的认识。在调控网络中,生物钟系统是调控FVOCs时序性释放的核心内源因子,环境变化是驱动FVOCs成分变化的关键外源因子,二者通过复杂的协同互作网络,共同塑造FVOCs成分构成与释放动态。FVOCs在植物传粉介导、防御响应等生态过程中已展示出明确功能,但对其仍缺乏系统认知。未来研究应聚焦多因子协同作用下FVOCs合成与释放的调控网络,以及FVOCs多样化生态功能,并在全球气候变化背景下,预测FVOCs的演化趋势及其对植物繁殖适合度的潜在影响,为全球生态系统稳定性研究提供理论支撑。

关键词: 花香挥发物, 生物合成, 释放规律, 生态功能

Abstract: Floral volatile organic compounds (FVOCs) are important secondary metabolites in plants, playing important roles in plant growth, development, and reproduction. They serve as core chemical signals for plants to mediate pollinators visitation and essential defensive barriers against environmental stresses. Currently, research on FVOCs has mainly focused on identifying their components, elucidating biosynthetic pathways, and mining key regu-latory genes. We summarized the current research status of FVOC synthesis, emission, and ecological functions, and proposed future research prospects. In terms of biosynthetic metabolism, the biosynthetic pathways and regulatory mechanisms of terpenoids, phenylpropanoids, and benzenoids are relatively well clarified, whereas a systematic understanding of fatty acid derivatives is lacking. Within the regulatory network, the circadian clock system serves as the core endogenous factor regulating the temporal emission of FVOCs, while environmental changes act as the key exogenous factor driving changes in FVOC composition. These two factors jointly shape the composition and emission dynamics of FVOCs through complex synergistic interactions. FVOCs have been demonstrated to play distinct roles in ecological processes, such as mediating pollination and defense responses, yet a systematic understanding of their ecological functions remains inadequate. Future research should focus on the regulatory networks regulating FVOC synthesis and emission under the synergistic effects of multiple factors, as well as the diverse ecological functions of FVOCs. Against the backdrop of global climate change, we should also predict the evolutionary trends of FVOCs and their potential impacts on plant reproductive fitness, so as to provide theoretical support for global ecosystem stability research.

Key words: floral volatile compound, biosynthesis, emission regularity, ecological function