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Updated: Sep 27, 2026

Field Experiments of Pollination Ecology: The Case of Lycoris sanguinea var. sanguinea
Published on: November 25, 2016
Vegetation Types and Plant Invasion Shape Pollination Interactions on a Tropical Island
Laura Gómez-Devia1, Christopher N Kaiser-Bunbury2, Anna Traveset1
1Mediterranean Institute for Advanced Studies (IMEDEA, CSIC-UIB), Mallorca, Illes Balears, 07190 Esporles, Spain.
Abstract:
Understanding how habitat transformation and non-native species shape plant-pollinator interactions is important for conserving and restoring oceanic islands, where both disturbances are widespread yet rarely examined together. Here, we investigated pollination networks across six contrasting vegetation types spanning a temporal gradient of invasion by non-native flowering plants on a tropical island. We recorded 5263 visits involving 327 unique plant-pollinator interactions over a three-month sampling period. We found that vegetation type and plant invasion intensity jointly structure different components of plant-pollinator networks at fine spatial scales. Pollinator assemblage composition differed more substantially across vegetation types than across months, although pollinators did not form distinct vegetation-type-specific assemblages. Plant-pollinator interactions also differed among vegetation types, primarily due to plant species turnover. In parallel, increasing invasion intensity was associated with pollinators visiting fewer native plant species, reducing the proportion of visits received by native plants and their importance to pollinators within the network. Moreover, non-native pollinators became more specialized with increasing invasion intensity. Flower abundance was negatively related to the contribution of both plant and pollinator species to nestedness, a structural network property associated with robustness, possibly reflecting altered pollinator visitation patterns associated with honeybee dominance. Overall, our findings highlight the importance of considering both vegetation heterogeneity and invasion intensity for understanding and conserving island plant-pollinator networks.
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