TY - JOUR
T1 - Strength of niche processes for species interactions is lower for generalists and exotic species
AU - Peralta, Guadalupe
AU - Perry, George L.W.
AU - Vázquez, Diego P.
AU - Dehling, D. Matthias
AU - Tylianakis, Jason M.
N1 - Funding Information:
We thank Matthew Shaw and the Canterbury Museum, and Tom Schultz from the Te Papa Museum for access to the bird collections; Margaret Watts for facilitating plant traits of the Ecological Traits of New Zealand Flora database; Pieter Pelser for facilitating access to the University of Canterbury Herbarium; Jamie Wood, Kiran Parmar, and Riki Taylor for their contribution to the metanetwork database compilation. We acknowledge the use of species occurrence data drawn from the National Vegetation Survey Database (NVS) and bird biogeographic status from New Zealand Birds Online. We thank the editor and two anonymous reviewers for helpful suggestions to improve the manuscript. Symbols used in the graphical abstract are courtesy of the Integration and Application Network, University of Maryland Center for Environmental Science, ian.umces.edu/symbols/. This work was funded by the Marsden Fund (grant number UOC1705), administered by the Royal Society of New Zealand. D.M.D. was supported by a grant from the German Research Foundation (DFG 2754/1-1). The authors declare no conflict of interests.
Funding Information:
We thank Matthew Shaw and the Canterbury Museum, and Tom Schultz from the Te Papa Museum for access to the bird collections; Margaret Watts for facilitating plant traits of the Ecological Traits of New Zealand Flora database; Pieter Pelser for facilitating access to the University of Canterbury Herbarium; Jamie Wood, Kiran Parmar, and Riki Taylor for their contribution to the metanetwork database compilation. We acknowledge the use of species occurrence data drawn from the National Vegetation Survey Database (NVS) and bird biogeographic status from New Zealand Birds Online. We thank the editor and two anonymous reviewers for helpful suggestions to improve the manuscript. Symbols used in the graphical abstract are courtesy of the Integration and Application Network, University of Maryland Center for Environmental Science, ian.umces.edu/symbols/ . This work was funded by the Marsden Fund (grant number UOC1705), administered by the Royal Society of New Zealand. D.M.D. was supported by a grant from the German Research Foundation (DFG 2754/1‐1). The authors declare no conflict of interests.
Publisher Copyright:
© 2020 British Ecological Society
PY - 2020/9
Y1 - 2020/9
N2 - Niche and neutral processes jointly influence species interactions. Predictions of interactions based on these processes assume that they operate similarly across all species. However, species characteristics could systematically create differences in the strength of niche or neutral processes for each interspecific interaction. We used national-level records of plant–frugivore interactions, species traits, biogeographic status (native vs. exotic), phylogenies and species range sizes to test the hypothesis that the strength of niche processes in species interactions changes in predictable ways depending on trophic generalism and biogeographic status of the interacting species. The strength of niche processes (measured as trait matching) decreased when the generalism of the interacting partners increased. Furthermore, the slope of this negative relationship between trait matching and generalism of the interacting partners was steeper (more negative) for interactions between exotic species than those between native species. These results remained significant after accounting for the potential effects of neutral processes (estimated by species range size). These observed changes in the strength of niche processes in generating species interactions, after accounting for effects of neutral processes, could improve predictions of ecological networks from species trait data. Specifically, due to their shorter co-evolutionary history, exotic species tend to interact with native species even when lower trait matching occurs than in interactions among native species. Likewise, interactions between generalist bird species and generalist plant species should be expected to occur despite low trait matching between species, whereas interactions between specialist species involve higher trait matching.
AB - Niche and neutral processes jointly influence species interactions. Predictions of interactions based on these processes assume that they operate similarly across all species. However, species characteristics could systematically create differences in the strength of niche or neutral processes for each interspecific interaction. We used national-level records of plant–frugivore interactions, species traits, biogeographic status (native vs. exotic), phylogenies and species range sizes to test the hypothesis that the strength of niche processes in species interactions changes in predictable ways depending on trophic generalism and biogeographic status of the interacting species. The strength of niche processes (measured as trait matching) decreased when the generalism of the interacting partners increased. Furthermore, the slope of this negative relationship between trait matching and generalism of the interacting partners was steeper (more negative) for interactions between exotic species than those between native species. These results remained significant after accounting for the potential effects of neutral processes (estimated by species range size). These observed changes in the strength of niche processes in generating species interactions, after accounting for effects of neutral processes, could improve predictions of ecological networks from species trait data. Specifically, due to their shorter co-evolutionary history, exotic species tend to interact with native species even when lower trait matching occurs than in interactions among native species. Likewise, interactions between generalist bird species and generalist plant species should be expected to occur despite low trait matching between species, whereas interactions between specialist species involve higher trait matching.
KW - birds
KW - functional diversity
KW - native species
KW - neutral processes
KW - phylogenetic matching
KW - plant–frugivore networks
KW - specialization
KW - trait matching
UR - https://www.scopus.com/pages/publications/85087143946
U2 - 10.1111/1365-2656.13274
DO - 10.1111/1365-2656.13274
M3 - Article
C2 - 32495955
AN - SCOPUS:85087143946
SN - 0021-8790
VL - 89
SP - 2145
EP - 2155
JO - Journal of Animal Ecology
JF - Journal of Animal Ecology
IS - 9
ER -