A framework for large-scale risk assessment of road-related impacts, with application to mustelids

Roads, while crucial for human development and economic growth, pose significant threats to biodiversity. Large-scale road risk assessments are essential for guiding infrastructure planning, particularly in identifying areas to avoid new construction or prioritizing regions for mitigation where road...

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Main Authors: Fernando Ascensão, Rafael Barrientos, Marcello D’Amico
Format: Article
Language:English
Published: Elsevier 2024-12-01
Series:Global Ecology and Conservation
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Online Access:http://www.sciencedirect.com/science/article/pii/S235198942400533X
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author Fernando Ascensão
Rafael Barrientos
Marcello D’Amico
author_facet Fernando Ascensão
Rafael Barrientos
Marcello D’Amico
author_sort Fernando Ascensão
collection DOAJ
description Roads, while crucial for human development and economic growth, pose significant threats to biodiversity. Large-scale road risk assessments are essential for guiding infrastructure planning, particularly in identifying areas to avoid new construction or prioritizing regions for mitigation where road networks are already established. However, conducting comprehensive assessments is challenging in regions with limited data on species’ responses to roads. In this study, we propose a methodological approach for global and regional risk assessments of road-related impacts, utilizing data on road exposure and species-level susceptibility to road effects. We first derive species-specific susceptibility to road impacts using available trait data and expert knowledge. This information is spatialized through species range maps, creating a cross-taxa susceptibility layer. We then combine this layer with infrastructure density data to produce a bivariate map that highlights the co-occurrence of susceptibility and exposure. Through this approach, we identify priority mitigation areas—regions with high susceptibility and high exposure where mitigation efforts should be concentrated—and priority preservation areas—regions with high susceptibility but low exposure that should be protected from further road development. Our case-study focuses on mustelids, a globally distributed group with significant vulnerability to road impacts yet underrepresented in road ecology studies. The results reveal that the highest-risk areas are concentrated in Eastern Europe, Southeast Asia, and scattered across sub-Saharan Africa, where high conservation value intersects with extensive road networks, marking these as priority mitigation areas. Priority preservation areas span mainly across South America, North America, and Siberia, with some areas across Africa and Borneo. This framework offers a foundation for preliminary assessments and proactive zoning, aiding in the identification of conservation management areas across different infrastructure types and taxa. Its adaptability makes it a valuable tool for researchers, wildlife managers, and transportation planners conducting large-scale assessments of infrastructure impacts on biodiversity.
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spelling doaj-art-24e1abfbe52c4efda6c20aa0ac9737922024-12-16T05:36:18ZengElsevierGlobal Ecology and Conservation2351-98942024-12-0156e03329A framework for large-scale risk assessment of road-related impacts, with application to mustelidsFernando Ascensão0Rafael Barrientos1Marcello D’Amico2cE3c - Centre for Ecology, Evolution and Environmental Changes, Faculdade de Ciências da Universidade de Lisboa, Campo Grande, Lisboa 1749-016, Portugal; Corresponding author.Road Ecology Lab, Department of Biodiversity, Ecology and Evolution, Facultad de Biología, Universidad Complutense de Madrid, Madrid E-28040, SpainDepartment of Conservation Biology and Global Change, Doñana Biological Station (EBD-CSIC), Seville E-41092, SpainRoads, while crucial for human development and economic growth, pose significant threats to biodiversity. Large-scale road risk assessments are essential for guiding infrastructure planning, particularly in identifying areas to avoid new construction or prioritizing regions for mitigation where road networks are already established. However, conducting comprehensive assessments is challenging in regions with limited data on species’ responses to roads. In this study, we propose a methodological approach for global and regional risk assessments of road-related impacts, utilizing data on road exposure and species-level susceptibility to road effects. We first derive species-specific susceptibility to road impacts using available trait data and expert knowledge. This information is spatialized through species range maps, creating a cross-taxa susceptibility layer. We then combine this layer with infrastructure density data to produce a bivariate map that highlights the co-occurrence of susceptibility and exposure. Through this approach, we identify priority mitigation areas—regions with high susceptibility and high exposure where mitigation efforts should be concentrated—and priority preservation areas—regions with high susceptibility but low exposure that should be protected from further road development. Our case-study focuses on mustelids, a globally distributed group with significant vulnerability to road impacts yet underrepresented in road ecology studies. The results reveal that the highest-risk areas are concentrated in Eastern Europe, Southeast Asia, and scattered across sub-Saharan Africa, where high conservation value intersects with extensive road networks, marking these as priority mitigation areas. Priority preservation areas span mainly across South America, North America, and Siberia, with some areas across Africa and Borneo. This framework offers a foundation for preliminary assessments and proactive zoning, aiding in the identification of conservation management areas across different infrastructure types and taxa. Its adaptability makes it a valuable tool for researchers, wildlife managers, and transportation planners conducting large-scale assessments of infrastructure impacts on biodiversity.http://www.sciencedirect.com/science/article/pii/S235198942400533XConservation zoningLinear infrastructureRoad ecologyRoad mitigationRoad planning
spellingShingle Fernando Ascensão
Rafael Barrientos
Marcello D’Amico
A framework for large-scale risk assessment of road-related impacts, with application to mustelids
Global Ecology and Conservation
Conservation zoning
Linear infrastructure
Road ecology
Road mitigation
Road planning
title A framework for large-scale risk assessment of road-related impacts, with application to mustelids
title_full A framework for large-scale risk assessment of road-related impacts, with application to mustelids
title_fullStr A framework for large-scale risk assessment of road-related impacts, with application to mustelids
title_full_unstemmed A framework for large-scale risk assessment of road-related impacts, with application to mustelids
title_short A framework for large-scale risk assessment of road-related impacts, with application to mustelids
title_sort framework for large scale risk assessment of road related impacts with application to mustelids
topic Conservation zoning
Linear infrastructure
Road ecology
Road mitigation
Road planning
url http://www.sciencedirect.com/science/article/pii/S235198942400533X
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