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Related Experiment Video

Updated: Nov 4, 2025

A Real-Time Interactive System for Studying Confrontational Pursuit Behavior in Rodents
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Recolonizing carnivores: Is cougar predation behaviorally mediated by bears?

Kristin N Engebretsen1, Jon P Beckmann2,3, Carl W Lackey4

  • 1Deparment of Wildland Resources Utah State University Logan UT USA.

Ecology and Evolution
|May 24, 2021
PubMed
Summary

Black bears recolonizing Nevada influence cougar (Puma concolor) foraging. Higher bear densities reduce cougar feeding times and alter prey selection, impacting the ecosystem dynamics.

Keywords:
Black bearPuma concolorUrsus americanusferal horsesintraguild competitionkleptoparasitismmule deerscavenging

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Area of Science:

  • Ecology
  • Wildlife Conservation
  • Behavioral Ecology

Background:

  • Apex predator populations are recovering, leading to altered ecological interactions.
  • Recolonizing black bears (Ursus americanus) in Nevada scavenge cougar (Puma concolor) kills, creating a unique multi-carnivore system.

Purpose of the Study:

  • To evaluate the impact of recolonizing black bears on cougar foraging behavior in the Great Basin.
  • To model how bear density affects cougar feeding bout duration and diet composition.

Main Methods:

  • Investigated 31 cougar kill sites over 8 years (2009-2017) across varying bear densities.
  • Utilized mixed-effects models to analyze feeding bout duration and the proportion of mule deer (Odocoileus hemionus) in cougar diets.
  • Assessed the influence of prey size, bear density, and cougar reproductive status (kittens) on foraging.

Main Results:

  • Feeding bout duration depended on prey size, local bear density, and presence of cougar kittens.
  • Mule deer proportion in cougar diets declined over time and was lower for males, but increased with kittens and higher bear densities.
  • Cougar consumption of feral horses (Equus ferus) increased over time in areas where they were present.

Conclusions:

  • Increased black bear densities may shorten cougar feeding bouts and shift prey selection towards potentially riskier alternatives.
  • Foraging behavior shifts in multi-carnivore systems have cascading effects on prey selection and resource use.
  • Understanding impacts of sympatric predators and scavengers is crucial for managing dynamic ecosystems.