Spatial overlap of sea ice-associated predators and prey in western Hudson Bay

C Chloé Warret Rodrigues A Andrew E. Derocher J James D. Roth D David McGeachy N Nicholas W. Pilfold

Abstract

Spatio-temporal distribution of species shapes community structure and ecosystem function, yet the mechanisms driving biological hotspots remain unclear in dynamic environments like sea ice. We computed Getis-Ord (Gi*) distribution hotspots based on four years of direct and indirect observations of polar bears ( Ursus maritimus ), Arctic foxes ( Vulpes lagopus ), ringed seals ( Pusa hispida ), and bearded seals ( Erignathus barbatus ) in western Hudson Bay, to identify spatial clustering and assess spatial relationships among these ice-associated species. We further mapped distribution hotspots of bear-hunting sign to examine predator-prey and intraguild relationships. Polar bears and bearded seals primarily used offshore areas, while Arctic foxes concentrated their activity on nearshore ice. Ringed seals built lairs throughout the study area but they mostly hauled out on landfast ice. The polar bear hotspot overlapped largely (30% − 49%) with those of the three other species. Particularly, 80% of the Arctic fox hotspot was included in the polar bear hotspot. In contrast, bearded seals and ringed seals had low overlap (18%), reflecting their different habitat preferences. Understanding current patterns in ice-associated species’ distributions and relationships is crucial to inform conservation actions and for predicting direct and indirect effects of Arctic warming. Our results help identify key ecological areas on sea ice and demonstrate how systematic collection of opportunistic observations can be combined to generate valuable ecological insights at low cost.

Article Details

Journal PLoS ONE
Volume / Issue Vol. 21, Issue 2
Published February 02, 2026
Pages e0328953
ISSN 1932-6203
Publisher Public Library of Science

Journal Info

PLoS ONE

Public Library of Science

ISSN: 1932-6203 Open Access Health Sciences

Authors (5)

C

Chloé Warret Rodrigues

A

Andrew E. Derocher

J

James D. Roth

D

David McGeachy

N

Nicholas W. Pilfold