Integrating species diversity, ecosystem services, climate and ecological stability helps to improve spatial representation of protected areas for quadruple win

IF 8 1区 环境科学与生态学 Q1 GEOGRAPHY, PHYSICAL Geography and Sustainability Pub Date : 2025-02-01 DOI:10.1016/j.geosus.2024.06.005
Hui Dang , Yihe Lü , Xiaofeng Wang , Yunqi Hao , Bojie Fu
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Abstract

Establishing and maintaining protected areas is a pivotal strategy for attaining the post-2020 biodiversity target. The conservation objectives of protected areas have shifted from a narrow emphasis on biodiversity to encompass broader considerations such as ecosystem stability, community resilience to climate change, and enhancement of human well-being. Given these multifaceted objectives, it is imperative to judiciously allocate resources to effectively conserve biodiversity by identifying strategically significant areas for conservation, particularly for mountainous areas. In this study, we evaluated the representativeness of the protected area network in the Qinling Mountains concerning species diversity, ecosystem services, climate stability and ecological stability. The results indicate that some of the ecological indicators are spatially correlated with topographic gradient effects. The conservation priority areas predominantly lie in the northern foothills, the southeastern, and southwestern parts of the Qinling Mountain with areas concentrated at altitudes between 1,5002,000 m and slopes between 40°50° as hotspots. The conservation priority areas identified through the framework of inclusive conservation optimization account for 22.9 % of the Qinling Mountain. Existing protected areas comprise only 6.1 % of the Qinling Mountain and 13.18 % of the conservation priority areas. This will play an important role in achieving sustainable development in the region and in meeting the post-2020 biodiversity target. The framework can advance the different objectives of achieving a quadruple win and can also be extended to other regions.

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整合物种多样性、生态系统服务、气候和生态稳定性有助于改善保护区的空间代表性,实现四赢
建立和维护保护区是实现2020年后生物多样性目标的关键战略。保护区的保护目标已经从狭隘地强调生物多样性转向了更广泛的考虑,如生态系统稳定性、社区对气候变化的适应能力和提高人类福祉。鉴于这些多方面的目标,必须明智地分配资源,通过确定具有战略意义的保护地区,特别是山区,来有效地保护生物多样性。本文从物种多样性、生态系统服务功能、气候稳定性和生态稳定性等方面对秦岭自然保护区网络的代表性进行了评价。结果表明,部分生态指标与地形梯度效应存在空间相关性。重点保护区域主要集中在秦岭北部山麓、东南部和西南部,海拔1500 ~ 2000 m,坡度40°~ 50°为重点保护区域。通过包容性保护优化框架确定的重点保护区域占秦岭总面积的22.9%。现有保护区仅占秦岭总面积的6.1%,占重点保护区面积的13.18%。这将在实现该区域的可持续发展和实现2020年后生物多样性目标方面发挥重要作用。该框架可以推进实现四赢的不同目标,也可以扩展到其他地区。
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来源期刊
Geography and Sustainability
Geography and Sustainability Social Sciences-Geography, Planning and Development
CiteScore
16.70
自引率
3.10%
发文量
32
审稿时长
41 days
期刊介绍: Geography and Sustainability serves as a central hub for interdisciplinary research and education aimed at promoting sustainable development from an integrated geography perspective. By bridging natural and human sciences, the journal fosters broader analysis and innovative thinking on global and regional sustainability issues. Geography and Sustainability welcomes original, high-quality research articles, review articles, short communications, technical comments, perspective articles and editorials on the following themes: Geographical Processes: Interactions with and between water, soil, atmosphere and the biosphere and their spatio-temporal variations; Human-Environmental Systems: Interactions between humans and the environment, resilience of socio-ecological systems and vulnerability; Ecosystem Services and Human Wellbeing: Ecosystem structure, processes, services and their linkages with human wellbeing; Sustainable Development: Theory, practice and critical challenges in sustainable development.
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