Effects of expansion of protected areas and habitat transformation on spatiotemporal variation in human–wildlife conflict
Yumei Li, Chao Zhang, Huayao Gao, Ming Lu, Yonggang Nie
Chinese Academy of Sciences Institute of Zoology University of Chinese Academy of Sciences
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摘要与影响
Land‐use changes and the expansion of protected areas (PAs) have fostered increased interactions between humans and wildlife, resulting in an escalation of human–wildlife conflict (HWC) globally. However, HWC spatiotemporal pattern variation and its associations with PAs and land‐use change remain poorly understood. To address this knowledge gap, we mapped and analyzed HWCs from 1990 to 2022 across China. We comprehensively mapped the spatiotemporal dynamics of HWCs in ArcGIS with data sets stratified by county, year, and species; assessed the impact of PAs through propensity score matching; and analyzed the effects of habitat transformation with linear mixed models. As PA increased from 0 to 20,000 km 2 , the likelihood of HWCs initially increased (50%) before declining (20%). Conversely, as the distance from a PA grew, the likelihood of HWC gradually decreased (0 beyond 65 km). There was a temporal lag between the establishment of a PA and the occurrence of HWC. Habitat loss catalyzed HWCs, whereas decreased levels of habitat fragmentation sometimes initially caused a temporary increase in HWCs. In general, the distribution of PAs greatly affected HWC occurrence, and habitat loss and fragmentation were critical drivers of HWCs, both of which exhibited time‐lagged effects. HWC has become more challenging to address as conservation initiatives have led to significant recovery of the habitats and populations of wild animals. Further measures to address the HWCs are needed to ensure the preservation of animal welfare while fostering the mutually beneficial coexistence of humans and animal species. Finally, our study provides an important starting point for informing future HWC research and conservation planning on a global scale.
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物理Wildlife Ecology and Conservation
Rangeland Management and Livestock Ecology · Conservation, Biodiversity, and Resource Management
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