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生态学杂志 ›› 2025, Vol. 44 ›› Issue (1): 295-303.doi: 10.13292/j.1000-4890.202501.031

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声音对植物生长、生理的影响及其机制研究进展

魏琳琳*,董薇   

  1. (扬州大学音乐学院, 江苏扬州 225009)
  • 出版日期:2025-01-10 发布日期:2025-01-16

Research advance on the effects and underlying mechanisms of sound on plant growth and physiology.

WEI Linlin*, DONG Wei   

  1. (College Music of Yangzhou University, Yangzhou 225009, Jiangsu, China).
  • Online:2025-01-10 Published:2025-01-16

摘要: 植物是否存在感知声音和相互交流的能力,一直被学界所关注。自20世纪60年代以来,学者利用多种技术手段,探索了植物对声音的响应以及相关信号的传递路径和机制。大量科学实验证实,声音被视为一种外部机械力,与其他机械刺激(如风、雨、触摸和振动)一样,其在调节植物生长和发育的同时,也激活了逆境应答过程中的标志性细胞防御机制事件,如清除活性氧(ROS)、初级代谢改变和激素信号等。这种防御机制在声音等外力刺激下,通过产生化合物或物质引起信号级联(涉及植物信号的转知和跨膜转化、植物胞间信号的传导、植物细胞的生理生化反应等主要转导过程)激活其行为的改变,对植物应对食草动物、害虫、病原体和环境变化起着重要作用。本文分析了1965—2022年间关于声音对植物影响及其机制的研究进展,梳理当前植物声学的研究方法,提出声学刺激植物的化感作用等新概念和观点,以期促进声学生态学、听觉力学和植物生理学等学科间的交叉研究。同时,文章进一步阐述声音在促进植物生长、产量、品质等方面的实施路径与应用前景,以期从“活态”声音中有效探索影响植物生命过程和途径,为未来声音植物工厂构建提供理论基础。


关键词: 声音, 植物生物声学, 植物声频控制, 活态音乐

Abstract: The phenomenon that plants could perceive sound and communicate with each other has always been of interest to the academic community. Since the 1960s, scientists have explored the response of plants to sound as well as the pathways and mechanisms of related signaling using a variety of technical means. Numerous scientific experiments have confirmed that sound is an external mechanical force, and like other mechanical stimuli (e.g., wind, rain, touch, and vibration), regulating plant growth and development while activating signature cellular defense mechanism events during adversity response, such as scavenging of reactive oxygen species (ROS), primary metabolic alterations, and hormonal signals. This defense mechanism plays an important role against herbivores, pests, pathogens, and environmental changes by activating changes in its behavior through the production of compounds or substances that cause signaling cascades (the major transduction processes involving the transduction of plant signals and transmembrane transformations, plant intercellular signaling, and physiological and biochemical responses of plant cells) in response to external stimuli such as sound. We systematically analyzed the research progress during the period of 1965-2022 on the effects and mechanistic impacts of sound on plants, combed the current research methodologies in plant acoustics, and proposed new concepts and perspectives such as acoustic stimulation of chemosensitization in plants. The aim of this review was to promote the inter-disciplinary research among the disciplines of acoustic ecology, audiomechanics, and plant physiology. We further elaborated the specific implementation path and application prospects of sound in promoting plant growth, yield quality, etc., aiming to effectively exploring the processes and pathways affecting plant life from “living” sound and to provide a theoretical basis for the construction of sound plant factories in the future.


Key words: sound, plant bioacoustics, plant acoustic control, living music