bioRxiv · 10.1101/2022.12.25.521894
Invasive species modulate the structure and stability of a multilayer mutualistic network.
Abstract
Species interactions are the backbone of the structure and dynamics of communities. The extensive research into the link between structure and stability has been primarily theoretical and focused on monotrophic networks. Therefore, how the disruption of multitrophic interactions alters communities response to perturbations in nature remains an open question. Here, we explored how non-native ungulates affect pollination-seed dispersal multilayer networks in Patagonia, Argentina. Ungulates disrupt a hummingbird-mistletoe-marsupial keystone interaction, which alters community composition. We calculated interlayer connectivity, modularity, and species roles in connecting modules for intact vs. invaded networks. To link structural changes to stability, we quantified network tolerance to a single random species removal (disturbance propagation) and sequential species removal (robustness) using a stochastic coextinction model. Non-native ungulates reduced the connectivity between pollination and seed dispersal and produced fewer modules with a skewed size distribution. Moreover, species shifted their structural role, primarily from connectors to peripherals, thereby fragmenting the network by reducing the "bridges" among modules. These structural changes altered the dynamics of cascading effects in the community, increasing disturbance propagation and reducing network robustness. Our results highlight the importance of understanding the mechanisms that alter the structure and subsequent stability of multitrophic communities in nature.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Vitali, A., Ruiz-Suarez, S., Vazquez, D., Schleuning, M., Rodriguez-Cabal, M., Sasal, Y., Pilosof, S.. 2022-12-25. Invasive species modulate the structure and stability of a multilayer mutualistic network.. https://doi.org/10.1101/2022.12.25.521894
Cite the original work for its findings. Save a collection to share your selection of sources.