Journal
GLOBAL ECOLOGY AND BIOGEOGRAPHY
Volume 25, Issue 7, Pages 912-922Publisher
WILEY
DOI: 10.1111/geb.12315
Keywords
Animal-plant interaction; fleshy fruit; food web; frugivory; insular network; modularity
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Funding
- FCT [IF/00441/2013, Marie-Curie CIG-321794]
- BBVA Foundation (Spain)
- Ministerio de Economia y Competitividad (Spain) [CGL2012-C02-01, CGL2013-44386-P]
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Aim Mutualistic network parameters, such as modularity and nestedness, show non-random linkage patterns. Both increase network stability in different ways. Modularity hampers extinction cascades, whereas nestedness resists network disassembly. We explore these parameters in seed-dispersal networks in two archipelagos and the significance of life history, habitat, geography and phylogeny as drivers of linkage patterns and the applicability of modules as biogeographical entities. Location Canaries (Atlantic Ocean) and Galapagos (Pacific Ocean). Methods We compiled data on plant-seed disperser interactions from own observations and the literature, estimated network parameters describing interaction patterns (connectance, nestedness and modularity) and constructed a backbone phylogeny for the analyses. Results The Canarian network was highly nested but weakly modular, whereas the Galapagos network showed the opposite characteristics. Most key network species are native and have a favourable conservation status. Modularity in the Canaries is correlated with habitats (indirectly affected by altitude and orientation), whereas in the Galapagos it mainly reflects the functional roles of species. Main conclusions The divergent link patterns for the archipelagos imply that the highly nested Canarian network is stable against disassembly, whereas the modular Galapagos network may show strong resistance against extinction cascades. This difference may be driven by the specific evolutionary dynamics on the archipelagos.
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