Ecology Letters · 2021 · 51 citations · 84 references
To understand how plant-pollinator interactions respond to habitat fragmentation, we need novel approaches that can capture properties that emerge at broad scales, where multiple communities engage in metanetworks. Here we studied plant-pollinator interactions over 2 years on 29 calcareous grassland fragments selected along independent gradients of habitat size and surrounding landscape diversity of cover types. We associated network centrality of plant-pollinator interactions and grassland fragments with their ecological and landscape traits, respectively. Interactions involving habitat specialist plants and large-bodied pollinators were the most central, implying that species with these traits form the metanetwork core. Large fragments embedded in landscapes with high land cover diversity exhibited the highest centrality; however, small fragments harboured many unique interactions not found on larger fragments. Intensively managed landscapes have reached a point in which all remaining fragments matter, meaning that losing any further areas may vanish unique interactions with unknown consequences for ecosystem functioning.
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R Core Team · 2000 · 352.8K citations · Full text
How many flowering plants are pollinated by animals?
Jeff Ollerton, Rachael Winfree, Sam Tarrant · Oikos · 2011 · 3.7K citations
The modularity of pollination networks
Jens M. Olesen, Jordi Bascompte, Yoko Luise Dupont et al. · Proceedings of the National Academy of Sciences · 2007 · 2.5K citations · Full text