Larger habitat islands maintain more persistent mutualistic assemblages

Habitat loss and fragmentation threaten biodiversity by reducing species richness and disrupting ecological interactions. But it is poorly understood how reduced habitat area and increased isolation impact community persistence, as measured by its capacity to maintain multispecies coexistence. We draw on an intensive, multi-year field study of mutualistic interactions in plant-frugivore and plant-pollinator networks across 41 islands in an insular fragmented landscape formed by dam construction in 1959. We show that the loss of island area after inundation is the primary driver that reduces the persistence of mutualistic assemblages, beyond merely reducing species richness. We further identify structural mechanisms of persistence: on larger islands, decreasing network modularity enhances persistence in both plant-frugivore and plant-pollinator communities, whereas increasing nestedness contributes to persistence only in plant-pollinator communities. These findings represent a conceptual advance in understanding the impact of habitat loss on biodiversity by showing that species loss in small habitat fragments may result from the reduced capacity of their mutualistic communities to support species coexistence, mediated by changes in network structure. We urge to include evaluations of community persistence into the design of conservation and habitat restoration strategies to more effectively mitigate the long-term impacts of habitat loss and fragmentation on biodiversity. Habitat loss can disrupt mutualistic interactions that sustain biodiversity. This study shows that larger habitat islands support more persistent plant-frugivore and plant-pollinator assemblages, linked to network modularity and nestedness.

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Publication Details

Journal
Nature Communications
Published
2026-08-24
DOI
https://doi.org/10.1038/s41467-026-77074-2
Primary Topic
Plant and animal studies
Type
article
Field-Weighted Citation Impact
0.00

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article

Larger habitat islands maintain more persistent mutualistic assemblages

Chen Zhu, Peng Ren, Fernando Gonçalves, Ping Ding et al.
Nature Communications
Plant and animal studies
article

Larger habitat islands maintain more persistent mutualistic assemblages

Chen Zhu, Peng Ren, Fernando Gonçalves, Ping Ding, Wande Li, Yuhao Zhao, Chuliang Song, Jordi Bascompte, Xingfeng Si, Di Zeng, Bo Dalsgaard, Longxiao Chang
article en

Abstract

Habitat loss and fragmentation threaten biodiversity by reducing species richness and disrupting ecological interactions. But it is poorly understood how reduced habitat area and increased isolation impact community persistence, as measured by its capacity to maintain multispecies coexistence. We draw on an intensive, multi-year field study of mutualistic interactions in plant-frugivore and plant-pollinator networks across 41 islands in an insular fragmented landscape formed by dam construction in 1959. We show that the loss of island area after inundation is the primary driver that reduces the persistence of mutualistic assemblages, beyond merely reducing species richness. We further identify structural mechanisms of persistence: on larger islands, decreasing network modularity enhances persistence in both plant-frugivore and plant-pollinator communities, whereas increasing nestedness contributes to persistence only in plant-pollinator communities. These findings represent a conceptual advance in understanding the impact of habitat loss on biodiversity by showing that species loss in small habitat fragments may result from the reduced capacity of their mutualistic communities to support species coexistence, mediated by changes in network structure. We urge to include evaluations of community persistence into the design of conservation and habitat restoration strategies to more effectively mitigate the long-term impacts of habitat loss and fragmentation on biodiversity. Habitat loss can disrupt mutualistic interactions that sustain biodiversity. This study shows that larger habitat islands support more persistent plant-frugivore and plant-pollinator assemblages, linked to network modularity and nestedness.

Nature Communications
University of Copenhagen (DK), Zhejiang A & F University (CN), University of California, Los Angeles (US), University of Zurich (CH), Princeton Public Schools (US), Evolutionary Genomics (United States) (US), Jiyang College of Zhejiang A&F University (CN), HUN-REN Centre for Ecological Research (HU), Zhejiang University (CN), Ludwig-Maximilians-Universität München (DE)
National Science Foundation, Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung, National Natural Science Foundation of China, National Key Research and Development Program of China
Life in Land
Openalex Percentile: Top 7%
Plant and animal studies
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