Coursing hyenas and stalking lions: The potential for inter- and intraspecific interactions

Author:

Barker Nancy A.ORCID,Joubert Francois G.,Kasaona Marthin,Shatumbu Gabriel,Stowbunenko Vincent,Alexander Kathleen A.,Slotow Rob,Getz Wayne M.ORCID

Abstract

Resource partitioning promotes coexistence among guild members, and carnivores reduce interference competition through behavioral mechanisms that promote spatio-temporal separation. We analyzed sympatric lion and spotted hyena movements and activity patterns to ascertain the mechanisms facilitating their coexistence within semi-arid and wetland ecosystems. We identified recurrent high-use (revisitation) and extended stay (duration) areas within home ranges, as well as correlated movement-derived measures of inter- and intraspecific interactions with environmental variables. Spatial overlaps among lions and hyenas expanded during the wet season, and occurred at edges of home ranges, around water-points, along pathways between patches of high-use areas. Lions shared more of their home ranges with spotted hyenas in arid ecosystems, but shared more of their ranges with conspecifics in mesic environments. Despite shared space use, we found evidence for subtle temporal differences in the nocturnal movement and activity patterns between the two predators, suggesting a fine localized-scale avoidance strategy. Revisitation frequency and duration within home ranges were influenced by interspecific interactions, after land cover categories and diel cycles. Intraspecific interactions were also important for lions and, important for hyenas were moon illumination and ungulates attracted to former anthrax carcass sites in Etosha, with distance to water in Chobe/Linyanti. Recursion and duration according to locales of competitor probabilities were similar among female lions and both sexes of hyenas, but different for male lions. Our results suggest that lions and spotted hyenas mediate the potential for interference competition through subtle differences in temporal activity, fine-scale habitat use differentiation, and localized reactive-avoidance behaviors. These findings enhance our understanding of the potential effects of interspecific interactions among large carnivore space-use patterns within an apex predator system and show adaptability across heterogeneous and homogeneous environments. Future conservation plans should emphasize the importance of inter- and intraspecific competition within large carnivore communities, particularly moderating such effects within increasingly fragmented landscapes.

Funder

Natural Sciences and Engineering Research Council of Canada

National Institutes of Health

University of KwaZulu-Natal

National Science Foundation

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

Reference144 articles.

1. The Compression Hypothesis and Temporal Resource Partitioning;TW Schoener;Proceedings of the National Academy of Sciences of the United States of America,1974

2. Coexistence of competitors in spatially and temporally varying environments: A look at the combined effects of different sorts of variability;PL Chesson;Theoretical Population Biology,1985

3. Spatiotemporal resource partitioning of water sources by African carnivores on Namibian commercial farmlands: Carnivore resource partitioning at water sources;S Edwards;Journal of Zoology,2015

4. Prey apportionment and related ecological relationships between large carnivores in Kruger National Park.;MGL Mills;Symposium of the Zoological Society, London.,1993

5. Coexistence of jaguar (Panthera onca) and puma (Puma concolor) in a mosaic landscape in the Venezuelan llanos.;D Scognamillo;J Zool, Lond.,2003

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