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A seasonal pulse of ungulate neonates influences space use by carnivores in a multi‐predator, multi‐prey system

The behavioral mechanisms by which predators encounter prey are poorly resolved. In particular, the extent to which predators engage in active search for prey versus incidentally encountering them has not been well studied in many systems and particularly not for neonate prey during the birth pulse....

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Autores principales: Ruprecht, Joel, Forrester, Tavis D., Jackson, Nathan J., Clark, Darren A., Wisdom, Michael J., Rowland, Mary M., Smith, Joshua B., Stewart, Kelley M., Levi, Taal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9558345/
https://www.ncbi.nlm.nih.gov/pubmed/36254298
http://dx.doi.org/10.1002/ece3.9389
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author Ruprecht, Joel
Forrester, Tavis D.
Jackson, Nathan J.
Clark, Darren A.
Wisdom, Michael J.
Rowland, Mary M.
Smith, Joshua B.
Stewart, Kelley M.
Levi, Taal
author_facet Ruprecht, Joel
Forrester, Tavis D.
Jackson, Nathan J.
Clark, Darren A.
Wisdom, Michael J.
Rowland, Mary M.
Smith, Joshua B.
Stewart, Kelley M.
Levi, Taal
author_sort Ruprecht, Joel
collection PubMed
description The behavioral mechanisms by which predators encounter prey are poorly resolved. In particular, the extent to which predators engage in active search for prey versus incidentally encountering them has not been well studied in many systems and particularly not for neonate prey during the birth pulse. Parturition of many large herbivores occurs during a short and predictable temporal window in which young are highly vulnerable to predation. Our study aims to determine how a suite of carnivores responds to the seasonal pulse of newborn ungulates using contemporaneous global positioning system (GPS) locations of four species of predators and two species of prey. We used step‐selection functions to assess whether coyotes, cougars, black bears, and bobcats encountered parturient adult female ungulates more often than expected by chance in a low‐density population of mule deer and a high‐density population of elk. We then assessed whether the carnivore species that encountered parturient prey more often than expected by chance did so by shifting their habitat use toward areas with a high probability of encountering neonates. None of the four carnivore species encountered GPS‐collared parturient mule deer more often than expected by chance. By contrast, we determined that cougar and male bear movements positioned them in the proximity of GPS‐collared parturient elk more often than expected by chance which may provide evidence of searching behavior. Although both male bears and cougars exhibited behavior consistent with active search for neonates, only male bears used elk parturition habitat in a way that dynamically tracked the phenology of the elk birth pulse suggesting that maximizing encounters with juvenile elk was a motivation when selecting resources. Our results suggest that there is high interspecific and intersexual variability in foraging strategies among large mammalian predators and their prey.
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spelling pubmed-95583452022-10-16 A seasonal pulse of ungulate neonates influences space use by carnivores in a multi‐predator, multi‐prey system Ruprecht, Joel Forrester, Tavis D. Jackson, Nathan J. Clark, Darren A. Wisdom, Michael J. Rowland, Mary M. Smith, Joshua B. Stewart, Kelley M. Levi, Taal Ecol Evol Research Articles The behavioral mechanisms by which predators encounter prey are poorly resolved. In particular, the extent to which predators engage in active search for prey versus incidentally encountering them has not been well studied in many systems and particularly not for neonate prey during the birth pulse. Parturition of many large herbivores occurs during a short and predictable temporal window in which young are highly vulnerable to predation. Our study aims to determine how a suite of carnivores responds to the seasonal pulse of newborn ungulates using contemporaneous global positioning system (GPS) locations of four species of predators and two species of prey. We used step‐selection functions to assess whether coyotes, cougars, black bears, and bobcats encountered parturient adult female ungulates more often than expected by chance in a low‐density population of mule deer and a high‐density population of elk. We then assessed whether the carnivore species that encountered parturient prey more often than expected by chance did so by shifting their habitat use toward areas with a high probability of encountering neonates. None of the four carnivore species encountered GPS‐collared parturient mule deer more often than expected by chance. By contrast, we determined that cougar and male bear movements positioned them in the proximity of GPS‐collared parturient elk more often than expected by chance which may provide evidence of searching behavior. Although both male bears and cougars exhibited behavior consistent with active search for neonates, only male bears used elk parturition habitat in a way that dynamically tracked the phenology of the elk birth pulse suggesting that maximizing encounters with juvenile elk was a motivation when selecting resources. Our results suggest that there is high interspecific and intersexual variability in foraging strategies among large mammalian predators and their prey. John Wiley and Sons Inc. 2022-10-13 /pmc/articles/PMC9558345/ /pubmed/36254298 http://dx.doi.org/10.1002/ece3.9389 Text en © 2022 The Authors. Ecology and Evolution published by John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Ruprecht, Joel
Forrester, Tavis D.
Jackson, Nathan J.
Clark, Darren A.
Wisdom, Michael J.
Rowland, Mary M.
Smith, Joshua B.
Stewart, Kelley M.
Levi, Taal
A seasonal pulse of ungulate neonates influences space use by carnivores in a multi‐predator, multi‐prey system
title A seasonal pulse of ungulate neonates influences space use by carnivores in a multi‐predator, multi‐prey system
title_full A seasonal pulse of ungulate neonates influences space use by carnivores in a multi‐predator, multi‐prey system
title_fullStr A seasonal pulse of ungulate neonates influences space use by carnivores in a multi‐predator, multi‐prey system
title_full_unstemmed A seasonal pulse of ungulate neonates influences space use by carnivores in a multi‐predator, multi‐prey system
title_short A seasonal pulse of ungulate neonates influences space use by carnivores in a multi‐predator, multi‐prey system
title_sort seasonal pulse of ungulate neonates influences space use by carnivores in a multi‐predator, multi‐prey system
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9558345/
https://www.ncbi.nlm.nih.gov/pubmed/36254298
http://dx.doi.org/10.1002/ece3.9389
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