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生态学杂志 ›› 2026, Vol. 45 ›› Issue (1): 305-318.doi: 10.13292/j.1000-4890.202601.022

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增温对我国森林生态系统影响的研究进展

孟楚舒1,2,3,4,5,李旭1,2,3,4,吴国朋1,2,3,4,5,雷朝唐1,2,3,4,5,杨开军1,2,3,4,刘旭军1,2,3,4,列志旸1,2,3,4,AGUILA Luis Carlos Ramos1,周曙仡聃1,2,3,4*   

  1. (1中国科学院华南植物园广东省应用植物学重点实验室, 广州 510650; 2国家生态科学数据中心广东分中心, 广州 510650; 3广东省陆地海洋生态系统碳中和科学数据中心, 广州 510650; 4广州市生态园林科技协同创新中心, 广州 510650; 5中国科学院大学, 北京 100049)
  • 出版日期:2026-01-10 发布日期:2026-01-09

Effects of warming on forest ecosystems in China: An overview.

MENG Chushu1,2,3,4,5, LI Xu1,2,3,4, WU Guopeng1,2,3,4,5, LEI Chaotang1,2,3,4,5, YANG Kaijun1,2,3,4, LIU Xujun1,2,3,4, LIE Zhiyang1,2,3,4, AGUILA Luis Carlos Ramos1, ZHOU Shuyidan1,2,3,4*   

  1. (1Guangdong Provincial Key Laboratory of Applied Botany, South China Botanical Garden, Chinese Academy of Sciences, Guangzhou 510650, China; 2National Ecological Science Data Center Guangdong Branch, Guangzhou 510650, China; 3Guangdong Province Data Center of Terrestrial and Marine Ecosystems Carbon Cycle, Guangzhou 510650, China; 4Guangzhou Collaborative Innovation Center on Science-tech of Ecology and Landscape, Guangzhou 510650, China; 5University of Chinese Academy of Sciences, Beijing 100049, China).

  • Online:2026-01-10 Published:2026-01-09

摘要: 气候变化是当前全球面临的重大挑战,对森林生态系统结构与功能产生了深远影响。作为陆地生态系统上的重要碳汇,森林在气候调节和生物多样性维持等方面扮演着重要角色,然而,气候变暖正在快速改变其结构与功能。为明确增温对森林生态系统的影响及其机制,本研究系统梳理了国内外相关研究进展。基于我国开展的模拟增温实验和生态模型模拟等研究结果,探讨了增温对我国森林生态系统养分循环(碳、氮、磷)、水循环、植物物候(地上与地下)、植物生理特性(根、茎、叶)以及土壤微生物群落结构的影响。研究显示,增温通过影响土壤微生物群落结构与功能及植物生理与物候特征,进而影响物质循环与能量流动,最终对森林生态系统的养分供给、碳汇功能和生物多样性维持能力产生影响。尽管已取得了重要进展,但需进一步整合多学科技术,开展多因子协同作用下的跨尺度长期研究,为森林可持续发展提供理论支持。


关键词: 森林生态系统, 生产力, 养分循环, 土壤微生物群落, 生态系统服务

Abstract: Climate change is a major global challenge with profound impacts on the structure and function of forest ecosystems. As a vital carbon sink in the terrestrial ecosystem, forests play a crucial role in climate regulation and biodiversity maintenance. However, global warming is rapidly altering the structure and function of forest ecosystems. To clarify the effects of warming on forest ecosystems and underlying mechanisms, we systematically reviewed research progress both in China and abroad. Based on the findings from simulated warming experiments and ecological modeling studies conducted in China, we explored the effects of warming on nutrient cycling (carbon, nitrogen, phosphorus), hydrological cycle, plant phenology (both above and belowground), plant physiological traits (roots, stems, and leaves), and the structure of soil microbial communities. Warming influenced material cycles and energy flows by affecting the structure and function of soil microbial communities and plant physiological and phenological characteristics, ultimately impacting nutrient supply, carbon sink function, and biodiversity maintenance ability of forest ecosystems. Although there have been significant progresses, it is necessary to further integrate multidisciplinary technologies to conduct long-term and cross-scale studies on the synergistic effects of multiple factors, which would provide theoretical support for the sustainable development of forests.


Key words: forest ecosystem, productivity, nutrient cycling, soil microbial community, ecosystem services