Plant‐mediated effects of fire and fragmentation drive plant–pollinator interaction β‐diversity in fire‐dependent pine savannas

Author:

Moreno‐García Pablo12ORCID,Freeman Johanna E.34,Campbell Joshua W.5,Broadbent Eben N.4,Almeyda Zambrano Angélica M.6,Prata Gabriel4,de Almeida Danilo R. A.47,Gilb Scott38,Baiser Benjamin9

Affiliation:

1. Biological Sciences, Louisiana State University Baton Rouge LA USA

2. School of Natural Resources and Environment, University of Florida Gainesville FL USA

3. Florida Fish and Wildlife Conservation Commission, Fish and Wildlife Research Institute Tallahassee FL USA

4. School of Forest, Fisheries, and Geomatics Sciences, University of Florida Gainesville FL USA

5. USDA Agricultural Research Service, Pest Management Research Unit, Northern Plains Agricultural Research Sidney MT USA

6. Center for Latin American Studies, University of Florida Gainesville FL USA

7. Universidade de Sao Paulo Escola Superior de Agricultura Luiz de Queiroz, Ciencias Florestais Piracicaba SP Brazil

8. Northern Arizona University, Center for Adaptable Western Landscapes Flagstaff AZ USA

9. Wildlife Ecology and Conservation, University of Florida Gainesville FL USA

Abstract

Interaction β‐diversity is a measure essential for understanding and conserving species interactions and ecosystem functioning. Interaction β‐diversity explains the variation in species interactions across spatial and temporal gradients, resulting from species turnover or interaction rewiring. Each component of interaction β‐diversity has different ecological implications and practical consequences. While interaction β‐diversity due to species turnover is related to assembly processes and fragmentation, rewiring can support high biodiversity and confer resilience to ecological networks. However, it is unclear whether both components respond to the same or different ecological drivers. Here, we assessed the ecological drivers of plant–pollinator interaction β‐diversity and its components across 24 sites in 9 longleaf pine (LLP) savannas in north and central Florida. We evaluated the effects of flowering plant composition and flower abundance, vegetation, fire regime, soil moisture, terrain characteristics, climate, spatial context and geographic location. We used path analysis to evaluate the drivers of spatial interaction β‐diversity and its main components. We then used generalized linear mixed models to assess the temporal patterns of spatial β‐diversity among sites within preserves. We found that plant–pollinator networks in LLP savannas are highly variable across space and time, mainly due to species turnover and possibly in response to abiotic gradients and dispersal boundaries. Flower abundance and flowering plant composition, geographic location, fire seasonality, soil moisture, and landscape context were the main drivers of plant–pollinator β‐diversity, highlighting the role of fire management and habitat connectivity in preserving plant–pollinator networks.

Publisher

Wiley

Subject

Ecology, Evolution, Behavior and Systematics

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