A temporal shift in trophic diversity among a predator assemblage in a warming Arctic
Document Type
Article
Publication Date
10-1-2018
Publication Title
Royal Society Open Science
Volume
5
Issue
10
Keywords
Climate change, Community-wide metrics, Fishes, Food web structure, Marine mammals, Stable isotopes
Abstract
Climate change is leading to northward shifts in species distributions that is altering interspecific interactions at low- and mid-trophic levels. However, little attention has been focused on the effects of redistributions of species on the trophic ecology of a high trophic-level predator assemblage. Here, during a 22-year period (1990-2012) of increasing sea temperature (1.08C) and decreasing sea ice extent (12%) in Cumberland Sound, Nunavut, Canada, we examined the trophic structure of a near-apex predator assemblage before (1990-2002) and after (2005-2012) an increase in the availability of capelin-generally an indicator species in colder marine environments for a warming climate. Stable isotopes (d13C and d15N) were used in a Bayesian framework to assess shifts in diet, niche size and community-wide metrics for beluga whales (Delphinapterus leucas), ringed seals (Pusa hispida), Greenland halibut (Reinhardtius hippoglossoides) and anadromous Arctic char (Salvelinus alpinus). After 2005, consumption of forage fish increased for all predator species, suggesting diet flexibility with changing abiotic and biotic conditions. An associated temporal shift from a trophically diverse to a trophically redundant predator assemblage occurred where predators now play similar trophic roles by consuming prey primarily from the pelagic energy pathway. Overall, these long-term ecological changes signify that trophic shifts of a high trophic-level predator assemblage associated with climate change have occurred in the Arctic food web.
DOI
10.1098/rsos.180259
E-ISSN
20545703
Recommended Citation
Yurkowski, David J.; Hussey, Nigel E.; Ferguson, Steven H.; and Fisk, Aaron T.. (2018). A temporal shift in trophic diversity among a predator assemblage in a warming Arctic. Royal Society Open Science, 5 (10).
https://scholar.uwindsor.ca/glierpub/316