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Mycorrhizal strategy of non-native plants varies with biome and disturbance.
- Cazzaniga, Sara Giulia;
- Lauber, Thomas;
- van den Hoogen, Johan;
- Beaury, Evelyn M;
- Bueno, C Guillermo;
- Bever, James D;
- Damasceno, Gabriella;
- Catford, Jane;
- Lenoir, Jonathan;
- Martin, Adam;
- Mori, Akira S;
- Novakovskiy, Alexander;
- Gutiérrez, Alvaro G;
- González-Robles, Ana;
- de Gasper, André Luís;
- Moles, Angela;
- Stanisci, Angela;
- Csecserits, Anikó;
- Jentsch, Anke;
- Kuzemko, Anna;
- Perea, Antonio J;
- Nerlekar, Ashish;
- Munje, Avishkar;
- Güler, Behlül;
- Jiménez-Alfaro, Borja;
- Hérault, Bruno;
- Pinho, Bruno X;
- Baraloto, Chris;
- Rossi, Christian;
- Hending, Daniel;
- Laughlin, Daniel C;
- Rogers, Dave;
- Schellenberger Costa, David;
- Thakur, Dinesh;
- Uogintas, Domas;
- Chacón-Madrigal, Eduardo;
- Alvarez-Davila, Esteban;
- Weiher, Evan;
- Thomas, Evert;
- Gonçalves, Fernando;
- Rodrigues, Flávio;
- Sabatini, Francesco Maria;
- Schurr, Frank M;
- Essl, Franz;
- Zizka, Georg;
- Bonari, Gianmaria;
- Swacha, Grzegorz;
- Chen, Han YH;
- Bruelheide, Helge;
- Ford, Henry;
- Wang, Hua-Feng;
- Biurrun, Idoia;
- Aubin, Isabelle;
- Dembicz, Iwona;
- Willie, Jacob;
- Altman, Jan;
- Svenning, Jens-Christian;
- Lichstein, Jeremy W;
- Moeslund, Jesper Erenskjold;
- Dolezal, Jiri;
- Cornelissen, Johannes HC;
- Hunter, John;
- Messier, Julie;
- Dengler, Jürgen;
- Homeier, Jürgen;
- Orwin, Kate H;
- Korznikov, Kirill;
- Van Meerbeek, Koenraad;
- Macía, Manuel J;
- Schmidt, Marco;
- Varricchione, Marco;
- Carlucci, Marcos Bergmann;
- Spasojevic, Marko;
- Giorgis, Melisa A;
- Chytrý, Milan;
- El-Sheikh, Mohamed A;
- Hatim, Mohamed Z;
- Kraft, Nathan JB;
- Mohanbabu, Neha;
- Phillips, Oliver L;
- Reich, Peter B;
- Pielech, Remigiusz;
- Arasa-Gisbert, Ricard;
- Guarino, Riccardo;
- Testolin, Riccardo;
- Tarifa, Rubén;
- Mukul, Sharif A;
- Phartyal, Shyam S;
- Schmitt, Sylvain;
- Haider, Sylvia;
- Dziuba, Tetiana;
- Domingues, Tomas;
- Liu, Udayangani;
- Golub, Valentin;
- Silva, Vasco;
- Fontana, Veronika;
- Vandvik, Vigdis;
- Kissling, W Daniel;
- Stančić, Zvjezdana;
- Winter, Marten;
- Crowther, Thomas W;
- Delavaux, Camille S
Published Web Location
https://doi.org/10.1038/s41559-026-03144-9Abstract
Predicting which non-native plant species will become established and where is critical for conserving and managing biodiversity. Theory suggests that the mycorrhizal strategy of non-native plants may predict their establishment success. Here we combine a global dataset of 440,788 vegetation plots with data on plant native status and mycorrhizal type to assess mycorrhizal strategy of non-native plants. The mycorrhizal strategy of non-native plants varies strongly across biomes. Across grassland and desert biomes, non-native species are more frequently non-mycorrhizal than native species, whereas in other biomes non-native species are more likely to be mycorrhizal, most commonly arbuscular-mycorrhizal. Disturbance type and intensity are key predictors of mycorrhizal strategy of non-native species, as mycorrhizal species are favoured by landscape modification and non-mycorrhizal species by natural and human-caused disturbance events. Facultatively mycorrhizal species are consistently under-represented among non-native plants compared with natives, suggesting that symbiotic flexibility does not confer an advantage for non-natives as previously expected. Our study shows that non-native mycorrhizal strategy varies across biogeographical contexts and disturbance, highlighting the need for region-specific prevention and management approaches to plant species introductions.
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