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生态学杂志 ›› 2026, Vol. 45 ›› Issue (9): 3136-3147.doi: 10.13292/j.1000-4890.202609.009

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临时性湿地的生态特征和维持机制研究进展

乔雅楠,黄筑,袁嘉,袁兴中*   

  1. (重庆大学建筑城规学院, 重庆大学山地城镇建设与新技术教育部重点实验室, 重庆 400030)

  • 出版日期:2026-09-10 发布日期:2026-09-09

Research progress of ecological characteristics and maintenance mechanisms of ephemeral wetlands.

QIAO Yanan, HUANG Zhu, YUAN Jia, YUAN Xingzhong*   

  1. (Faculty of Architecture and Urban Planning, Key Laboratory of New Technology for Construction of Cities in Mountain Area, Ministry of Education, Chongqing University, Chongqing 400030, China).
  • Online:2026-09-10 Published:2026-09-09

摘要: 临时性湿地作为一类具有间歇性水文动态的独特小微湿地类型,在生物多样性保育和水文调节等方面发挥着不可替代的作用。这类湿地常因规模小、存在时间短而被忽视。本文提出了临时性湿地的概念,认为其是在孤立洼地中形成的、干湿状态交替发生的小微湿地生态系统,与永久性水体无持续连通;对临时性湿地的类型、生态特征、动态变化规律及其维持机制进行了综述。临时性湿地具有周期性干湿交替的水文特征,根据水文周期可划分为短暂型、间歇型、季节型与近永久型。临时性湿地是众多关键物种的偏好栖息地与繁殖场所,其生物群落呈现显著的专性适应策略,如休眠体形成、快速生活史及高扩散能力,群落结构随水文周期呈规律性动态变化。食物网构建受优先效应和捕食竞争平衡调控。维持临时性湿地生态完整性的关键机制在于“水文地形基质营养”四维耦合作用,其中水文周期是核心驱动力。全球气候变化、农业集约化及人类活动干扰正严重威胁广泛分布的临时性湿地的存续。未来需加强临时性湿地的基础调查,加强多尺度动态监测,深化临时性湿地生物多样性维持机制研究,发展适应性管理策略,以实现对临时性湿地的科学保护与可持续管理。


关键词: 临时性湿地, 水文特征, 动态变化, 生物适应, 维持机制, 小微湿地

Abstract: Ephemeral wetlands are a distinctive category of small and micro wetlands characterized by intermittent hydrological dynamics. They are irreplaceable in biodiversity conservation and hydrological regulation, yet are frequently overlooked due to their small size and short hydroperiods. Here, we define ephemeral wetlands as small and micro wetland ecosystems formed in isolated depressions, which are characterized by recurrent wet-dry alternation. We synthesized current understanding of the types, ecological characteristics, dynamic change, and maintenance mechanisms of ephemeral wetlands. Ephemeral wetlands are defined by recurrent wet-dry alternation and can be classified, according to hydroperiod, into temporary, intermittent, seasonal, and near-permanent types. They provide preferred habitats and breeding sites for many key species, and their biological communities exhibit pronounced adaptation strategies, including the formation of dormant propagules, rapid life histories, and high dispersal capacity. Community structure exhibits predictable dynamics along the hydrological cycle, while food-web assembly is regulated by priority effects and the balance between predation and competition. The ecological integrity of ephemeral wetlands is maintained through four-dimensional coupling of hydrology characteristics, topography, substrate, and nutrient dynamics, with the hydrological cycle as the primary driver. However, global climate change, agricultural intensification, and other anthropogenic disturbances are threatening the persistence of widely distributed ephemeral wetlands. Future research and management should strengthen baseline inventories, promote multiscale dynamic monitoring, deepen mechanistic understanding of biodiversity maintenance, and develop adaptive management strategies to support the scientific conservation and sustainable management of ephemeral wetlands.


Key words: ephemeral wetland, hydrological characteristics, dynamic change, biological adaptation, maintenance mechanism, small and micro wetland