4.7 Article

Evolution mediates the effects of apex predation on aquatic food webs

Journal

Publisher

ROYAL SOC
DOI: 10.1098/rspb.2013.0859

Keywords

eco-evolutionary dynamics; community ecology; species interactions; evolutionary ecology; food web; top-down effects

Funding

  1. NSF [DEB-1119877]
  2. James S. McDonnell Foundation
  3. University of Connecticut large faculty grant
  4. Division Of Environmental Biology
  5. Direct For Biological Sciences [1119887] Funding Source: National Science Foundation

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Ecological and evolutionary mechanisms are increasingly thought to shape local community dynamics. Here, I evaluate if the local adaptation of a meso-predator to an apex predator alters local food webs. The marbled salamander (Ambystoma opacum) is an apex predator that consumes both the spotted salamander (Ambystoma maculatum) and shared zooplankton prey. Common garden experiments reveal that spotted salamander populations which co-occur with marbled salamanders forage more intensely than those that face other predator species. These foraging differences, in turn, alter the diversity, abundance and composition of zooplankton communities in common garden experiments and natural ponds. Locally adapted spotted salamanders exacerbate prey biomass declines associated with apex predation, but dampen the top-down effects of apex predation on prey diversity. Countergradient selection on foraging explains why locally adapted spotted salamanders exacerbate prey biomass declines. The two salamander species prefer different prey species, which explains why adapted spotted salamanders buffer changes in prey composition owing to apex predation. Results suggest that local adaptation can strongly mediate effects from apex predation on local food webs. Community ecologists might often need to consider the evolutionary history of populations to understand local diversity patterns, food web dynamics, resource gradients and their responses to disturbance.

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