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生态学杂志 ›› 2026, Vol. 45 ›› Issue (5): 1691-1702.doi: 10.13292/j.1000-4890.202605.036

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滨海湿地生态过程和功能对全球变化的响应研究进展

宋长春1,2*,宋艳宇2,王宪伟2,孙丽2,张豪2,辛卓航1   

  1. 1大连理工大学建设工程学院, 辽宁大连 116024; 2中国科学院东北地理与农业生态研究所湿地生态重点实验室, 长春 130102)

  • 出版日期:2026-05-10 发布日期:2026-05-08

Research advances in understanding the response of ecological processes and functioning in coastal wetlands to global change.

SONG Changchun1,2*, SONG Yanyu2, WANG Xianwei2, SUN Li2, ZHANG Hao2, XIN Zhuohang1   

  1. (1School of Infrastructure Engineering, Dalian University of Technology, Dalian 116024, Liaoning, China; 2Key Laboratory of Wetland Ecology, Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences, Changchun 130102, China).

  • Online:2026-05-10 Published:2026-05-08

摘要: 滨海湿地是滨海地球关键带的重要组成部分,是全球环境变化的敏感区和生态系统的脆弱区。近年来,受气候变化和人类活动的影响,滨海湿地大面积退化,深入认知气候变化和人类活动叠加驱动下,滨海湿地关键生态过程和功能变化是支撑滨海湿地生态保护及应对全球变化的重要科学基础。本文综述了全球变化背景下,滨海湿地关键生物、水文和碳源汇过程对气候变化和人类活动响应及其功能反馈的相关研究进展,并基于当前研究存在的问题,提出未来应深入开展多学科、多手段、多时空尺度的综合研究,揭示滨海湿地生物和多元素生物地球化学耦合循环过程对全球变化响应的多尺度特征及其碳反馈潜力,为有效减缓和应对全球变化及滨海地区脆弱湿地生态系统管理提供重要的数据支持和科学基础。


关键词: 滨海湿地, 气候变化, 人类活动, 生态功能, 响应机制

Abstract: Coastal wetlands are crucial components of coastal critical zone, serving as sensitive areas to global environmental change and vulnerable zones within the ecosystem. Driven by the combined effects of climate change and human activities, coastal wetlands have undergone widespread degradation in recent years. Clarifying the changes in key ecological processes and functions within these wetlands, under the combined influence of climate change and human activities, is scientifically urgent to support coastal wetland conservation and address global change. We synthesize recent research progress concerning the responses of key biological, hydrological, and carbon source/sink processes in coastal wetlands to climate change and human activities, as well as their functional feedbacks. Considering the limitations in current research, we propose that future studies should conduct indepth, multidisciplinary, multimethod, and multispatiotemporal scale integrated research to reveal multiscale characteristics of coastal wetland biological and multielement biogeochemical coupling cycles in response to global change. This work will also improve our understanding of carbon feedback potential in coastal wetlands. The results of these investigations will provide critical data support and a robust scientific foundation for effectively mitigating and adapting to global change, and for managing fragile coastal wetland ecosystems.


Key words: coastal wetland, climate change, human activity, ecological function, response mechanism