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Roadside disturbance promotes plant communities with arbuscular mycorrhizal associations in mountain regions worldwide.

Authors :
Clavel, Jan
Lembrechts, Jonas J.
Lenoir, Jonathan
Haider, Sylvia
McDougall, Keith
Nuñez, Martin A.
Alexander, Jake
Barros, Agustina
Milbau, Ann
Seipel, Tim
Pauchard, Anibal
Fuentes‐Lillo, Eduardo
Ratier Backes, Amanda
Dar, Pervaiz
Reshi, Zafar A.
Aleksanyan, Alla
Zong, Shengwei
Arevalo Sierra, José Ramón
Aschero, Valeria
Verbruggen, Erik
Source :
Ecography. Jul2024, Vol. 2024 Issue 7, p1-14. 14p.
Publication Year :
2024

Abstract

We assessed the impact of road disturbances on the dominant mycorrhizal types in ecosystems at the global level and how this mechanism can potentially lead to lasting plant community changes. We used a database of coordinated plant community surveys following mountain roads from 894 plots in 11 mountain regions across the globe in combination with an existing database of mycorrhizal–plant associations in order to approximate the relative abundance of mycorrhizal types in natural and disturbed environments. Our findings show that roadside disturbance promotes the cover of plants associated with arbuscular mycorrhizal (AM) fungi. This effect is especially strong in colder mountain environments and in mountain regions where plant communities are dominated by ectomycorrhizal (EcM) or ericoid‐mycorrhizal (ErM) associations. Furthermore, non‐native plant species, which we confirmed to be mostly AM plants, are more successful in environments dominated by AM associations. These biogeographical patterns suggest that changes in mycorrhizal types could be a crucial factor in the worldwide impact of anthropogenic disturbances on mountain ecosystems. Indeed, roadsides foster AM‐dominated systems, where AM‐fungi might aid AM‐associated plant species while potentially reducing the biotic resistance against invasive non‐native species, often also associated with AM networks. Restoration efforts in mountain ecosystems will have to contend with changes in the fundamental make‐up of EcM‐ and ErM plant communities induced by roadside disturbance. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09067590
Volume :
2024
Issue :
7
Database :
Academic Search Index
Journal :
Ecography
Publication Type :
Academic Journal
Accession number :
178178543
Full Text :
https://doi.org/10.1111/ecog.07051