Accès ouvert déclaré2026article
Plant diversity modifies multi-trophic interactions in croplands, grasslands and forests
Anthony Joern, Hervé Jactel, Pingyang Zhu, Geoff Gurr, Yinzhan Liu, Hui Zhu, Felix Bianchi, Mattias Jonsson, Matthias Tschumi, A. Carolina Monmany‐Garzia, Weiguo Sang, Dirk van Apeldoorn, Buntika Butcher, Yingbin Li, R. Albajes, David W Crowder, Cassandra Ezra Vogel, Andy Hector, Xiaoli Hu, Huimin Yi, David Tilman, Andreas Schuldt, Christian Schöb, Zhiwei Zhong, Yue‐Qing Hu, Su Wang, Jing Shang, Louis Sutter, Margaret Kosmala, Xinqiang Xi, Jing‐Ting Chen, Wenjia Wu, Yi Zou, Fajun Chen, Xiaofei Li, Ling Wang, Erik H. Poelman, Luhui Kuang, Péter Batáry, George Eugenio Heimpel, Vojtêch Novotný, Yi Li, Qi Su, Stefan Geisen, Yann Hautier, Hugo Alejandro Álvarez, Fabian Alexander Boetzl, Gemma Clemente-Orta, Minoo Heidari Latibari, Jana Brandmeier, Jingwei Guo, Shinichi Nakagawa, José Bruno Malaquias, Jun-Xiang Zhou, Muyao Li, Paul Kardol, Yu-Tong Zhu, Xiaodong Wang, Zhiping Cai, Jushan Liu, Jinhua Li, Zhenzhu Xu, Li‐Lin Chen, Yongfei Bai, Zixuan Huang, Likun Li, Ben A. Woodcock, Ola Lundin, Chao-Dong Zhu, Shiyun Qiu, Alistair J. Campbell, Quanhui Ma, Ming-Qiang Wang, Zhanfeng Liu, Xiaoming Zhang, Linsheng Wan, Deli Wang, Fengqin Cao, Gianalberto Losapio, Yavanna Aartsma, Jéssica Karina da Silva Pachú, Yiying Chen, Lourdes Chamorro‐Lorenzo, Tesfay Gidey, Feng-Rui Li, Anicet Dassou, Corinne Mèdéou Anagonou, Peter B Reich, Chaoxu Li, Wei-Jia Liu, Elisabeth Bakker, Abida Butt, Francisco de Sousa Ramalho, Chris Helzer, Ingolf Steffan‐Dewenter, Jiliang Liu, Agnes Waringa Waringa Kiriga, Francisco Sales Fernandes, Lauchlan Fraser, Richard David Bardgett, Anne Ebeling, Wolfgang W. Weisser, Helge Bruelheide, Forest Isbell, Kris A. G. Wyckhuys, Qi Li, Orelvis Portal, Julian Chen, Yordanys Ramos, Julian Schrader, Johannes Heinze, Séverin Hatt, Xoaquín Moreira, Wesley Augusto Conde Godoy, Pedro Henrique Brum Togni, Daniel Ricardo Sosa-Gómez, Cory Straub, Dan Bahauddin, Md Panna Ali, Filipe Madeira, Aimi Tanada, Thomas Döring, Anna Wenda-Piesik, Stine Kramer Jacobsen, Siyuan Shen, Simone Cesarz, Shunsuke Utsumi, Matteo Dainese, Alina Twerski, Luuk Croijmans, Daniel Munyao Mutyambai, Edina Török, E. R. Sujii, Bretor Katuku Mutua, Nian-Feng Wan, Mostafa Ghafouri Moghaddam, Jan C. Axmacher, Daniel Paredes, Sarwan Kumar, Matthias Albrecht, Josef Settele, Alba Tous‐Fandos, Xinyu Wang, Xiaoke Zhang, Cornelia Sattler, Yadong Wang, Hafiz Muhammad Tahir, Philip C. Stevenson, Francisca Ruano, Zhengqun Zhang, Yuta Nakano, Qingxuan Xu, Yu Zhu, Xiaoling Tan, Yong-Zhen Wang, Mingjing Qu, Lixia Zhang, Michael Staab, Lianjie Wang, Jana S. Petermann, Lene Sigsgaard, Marina Morente, Piotr Szefer, Syed Zulfiqar Mehdi Rizvi, Lawrence O. Ochieng, F. Xavier Sans-Serra, Silvère Tovignan, Felix Wäckers, Silvia Pappagallo, Anu Eskelinen, Finbarr G Horgan, Michel Loreau, Frank Yonghong Li, Xiaoming Lu, Ellen A. R. Welti, Christoph Scherber, Bernhard Schmid, Nico Eisenhauer, Sub Ecology and Biodiversity
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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.
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