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Spatial interactions between sympatric carnivores: asymmetric avoidance of an intraguild predator
Authors:Shaun M Grassel  Janet L Rachlow  Christopher J Williams
Institution:1.Department of Fish and Wildlife Sciences, University of Idaho, Moscow, Idaho, 83844-1136;2.Department of Wildlife, Fish and Recreation, Lower Brule Sioux Tribe, P.O. Box 246, Lower Brule, South Dakota, 57548-0246;3.Department of Statistical Science, University of Idaho, Moscow, Idaho, 83843-1104
Abstract:Interactions between intraguild species that act as both competitors and predator–prey can be especially complex. We studied patterns of space use by the black-footed ferret (Mustela nigripes), a prairie dog (Cynomys spp.) specialist, and the American badger (Taxidea taxus), a larger generalist carnivore that competes for prairie dogs and is known to kill ferrets. We expected that ferrets would spatially avoid badgers because of the risk of predation, that these patterns of avoidance might differ between sexes and age classes, and that the availability of food and space might influence these relationships. We used location data from 60 ferrets and 15 badgers to model the influence of extrinsic factors (prairie dog density and colony size) and intrinsic factors (sex, age) on patterns of space use by ferrets in relation to space use by different sex and age categories of badgers. We documented asymmetric patterns of avoidance of badgers by ferrets based on the sex of both species. Female ferrets avoided adult female badgers, but not male badgers, and male ferrets exhibited less avoidance than female ferrets. Additionally, avoidance decreased with increasing densities of prairie dogs. We suggest that intersexual differences in space use by badgers create varying distributions of predation risk that are perceived by the smaller carnivore (ferrets) and that females respond more sensitively than males to that risk. This work advances understanding about how competing species coexist and suggests that including information on both intrinsic and extrinsic factors might improve our understanding of behavioral interactions between sympatric species.
Keywords:Coexistence  competition  foraging trade-offs  interspecific interactions  intraguild predation  intrasexual territoriality
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