生物多样性

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北京市蜻蜓目昆虫多样性分布状态及其可能的影响因素

王琦, 林美英, 韩煜, 史娜娜, 肖能文, 全占军   

  1. 中国环境科学研究院, 100012
    中国科学院动物研究所,
    绵阳师范学院,
  • 收稿日期:2026-03-06 修回日期:2026-05-25
  • 通讯作者: 肖能文

Diversity Distribution Status of Odonata in Beijing and Its Potential Influencing Factors

Meiying Lin, Yu Han, Nana Shi, Nengwen Xiao, Zhanjun Quan   

  1. , 100012,
    , ,
  • Received:2026-03-06 Revised:2026-05-25
  • Contact: Nengwen Xiao

摘要: 蜻蜓目昆虫作为典型的环境指示生物,其物种多样性、群落结构及种群动态与区域生态系统健康状况密切相关。本研究基于2020—2024年北京市蜻蜓目昆虫野外调查与GBIF公众观测数据,探讨北京市蜻蜓目昆虫多样性的分布特征及其主要环境影响因素。研究结果表明:2020年后共记录北京市蜻蜓目昆虫10科44属67种,蜻科、蟌科、春蜓科为优势科,灰蜻属和赤蜻属为优势属。与2010年以前历史记录相比,北京市蜻蜓目物种组成和结构发生一定变化,低斑蜻Libellula angelina等物种种群状况得到明显改善。6—8月份为蜻蜓目昆虫集中活动的月份,200—1000m海拔为核心分布区域。中心城区蓝绿空间能够维持一定水平的蜻蜓目昆虫多样性,但受高度城市化与生境均质化限制,群落以广适性类群为主,均匀度偏低;六环外生境是维持北京市蜻蜓目昆虫多样性的关键区域,能够支撑对环境较为敏感的物种生存。丝蟌科、伪蜻科金光伪蜻属、心斑绿蟌Enallagma cyathigerum等物种对于水质和人类活动干扰均有较好的指示作用。高程、土地利用类型、植被覆盖度、水质、人类干扰强度是影响北京市蜻蜓目昆虫分布的主要环境因子。从中心城区至郊区,随城市化梯度递减,影响北京市蜻蜓目昆虫分布的主导因子由人类干扰强度、土地利用类型和水质,逐步转变为高程、植被覆盖度等自然要素。建议提升六环内生境异质性与水体连通性,加强六环外自然与半自然区域生境保护,同时以指示物种为监测核心,构建长期观测体系。

关键词: 蜻蜓目, 分布特征, 城市化梯度, 环境影响因素, 北京

Abstract

Aims: Odonata are widely recognized as reliable bioindicators for evaluating aquatic-terrestrial ecosystem integrity. Their species diversity, community structure and population dynamics are closely correlated with regional ecological environment quality. Focusing on odonate diversity in Beijing, this study explored its spatio-temporal distribution patterns and identified the key environmental factors influencing their distribution, so as to provide a reference for insect biodiversity conservation and ecological habitat restoration in rapidly urbanizing areas. 

Methods: Based on systematic field surveys conducted across Beijing from 2020 to 2024 and valid citizen science observation data integrated from the GBIF database, we calculated and compared multiple biodiversity indices including the Shannon-Wiener diversity index, Simpson dominance index, Margalef richness index and Pielou evenness index of odonate communities. This study compared variations in odonate diversity across different seasons, elevation gradients, habitat types, water quality grades and human disturbance intensities. Furthermore, we analyzed the main environmental factors influencing Odonata distribution along urbanrural gradients. 

Results: A total of 67 Odonata species, belonging to 44 genera and 10 families, were recorded since 2020. Libellulidae, Coenagrionidae and Gomphidae were the dominant families, while Orthetrum and Sympetrum were the most speciose genera. Compared with historical records prior to 2010, the species composition and community structure of Odonata in Beijing have undergone considerable changes. Some historically recorded species were no longer detected, while several southern warm-adapted species were newly recorded in Beijing, which was closely associated with climate warming and urban wetland landscape reconstruction. The population status of Libellula angelina has improved substantially. Odonate species were predominantly active from June to August, and mainly distributed at elevations ranging from 200 to 1000 m. Urban green and blue spaces in the central city can maintain a certain level of odonate diversity. However, due to high urbanization and habitat homogenization, the community is dominated by ubiquitous generalist species, with low evenness. The zone between the Third and Fourth Ring Roads features scarce urban parks and intensive diverse human activities, serving as a relatively low-diversity area for odonates. Habitats beyond the Sixth Ring Road represent key areas for sustaining odonate diversity in Beijing, as they support the survival of relatively environmentally sensitive species. Several taxa, including species within Lestidae, the genus Somatochlora (Corduliidae), and Enallagma cyathigerum, exhibited strong indicator potential for water quality and anthropogenic disturbance, whereas species including Ophiogomphus spinicornis, Macromia beijingensis and Sympetrum croceolum showed high sensitivity to human impacts. Elevation, land use, fractional vegetation coverage, water quality, and human disturbance intensity are the main environmental factors affecting the distribution of Odonata in Beijing. Human disturbance intensity and water quality are the core environmental factors shaping common odonate community structure in Beijing. Along the urbanization gradient from the urban core to the rural periphery, the dominant drivers gradually shifted from human disturbance, land use and water quality toward natural factors such as elevation and fractional vegetation coverage. 

Conclusion: By revealing the driving mechanisms of Odonata distribution and the shifting characteristics of environmental factors along urbanization gradients, as well as identifying sensitive indicator species and conservation priority areas, this study recommends implementing zoning strategies in urban biodiversity conservation. Within the Sixth Ring Road, priority should be given to optimizing artificial vegetation configuration and improving habitat heterogeneity and water connectivity. Beyond the Sixth Ring Road, the protection of natural and semi-natural habitats should be strengthened, and a long-term monitoring system centered on indicator species should be established. This study clarifies the gradient differentiation mechanism of odonate community responses to urbanization, providing ecological references for the differentiated conservation and habitat management of odonate diversity in megacities.

Key words: Odonata, distribution pattern, urbanization gradient, environmental influencing factors, Beijing