中国农业气象 ›› 2026, Vol. 47 ›› Issue (9): 1518-1526.doi: 10.3969/j.issn.1000-6362.2026.09.013

• 农业生物气象栏目 • 上一篇    下一篇

极端气候事件对植物类中药材生长和活性成分含量的影响综述

朱宝琛,赵帆,张菀桐,李怡,华国栋,王超,张太   

  1. 1. 北京中医药大学东直门医院,北京 100700;2. 中国气象局公共气象服务中心,北京 100081;3. 中国中医科学院西苑医院,北京 100091
  • 收稿日期:2025-05-19 出版日期:2026-09-20 发布日期:2026-09-18
  • 作者简介:朱宝琛,E-mail:zbcbock123@sina.com
  • 基金资助:
    中央高水平中医医院临床科研业务费项目(DZMG−QNHB0003);中国中医科学院西苑医院能力提升项目(XYZX0101−44);北京市卫生健康委员会研究型病房卓越临床研究计划项目(BRWEP2024Z014170107);北京市科学技术委员会“北京市科技新星”人才项目(20230484370)

A Review on the Effects of Extreme Climate Events on Growth and Active Ingredient Contents of Botanical Chinese Medicinal Materials

ZHU Bao-chen, ZHAO Fan, ZHANG Wan-tong, LI Yi, HUA Guo-dong, WANG Chao, ZHANG Tai   

  1. 1. Dongzhimen Hospital, Beijing University of Chinese Medicine, Beijing 100700, China; 2. Public Meteorological Service Center, China Meteorological Administration, Beijing 100081; 3. Xiyuan Hospital, China Academy of Chinese Medical Sciences, Beijing 100091
  • Received:2025-05-19 Online:2026-09-20 Published:2026-09-18

摘要:

全球气候变化加剧,温度异常、降水量时空分异以及次生灾害显著影响了植物类中药材产量、品质与道地性,严重威胁中药材栽培管理。本研究综述极端气候事件对植物类中药材生长和药理成分含量的影响,探讨高温胁迫、低温冻害、干旱和洪涝等农业气象灾害对中药材生理生态过程的干预作用,以及对中药材适生区迁移、市场投机行为的驱动,探讨以气象监测预警、适应性栽培技术创新及生态补偿机制为核心的应对策略。结果表明:高温胁迫、低温冻害、降水量异常等极端气候事件会显著降低中药材产量,区域极端天气气候事件也将导致中药材内总酚、类黄酮和皂苷等有效成分含量降低,导致中药材的药效波动,影响最终价格以及市场的稳定性。针对极端气候事件需采取相应的气候适应性措施,利用MaxEnt模型等明确或优化中药材的适宜种植区,针对气象敏感性中药材适当引入大棚等设施开展保护性栽培和育种,构建综合病害防控体系,利用“灾后应急恢复”与“生态长效补偿”协同机制等方式,提升中药材的气候适应性及市场适应性,以减轻极端气候变化对中药材生产的不利影响。

关键词: 中药栽培, 高温胁迫, 低温冻害, 降水量异常, 适应性栽培, 生态补偿

Abstract:

The intensification of global climate change, characterized by temperature anomalies, spatiotemporal variability in precipitation and secondary disasters, has significantly affected the yield, quality and genuineness of plant−derived medicinal materials, and seriously threatened the cultivation and management of medicinal herbs. This study reviewed the effects of extreme climate events on the growth and pharmacological component contents of botanical Chinese medicinal materials, and discussed the interfering impacts of agro−meteorological disasters such as high temperature stress, low−temperature freezing injury, drought and flood on the physiological and ecological processes of Chinese medicinal herbs. It further explored how these events drove habitat migration and market speculation in the medicinal herb industry, while proposing countermeasures centred on meteorological monitoring and early warning systems, innovative adaptive cultivation techniques and ecological compensation mechanisms. The results showed that extreme climate events, such as heat stress, freezing injury and abnormal precipitation, significantly reduced medicinal herb yields. Regional extreme weather also could diminish the content of active compounds like total phenols, flavonoids and saponins, leading to fluctuations in efficacy, price volatility and weakened market stability. Targeted climate adaptation measures should be formulated in response to extreme climate events. The MaxEnt model could be adopted to clarify and optimize the suitable planting areas of medicinal materials. Facility cultivation such as greenhouse and breeding could be appropriately carried out for meteorological sensitive varieties with protective management. Meanwhile, it is necessary to construct an integrated disease prevention and control system, and coordinate the collaborative mechanism of post−disaster emergency recovery and long−term ecological compensation. These measures can improve the climatic and market adaptability of Chinese medicinal materials, so as to alleviate the adverse impacts of extreme climate change on medicinal material production.

Key words: Cultivation of Chinese herbal medicine, High?temperature stress, Low?temperature freezing injury, Precipitation anomaly, Adaptive cultivation, Ecological compensation