Accès ouvert déclaré2026article
Plant diversity modifies multi-trophic interactions in croplands, grasslands and forests
Nian‐Feng Wan, Mu-Yao Li, Siyuan Shen, Jun-Xiang Zhou, Y C Zhu, Yu-Tong Zhu, Ben A. Woodcock, Yue‐Qing Hu, Shinichi Nakagawa, David Tilman, Andy Hector, Michel Loreau, Peter B. Reich, Matteo Dainese, Forest Isbell, Bernhard Schmid, Kris A. G. Wyckhuys, Geoff M. Gurr, Linsheng Wan, Nico Eisenhauer, Yann Hautier, Anu Eskelinen, Richard D. Bardgett, Paul Kardol, Lauchlan H. Fraser, Qi Su, Shiyun Qiu, Yavanna Aartsma, R. Albajes, Matthias Albrecht, M. P. Ali, Hugo Alejandro Álvarez, Corinne Anagonou, Jan C. Axmacher, Dan Bahauddin, Yongfei Bai, Elisabeth S. Bakker, Péter Batáry, Felix J.J.A. Bianchi, Fabian A. Boetzl, Jana Brandmeier, Buntikа А. Butcher, Abida Butt, Zhiping Cai, Alistair J. Campbell, Fengqin Cao, Simone Cesarz, Lourdes Chamorro, Jing‐Ting Chen, J K Chen, Li‐Lin Chen, Yuehua Chen, Yiying Chen, Gemma Clemente‐Orta, Luuk Croijmans, David W. Crowder, Jéssica K. S. Pachú, Anicet G. Dassou, F. S. Ramalho, Thomas Döring, Anne Ebeling, Francisco Sales Fernandes, Stefan Geisen, Tesfay Gidey, Wesley Augusto Conde Godoy, Jingwei Guo, Séverin Hatt, George E. Heimpel, Johannes Heinze, Chris Helzer, Finbarr G. Horgan, Zixuan Huang, Stine Kramer Jacobsen, Hervé Jactel, Anthony Joern, Mattias Jonsson, Agnes W. Kiriga, Margaret Kosmala, Luhui Kuang, Sarwan Kumar, Minoo Heidari Latibari, Feng Li, Frank Yonghong Li, Li J, Li Li, Qi Li, Xiaofei Li, Yi Li, Yingbin Li, Jiliang Liu, Jushan Liu, Wei-Jia Liu, Yinzhan Liu, Zhanfeng Liu, Gianalberto Losapio, Ola Lundin, Filipe Madeira, José Bruno Malaquias, Mostafa Ghafouri Moghaddam, A. Carolina Monmany‐Garzia, Xoaquín Moreira, Marina Morente, Bretor Katuku Mutua, Daniel Munyao Mutyambai, Yuta Nakano, Vojtêch Novotný, Lawrence O. Ochieng, Silvia Pappagallo, Daniel Paredes, Jana S. Petermann, Erik H. Poelman, Orelvis Portal, Mingjing Qu, Yordanys Ramos, Syed Rizvi, Francisca Ruano, F. Xavier Sans, Cornelia Sattler, Christian Schöb, Julian Schrader, Andreas Schuldt, Josef Settele, Jing Shang, Lene Sigsgaard, Daniel Ricardo Sosa‐Gómez, Michael Staab, Ingolf Steffan‐Dewenter, Philip C. Stevenson, Cory S. Straub, E. R. Sujii, Louis Sutter, Piotr Szefer, Hafiz Muhammad Tahir, Aimi Tanada, Pedro Henrique Brum Togni, Edina Török, Alba Tous‐Fandos, Silvère Tovignan, Matthias Tschumi, Alina Twerski, Shunsuke Utsumi, Dirk F. van Apeldoorn, Cassandra Vogel, Felix Wäckers, Lianjie Wang, Ling Wang, Ming‐Qiang Wang, Su Wang, Xiaodong Wang, Xinyu Wang, Yadong Wang, Yong-Zhen Wang, Wolfgang W. Weisser, Ellen A. R. Welti, Anna Wenda-Piesik, Wenjia Wu, Qingxuan Xu, Zhenzhu Xu, Huimin Yi, Xiaoke Zhang, Xiaoming Zhang, Zhengqun Zhang, Zhiwei Zhong, Hui Zhu, Pingyang Zhu, Yi Zou, Yu Zhu, Christoph Scherber
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Résumé fourni par la source
Multitrophic interactions can strongly influence the structure and functioning of ecosystems, but how plant diversity influences the direction and predictability of multitrophic interactions across agricultural and natural ecosystems remains unclear. Using 149 field studies across five continents, we found that, on average, increasing plant diversity tended to exert differential top-down and bottom-up effects in croplands versus grasslands and forests. Organic and nonorganic croplands exhibited 846 and 148% higher invertebrate natural enemy-to-herbivore abundance ratios under increased plant diversity, consistent with top-down control patterns where predator gains cause herbivore declines, enhancing crop outcomes. In grasslands and forests, increasing plant diversity was associated with bottom-up effects where enhanced productivity increased both herbivore and predator populations, with the enemy-to-herbivore ratio increasing 4.73% for grasslands and 21.2% for forests. Our findings suggest that biodiversity effects on productivity are not solely explained by direct plant-plant interactions and the resulting biodiversity-productivity relationship. Rather, they reveal patterns consistent with the framework of top-down and bottom-up effects, the relative balance of which may vary depending on ecosystem and management type. The magnitude of the effects of diversified farming on crop pests suggests that crop diversification may be an important avenue for managing crop pests preventatively and thereby enhancing agricultural sustainability.
Sujets associés
Ecology and Vegetation Dynamics StudiesIsotope Analysis in EcologyInsect-Plant Interactions and Control