Beyond the Trail—Understanding Non‐Native Plant Invasions in Mountain Ecosystems
作者:Agustina Barros, Eduardo Fuentes‐Lillo, Valeria Aschero, Aníbal Pauchard, María Alisa Alvarez, Ronja E. M. Wedegärtner, Jan Clavel, Jana Müllerová, Jan Pergl, Shengwei Zong, Michaela Vítková, Tereza Klinerová, Lohengrin A. Cavieres, Christian D. Larson, Lisa J. Rew, Tim Seipel, Chloe Meffre, Tomas Arellano, Franz Essl, Stefan Dullinger, Onalenna Gwate, Vincent Ralph Clark, Marc Achermann, Sylvia Haider, Jonas J. Lembrechts · 发表于:Global Ecology and Biogeography · 年份:2025 · DOI:10.1111/geb.70060 · 被引用次数:9 · 研究领域:Ecology and Vegetation Dynamics Studies、Rangeland and Wildlife Management、Plant and animal studies
ABSTRACT Aim We aimed to examine the abiotic, biotic and anthropogenic drivers of non‐native plant species distribution along hiking trails in mountainous regions. Location Nine mountain regions across six continents, including North America (USA), South America (Argentina and Chile), Europe (Sweden, Norway, Czech Republic), Africa (South Africa), Asia (China) and Oceania (Australia). Time Period Data were collected between 2016 to 2022 during the summer season. Major Taxa Studied Vascular plants. Methods We implemented a standardised sampling design (MIREN trail survey) with T‐shaped sample sites placed parallel to trails and perpendicular to adjacent vegetation. We examined the main drivers (abiotic, biotic and anthropogenic factors) affecting non‐native species' presence, richness and cover. Results At the global scale, abiotic (climatic) variables explained most of the variation in non‐native species richness. In contrast, biotic factors were the most important for the presence and cover of non‐native plants. Anthropogenic factors, including distance to the trail, use intensity and livestock grazing, were also important but to a lesser extent than the main factors. While the total number of non‐native species differed across regions, the patterns explaining plant invasions were consistent. Main Conclusions Our regional study identified mountain trails that are particularly vulnerable to plant invasions. Our findings suggest that under future scenarios of climate change, i...