Spatial partitioning by a subordinate carnivore is mediated by conspecific overlap

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Authors

Marneweck, C.
Marneweck, David G.
Van Schalkwyk, Ockert Louis
Beverley, G.
Davies-Mostert, Harriet T.
Parker, D.M.

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Publisher

Springer

Abstract

There are several hypotheses that could explain territory size in mammals, including the resource dispersion hypothesis (RDH), the intruder pressure hypothesis (IPH), and the intraguild predation hypothesis (IGPH). In this study, we tested predictions of these three hypotheses regarding territories of 19 packs of endangered African wild dogs (Lycaon pictus) over 2 years in the Kruger National Park, South Africa. If territory size was supported by the RDH, then we would observe (1) wild dog territories would be larger when resource patches were more dispersed, (2) pack sizes would be larger when resource patches were rich, and (3) pack size would not affect territory size. If supported by the IPH, then we would observe (4) larger territories would experience less intrusions, and (5) there would be an increase in territory overlap in areas of low resource dispersion. Finally, if supported by the IGPH, we would observe (6) territories would be larger in areas of higher lion (Panthera leo) density, as evidence of a spatial avoidance strategy. We found that the IGPH was fully supported (6), the IPH half supported (5), and the RDH partially supported (1 and 3), where we found spatial partitioning of wild dogs with lions, potentially mediated by resources and territory overlap with conspecifics. Ultimately, our results show that subordinate carnivores must balance a trade-off between dominant interspecific competitors and conspecifics to successfully coexist in areas with dominant carnivores.

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Keywords

African wild dog (Lycaon pictus), Kruger National Park (KNP), Kruger National Park (South Africa), Territory size, Territory overlap, Resource dispersion, Resource richness, Intruder pressure, Intraguild predation

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Citation

Marneweck, C., Marneweck, D.G., van Schalkwyk, O.L. et al. Spatial partitioning by a subordinate carnivore is mediated by conspecific overlap. Oecologia 191, 531–540 (2019). https://doi.org/10.1007/s00442-019-04512-y.