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Behavioral Responses Across a Mosaic of Ecosystem States Restructure a Sea Otter-urchin Trophic Cascade

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Specialty Science
Date 2021 Apr 10
PMID 33836567
Citations 15
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Abstract

Consumer and predator foraging behavior can impart profound trait-mediated constraints on community regulation that scale up to influence the structure and stability of ecosystems. Here, we demonstrate how the behavioral response of an apex predator to changes in prey behavior and condition can dramatically alter the role and relative contribution of top-down forcing, depending on the spatial organization of ecosystem states. In 2014, a rapid and dramatic decline in the abundance of a mesopredator () and primary producer () coincided with a fundamental change in purple sea urchin () foraging behavior and condition, resulting in a spatial mosaic of kelp forests interspersed with patches of sea urchin barrens. We show that this mosaic of adjacent alternative ecosystem states led to an increase in the number of sea otters () specializing on urchin prey, a population-level increase in urchin consumption, and an increase in sea otter survivorship. We further show that the spatial distribution of sea otter foraging efforts for urchin prey was not directly linked to high prey density but rather was predicted by the distribution of energetically profitable prey. Therefore, we infer that spatially explicit sea otter foraging enhances the resistance of remnant forests to overgrazing but does not directly contribute to the resilience (recovery) of forests. These results highlight the role of consumer and predator trait-mediated responses to resource mosaics that are common throughout natural ecosystems and enhance understanding of reciprocal feedbacks between top-down and bottom-up forcing on the regional stability of ecosystems.

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References
1.
Tinker M, Doak D, Estes J . Using demography and movement behavior to predict range expansion of the southern sea otter. Ecol Appl. 2008; 18(7):1781-94. DOI: 10.1890/07-0735.1. View

2.
Witman J, Smith F, Novak M . Experimental demonstration of a trophic cascade in the Galápagos rocky subtidal: Effects of consumer identity and behavior. PLoS One. 2017; 12(4):e0175705. PMC: 5400256. DOI: 10.1371/journal.pone.0175705. View

3.
Harvell C, Montecino-Latorre D, Caldwell J, Burt J, Bosley K, Keller A . Disease epidemic and a marine heat wave are associated with the continental-scale collapse of a pivotal predator (). Sci Adv. 2019; 5(1):eaau7042. PMC: 6353623. DOI: 10.1126/sciadv.aau7042. View

4.
Estes , Tinker , Williams , Doak . Killer whale predation on sea otters linking oceanic and nearshore ecosystems . Science. 1998; 282(5388):473-6. DOI: 10.1126/science.282.5388.473. View

5.
Estes J, Palmisano J . Sea otters: their role in structuring nearshore communities. Science. 1974; 185(4156):1058-60. DOI: 10.1126/science.185.4156.1058. View