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生态学杂志 ›› 2026, Vol. 45 ›› Issue (4): 1143-1150.doi: 10.13292/j.1000-4890.202604.006

• ·城市生态系统保护与高质量发展专栏· • 上一篇    下一篇

高温胁迫对城市园林植物的危害及应对措施展望

何婷婷1,2,马鹏宇1,陈晓敏1,赵瀚晨1,于超2*   

  1. 1北京花乡花木集团有限公司, 北京 100067; 2北京林业大学园林学院, 北京 100083)
  • 出版日期:2026-04-10 发布日期:2026-04-10

The damages caused by high temperature stress to urban landscape plants and the prospects for countermeasures.

HE Tingting1,2, MA Pengyu1, CHEN Xiaomin1, ZHAO Hanchen1, YU Chao2*   

  1. (1Beijing Green Garden Group Co., Ltd., Beijing 100067, China; 2School of Landscape Architecture, Beijing Forestry University, Beijing 100083, China).

  • Online:2026-04-10 Published:2026-04-10

摘要: 全球气候变化背景下,极端高温事件频发,对城市园林植物的生长与生态功能构成严重威胁。本文系统梳理了高温胁迫对园林植物的多维度危害以及植物相应的适应性响应机制。在危害方面,总结了植物因物种、季节与环境互作而异的可耐受高温范围,并从光合系统损伤、呼吸代谢失衡及水分蒸腾波动等方面剖析其生理表现;在响应机制方面,重点阐述了渗透调节、热激蛋白与挥发性有机物等在缓解高温胁迫中的协同作用。针对当前研究中存在的多因子协同评价不足、现代生物技术应用滞后、生态与公共健康平衡失调等问题,提出应通过构建智能监测预警系统、开发高通量测序与基因编辑技术、协同优化生态工程与微气候调控等途径加以应对。这些跨学科策略是提升城市绿化气候韧性的关键,可为缓解高温胁迫、保障城市生态安全提供理论依据与解决方案。


关键词: 园林植物, 高温胁迫, 耐受高温范围, 高温损伤, 城市生态

Abstract: Under global climate change, the frequent occurrence of extreme heat events poses a serious threat to the growth and ecological functions of urban landscape plants. We systematically outline the multi-dimensional damages caused by heat stress and the adaptive responses in these plants. Regarding the damages, we summarize the species, season, and environment-dependent high-temperature tolerance ranges of plants, and analyze physiological manifestations including damages to the photosynthetic system, respiratory metabolic imbalances, and exacerbated water transpiration fluctuations. In terms of response mechanisms, we emphasize the synergistic roles of osmotic regulation, heat shock proteins, and volatile organic compounds in mitigating heat stress. To address current challenges such as insufficient multi-factor synergistic evaluation, lagging application of modern biotechnology, and the imbalance between ecology and public health, we propose the establishment of intelligent monitoring and early warning systems, the development of high-throughput sequencing and gene editing technologies, and the coordinated optimization of ecological engineering and microclimate regulation. These interdisciplinary strategies are crucial for enhancing the climate resilience of urban ecosystems and can provide a theoretical basis and practical solutions for alleviating heat stress and ensuring urban ecological security.

Key words: landscape plant, heat stress, high temperature tolerance range, high temperature damage, urban ecology