Impacts of climate change and human activities on three Glires pests of the Qinghai–Tibet Plateau

高原(数学) 鼠兔 气候变化 归一化差异植被指数 地理 生态学 生态位 自然地理学 分布(数学) 土拨鼠 高度(三角形) 航程(航空) 栖息地 生物 数学分析 国家公园 材料科学 数学 复合材料 几何学
作者
Zhicheng Wang,Yanan Deng,Yukun Kang,Yan Wang,Duanhong Bao,Yuchen Tan,Kang An,Junhu Su
出处
期刊:Pest Management Science [Wiley]
卷期号:80 (10): 5233-5243
标识
DOI:10.1002/ps.8250
摘要

Abstract BACKGROUND The range of Glires is influenced by human activities and climate change. However, the extent to which human activities and environmental changes have contributed to this relationship remains unclear. We examined alterations in the distribution changes and driving factors of the Himalayan marmot, plateau pika, and plateau zokor on the Qinghai–Tibet Plateau (QTP) using the maximum entropy (MaxEnt) model and a geographical detector (Geodetector). RESULTS The MaxEnt model showed that the contribution rates of the human footprint index (HFI) to the distribution patterns of the three types of Glires were 46.70%, 58.70%, and 59.50%, respectively. The Geodetector results showed that the distribution pattern of the Himalayan marmot on the QTP was influenced by altitude and the normalized difference vegetation index (NDVI). The distribution patterns for plateau pikas and plateau zokors were driven by HFI and NDVI. Climate has played a substantial role in shaping suitable habitats for these three Glires on the QTP. Their suitable area is expected to decrease over the next 30–50 years, along with their niche breadth and overlap. Future suitable habitats for the three Glires tended to shift toward higher latitudes on the QTP. CONCLUSION These findings underscore the impacts of environmental and human factors on the distribution of the three Glires on the QTP. They have enhanced our understanding of the intricate relationships between Glires niches and environments. This can aid in identifying necessary interventions for developing effective early warning systems and prevention strategies to mitigate Glires infestations and plague epidemics on the QTP. © 2024 Society of Chemical Industry.
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