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Ecology, management and conservation in natural and modified habitats
RESEARCH ARTICLE (Open Access)

Evaluation of lion (Panthera leo) scat as a wild dog (Lycaon pictus) deterrent on game farms

Ronja D. Haring https://orcid.org/0000-0001-5963-5965 A B * , Grant Beverley B , Peter N. Thompson https://orcid.org/0000-0002-2268-9748 A C , Andrew Taylor A D and Jacques H. O’Dell A C
+ Author Affiliations
- Author Affiliations

A Department of Production Animal Studies, Faculty of Veterinary Science, University of Pretoria, Pretoria, South Africa.

B Carnivore Conservation Programme, Endangered Wildlife Trust, Midrand, South Africa.

C Centre for Veterinary Wildlife Research, University of Pretoria, Pretoria, South Africa.

D Wildlife in Trade Programme, Endangered Wildlife Trust, Midrand, South Africa.

* Correspondence to: ronja.haring@outlook.com

Handling Editor: Shannon Dundas

Wildlife Research 50(12) 1021-1030 https://doi.org/10.1071/WR22084
Submitted: 17 May 2022  Accepted: 7 January 2023   Published: 31 January 2023

© 2023 The Author(s) (or their employer(s)). Published by CSIRO Publishing

Abstract

Context: The conservation of the Endangered African wild dog (Lycaon pictus) poses a major challenge to conservationists because outside the boundaries of protected areas, wild dogs are prone to conflict with farmers. Mitigation measures appropriate for game farmers are scarce, leaving them with limited options to reduce wild dog impact. As a result, targeted persecution is a common occurrence. However, wild dogs are subject to intraguild competition with dominant competitors, often resulting in their suppression and spatial displacement. Therefore, olfactory cues of lion presence may trigger an adverse reaction in wild dogs, and could be a means to manage wild dog movements across the landscape to prevent conflict with farmers.

Aim: We aimed to evaluate whether wild dogs can be deterred by simulating lion presence.

Methods: By using translocated scent cues in the form of lion scat deployed along the perimeter of plots, lion presence was simulated on game farms where lions were absent. The rate and duration of incursions by wild dogs, collared with GPS trackers, into control and treatment plots (‘group’) were evaluated.

Key results: Wild dog incursion rate dropped by 55.5%, and duration of incursion events dropped by 72.7%, after lion scat was deposited. Control and treatment plots were equally affected with no significant effect of the grouping on wild dog movement. The magnitude of the treatment effect differed between packs.

Conclusion: The significant decline of wild dog movement after implementation of treatment suggests a deterrence effect. The insignificant effect of group on wild dog movement indicates large-scale avoidance triggered by a change in the wild dogs’ risk perception across the landscape following treatment. The fact that the magnitude of the treatment effect differed between packs indicates that the response to predator cues is likely to be context-dependent.

Implications: The findings present a novel approach to managing free-roaming wild dogs by utilising biologically relevant cues, which may benefit wild dog conservation. There is a need for further research to develop the emerging field of scent studies to provide non-lethal solutions and progress towards evidence-based large carnivore management practices.

Keywords: antipredator behaviour, conservation ecology, human–carnivore conflict, interspecific olfactory communication, landscape of fear, non-lethal mitigation measures, odour deterrent, perceived risk.


References

Apfelbach, R, Blanchard, CD, Blanchard, RJ, Hayes, RA, and McGregor, IS (2005). The effects of predator odors in mammalian prey species: a review of field and laboratory studies. Neuroscience and Biobehavioral Reviews 29, 1123–1144.
The effects of predator odors in mammalian prey species: a review of field and laboratory studies.Crossref | GoogleScholarGoogle Scholar |

Apps P (2021) Saved by the smell: using chemical signals to protect predators and livestock. YouTube video. Wild Entrus, Sammamish, WA, USA. Available at https://www.youtube.com/watch?v=4oK_LDDbJGI

Ayon, RE, Putman, BJ, and Clark, RW (2017). Recent encounters with rattlesnakes enhance ground squirrel responsiveness to predator cues. Behavioral Ecology and Sociobiology 71, .
Recent encounters with rattlesnakes enhance ground squirrel responsiveness to predator cues.Crossref | GoogleScholarGoogle Scholar |

Bates, D, Mächler, M, Bolker, B, and Walker, S (2015). Fitting linear mixed-effects models using lme4. Journal of Statistical Software 67, 1–48.
Fitting linear mixed-effects models using lme4.Crossref | GoogleScholarGoogle Scholar |

Bendel, RB, and Afifi, AA (1977). Regression Comparison of Stopping Rules in Forward “Stepwise” Regression. Journal of the American Statistical Association 72, 46–53.

Bytheway, JP, Carthey, AJR, and Banks, PB (2013). Risk vs. reward: how predators and prey respond to aging olfactory cues. Behavioral Ecology and Sociobiology 67, 715–725.
Risk vs. reward: how predators and prey respond to aging olfactory cues.Crossref | GoogleScholarGoogle Scholar |

Calenge, C (2006). The package “adehabitat” for the R software: a tool for the analysis of space and habitat use by animals. Ecological Modelling 197, 516–519.
The package “adehabitat” for the R software: a tool for the analysis of space and habitat use by animals.Crossref | GoogleScholarGoogle Scholar |

Cornhill, KL, and Kerley, GIH (2020). Cheetah communication at scent-marking sites can be inhibited or delayed by predators. Behavioral Ecology and Sociobiology 74, .
Cheetah communication at scent-marking sites can be inhibited or delayed by predators.Crossref | GoogleScholarGoogle Scholar |

Cozzi, G, Broekhuis, F, McNutt, JW, and Schmid, B (2013). Comparison of the effects of artificial and natural barriers on large African carnivores: implications for interspecific relationships and connectivity. Journal of Animal Ecology 82, 707–715.
Comparison of the effects of artificial and natural barriers on large African carnivores: implications for interspecific relationships and connectivity.Crossref | GoogleScholarGoogle Scholar |

Creel, S, and Creel, NM (1995). Communcal hunting and pack size in African wild dogs, Lycaon pictus. Animal Behaviour 50, 1325–1339.
Communcal hunting and pack size in African wild dogs, Lycaon pictus.Crossref | GoogleScholarGoogle Scholar |

Creel, S, and Creel, NM (1996). Limitation of African wild dogs by competition with larger carnivores. Conservation Biology 10, 526–538.
Limitation of African wild dogs by competition with larger carnivores.Crossref | GoogleScholarGoogle Scholar |

Creel, S, and Creel, NM (1998). Six ecological factors that may limit African wild dogs, Lycaon pictus. Animal Conservation 1, 1–9.
Six ecological factors that may limit African wild dogs, Lycaon pictus.Crossref | GoogleScholarGoogle Scholar |

Darnell, AM, Graf, JA, Somers, MJ, Slotow, R, and Szykman Gunther, M (2014). Space use of African wild dogs in relation to other large carnivores. PLoS ONE 9, .
Space use of African wild dogs in relation to other large carnivores.Crossref | GoogleScholarGoogle Scholar |

Davies, AB, Tambling, CJ, Marneweck, DG, Ranc, N, Druce, DJ, Cromsigt, JPGM, Le Roux, E, and Asner, GP (2021). Spatial heterogeneity facilitates carnivore coexistence. Ecology 102, .
Spatial heterogeneity facilitates carnivore coexistence.Crossref | GoogleScholarGoogle Scholar |

Davies-Mostert, HT, Kamler, JF, Mills, MGL, Jackson, CR, Rasmussen, GSA, Groom, RJ, and Macdonald, DW (2012). Long-distance transboundary dispersal of African wild dogs among protected areas in southern Africa. African Journal of Ecology 50, 500–506.
Long-distance transboundary dispersal of African wild dogs among protected areas in southern Africa.Crossref | GoogleScholarGoogle Scholar |

Davies-Mostert HT, Page-Nicholson S, Marneweck DG, Marnewick K, Cilliers D, Whittington-Jones B, Killian H, Mills MGL, Parker D, Power J, Rehse T, Child MF (2016) A conservation assessment of Lycaon pictus. In ‘The Red List of Mammals of South Africa, Swaziland and Lesotho’ (Eds MF Child, L Roxburgh, E Do Linh San, D Raimondo, HT Davies-Mostert). (South African National Biodiversity Institute and Endangered Wildlife Trust: South Africa), 1–13.

Dröge, E, Creel, S, Becker, MS, and M’soka, J (2017). Spatial and temporal avoidance of risk within a large carnivore guild. Ecology and Evolution 7, 189–199.
Spatial and temporal avoidance of risk within a large carnivore guild.Crossref | GoogleScholarGoogle Scholar |

Eklund, A, López-Bao, JV, Tourani, M, Chapron, G, and Frank, J (2017). Limited evidence on the effectiveness of interventions to reduce livestock predation by large carnivores. Scientific Reports 7, .
Limited evidence on the effectiveness of interventions to reduce livestock predation by large carnivores.Crossref | GoogleScholarGoogle Scholar |

Fink, S, Chandler, R, Chamberlain, M, Castleberry, M, Castleberry, S, and Glosenger-Thrasher, S (2020). Distribution and activity patterns of large carnivores and their implications for human–carnivore conflict management in Namibia. Human–Wildlife Interactions 14, 287–295.
Distribution and activity patterns of large carnivores and their implications for human–carnivore conflict management in Namibia.Crossref | GoogleScholarGoogle Scholar |

Frantzen, MAJ, Ferguson, JWH, and de Villiers, MS (2001). The conservation role of captive African wild dogs (Lycaon pictus). Biological Conservation 100, 253–260.
The conservation role of captive African wild dogs (Lycaon pictus).Crossref | GoogleScholarGoogle Scholar |

Green, PA, Van Valkenburgh, B, Pang, B, Bird, D, Rowe, T, and Curtis, A (2012). Respiratory and olfactory turbinal size in canid and arctoid carnivorans. Journal of Anatomy 221, 609–621.
Respiratory and olfactory turbinal size in canid and arctoid carnivorans.Crossref | GoogleScholarGoogle Scholar |

Haber, GC (1996). Biological, conservation, and ethical implications of exploiting and controlling wolves. Conservation Biology 10, 1068–1081.
Biological, conservation, and ethical implications of exploiting and controlling wolves.Crossref | GoogleScholarGoogle Scholar |

Haswell, PM, Jones, KA, Kusak, J, and Hayward, MW (2018). Fear, foraging and olfaction: how mesopredators avoid costly interactions with apex predators. Oecologia 187, 573–583.
Fear, foraging and olfaction: how mesopredators avoid costly interactions with apex predators.Crossref | GoogleScholarGoogle Scholar |

Hayward, MW, and Kerley, GIH (2008). Prey preferences and dietary overlap amongst Africa’s large predators. South African Journal of Wildlife Research 38, 93–108.
Prey preferences and dietary overlap amongst Africa’s large predators.Crossref | GoogleScholarGoogle Scholar |

Hayward, MW, O’Brien, J, Hofmeyer, M, and Kerley, GIH (2006). Prey preferences of the African wild dog Lycaon pictus (Canidae: Carnivora): ecological requirements for conservation. Journal of Mammalogy 87, 1122–1131.
Prey preferences of the African wild dog Lycaon pictus (Canidae: Carnivora): ecological requirements for conservation.Crossref | GoogleScholarGoogle Scholar |

Hegab, IM, Kong, S, Yang, S, Mohamaden, WI, and Wei, W (2015). The ethological relevance of predator odors to induce changes in prey species. Acta Ethologica 18, 1–9.
The ethological relevance of predator odors to induce changes in prey species.Crossref | GoogleScholarGoogle Scholar |

Hopcraft, JGC, Sinclair, ARE, and Packer, C (2005). Planning for success: Serengeti lions seek prey accessibility rather than abundance. Journal of Animal Ecology 74, 559–566.
Planning for success: Serengeti lions seek prey accessibility rather than abundance.Crossref | GoogleScholarGoogle Scholar |

Lenth RV (2022) Emmeans: estimated marginal means, aka least-squares means. R package version 1.7.4-1. Available at https://CRAN.R-project.org/package=emmeans

Lindsey, PA, du Toit, JT, and Mills, MGL (2005). Attitudes of ranchers towards African wild dogs Lycaon pictus: conservation implications on private land. Biological Conservation 125, 113–121.
Attitudes of ranchers towards African wild dogs Lycaon pictus: conservation implications on private land.Crossref | GoogleScholarGoogle Scholar |

Linklater, WL (2004). Wanted for conservation research: behavioral ecologists with a broader perspective. BioScience 54, 352–360.
Wanted for conservation research: behavioral ecologists with a broader perspective.Crossref | GoogleScholarGoogle Scholar |

Lüdecke, D, Ben-Shachar, MS, Patil, I, Waggoner, P, and Makowki, D (2021). Performance: an R package for assessment, comparison and testing of statistical models. Journal of Open Source Software 6, .
Performance: an R package for assessment, comparison and testing of statistical models.Crossref | GoogleScholarGoogle Scholar |

MacFadyen, S, Zambatis, N, Van Teeffelen, AJA, and Hui, C (2018). Long-term rainfall regression surfaces for the Kruger National Park, South Africa: a spatio-temporal review of patterns from 1981 to 2015. International Journal of Climatology 38, 2506–2519.
Long-term rainfall regression surfaces for the Kruger National Park, South Africa: a spatio-temporal review of patterns from 1981 to 2015.Crossref | GoogleScholarGoogle Scholar |

Marneweck, C, Marneweck, DG, van Schalkwyk, OL, Beverley, G, Davies-Mostert, HT, and Parker, DM (2019). Spatial partitioning by a subordinate carnivore is mediated by conspecific overlap. Oecologia 191, 531–540.
Spatial partitioning by a subordinate carnivore is mediated by conspecific overlap.Crossref | GoogleScholarGoogle Scholar |

Mbizah, MM, Joubert, CJ, Joubert, L, and Groom, RJ (2014). Implications of African wild dog (Lycaon pictus) denning on the density and distribution of a key prey species: addressing myths and misperceptions. Biodiversity and Conservation 23, 1441–1451.
Implications of African wild dog (Lycaon pictus) denning on the density and distribution of a key prey species: addressing myths and misperceptions.Crossref | GoogleScholarGoogle Scholar |

Mosser, A, and Packer, C (2009). Group territoriality and the benefits of sociality in the African lion, Panthera leo. Animal Behaviour 78, 359–370.
Group territoriality and the benefits of sociality in the African lion, Panthera leo.Crossref | GoogleScholarGoogle Scholar |

Nicholson, SK, Marneweck, DG, Lindsey, PA, Marnewick, K, and Davies-Mostert, HT (2020). A 20-year review of the status and distribution of african wild dogs (Lycaon pictus) in South Africa. African Journal of Wildlife Research 50, 8–19.
A 20-year review of the status and distribution of african wild dogs (Lycaon pictus) in South Africa.Crossref | GoogleScholarGoogle Scholar |

O’Neill, HMK, Durant, SM, and Woodroffe, R (2020). What wild dogs want: habitat selection differs across life stages and orders of selection in a wide-ranging carnivore. BMC Zoology 5, .
What wild dogs want: habitat selection differs across life stages and orders of selection in a wide-ranging carnivore.Crossref | GoogleScholarGoogle Scholar |

Pomilla, MA, McNutt, JW, and Jordan, NR (2015). Ecological predictors of African wild dog ranging patterns in northern Botswana. Journal of Mammalogy 96, 1214–1223.
Ecological predictors of African wild dog ranging patterns in northern Botswana.Crossref | GoogleScholarGoogle Scholar |

Pretorius, ME, Seoraj-Pillai, N, and Pillay, N (2019). Landscape correlates of space use in the critically endangered African wild dog Lycaon pictus. PLoS ONE 14, .
Landscape correlates of space use in the critically endangered African wild dog Lycaon pictus.Crossref | GoogleScholarGoogle Scholar |

QGIS Development Team (2021) QGIS Geographic Information System. Available at http://qgis.org

R Core Team (2020) R: A language and environment for statistical computing. (R Foundation for Statistical Computing: Vienna, Austria). Available at https://www.R-project.org/

Rutherford MC, Mucina L, Lötter MC, Bredenkamp GJ, Smit JHL, Scott-Shaw CR, Hoare DB, Goodman PS, Bezuidenhout H, Scott L, Ellis F, Powrie WL, Siebert F, Mostert TH, Henning BJ, Venter CE, Camp KGT, Siebert SJ, Matthews WS, et al. (2006) bSavanna iome. In ‘The Vegetation of South Africa, Lesotho and Swaziland’. (Eds L Mucina, MC Rutherford) pp. 438–539. (South African National Biodiversity Institute: South Africa)

Shivik, JA (2006). Tools for the edge: what’s new for conserving carnivores. BioScience 56, 253–259.
Tools for the edge: what’s new for conserving carnivores.Crossref | GoogleScholarGoogle Scholar |

Swanson, A, Caro, T, Davies-Mostert, H, Mills, MGL, Macdonald, DW, Borner, M, Masenga, E, and Packer, C (2014). Cheetahs and wild dogs show contrasting patterns of suppression by lions. Journal of Animal Ecology 83, 1418–1427.
Cheetahs and wild dogs show contrasting patterns of suppression by lions.Crossref | GoogleScholarGoogle Scholar |

Thorn, M, Green, M, Marnewick, K, and Scott, DM (2015). Determinants of attitudes to carnivores: implications for mitigating human–carnivore conflict on South African farmland. Oryx 49, 270–277.
Determinants of attitudes to carnivores: implications for mitigating human–carnivore conflict on South African farmland.Crossref | GoogleScholarGoogle Scholar |

van der Meer, E, Fritz, H, Blinston, P, and Rasmussen, GSA (2013). Ecological trap in the buffer zone of a protected area: effects of indirect anthropogenic mortality on the African wild dog Lycaon pictus. Oryx 48, 285–293.
Ecological trap in the buffer zone of a protected area: effects of indirect anthropogenic mortality on the African wild dog Lycaon pictus.Crossref | GoogleScholarGoogle Scholar |

Vanak, AT, Fortin, D, Thaker, M, Ogden, M, Owen, C, Greatwood, S, and Slotow, R (2013). Moving to stay in place: behavioral mechanisms for coexistence of African large carnivores. Ecology 94, 2619–2631.
Moving to stay in place: behavioral mechanisms for coexistence of African large carnivores.Crossref | GoogleScholarGoogle Scholar |

Van Heerden, J, Mills, MGL, van Vuuren, MJ, Kelly, PJ, and Dreyer, MJ (1995). An investigation into the health status and diseases of wild dogs (Lycaon pictus) in the Kruger National Park. Journal of the South African Veterinary Association 66, 18–27.

Venter FJ, Scholes RJ, Eckhardt HC (2003) The abiotic template and its associated vegetation pattern. In ‘The Kruger Experience: Ecology and Management of Savanna Heterogeneity’. (Eds J du Toit, H Biggs, KH Rogers) pp. 83–129. (Island Press: Washington, DC, USA)

Ward, JF, MacDonald, DW, and Doncaster, CP (1997). Responses of foraging hedgehogs to badger odour. Animal Behaviour 53, 709–720.
Responses of foraging hedgehogs to badger odour.Crossref | GoogleScholarGoogle Scholar |

Webster, H, McNutt, JW, and McComb, K (2012). African wild dogs as a fugitive species: playback experiments investigate how wild dogs respond to their major competitors. Ethology 118, 147–156.
African wild dogs as a fugitive species: playback experiments investigate how wild dogs respond to their major competitors.Crossref | GoogleScholarGoogle Scholar |

Wiens, JA, Crawford, CS, and Gosz, JR (1985). Boundary dynamics: a conceptual framework for studying landscape ecosystems. Oikos 45, 421–427.
Boundary dynamics: a conceptual framework for studying landscape ecosystems.Crossref | GoogleScholarGoogle Scholar |

Wikenros, C, Jarnemo, A, Frisén, M, Kuijper, DPJ, and Schmidt, K (2017). Mesopredator behavioral response to olfactory signals of an apex predator. Journal of Ethology 35, 161–168.
Mesopredator behavioral response to olfactory signals of an apex predator.Crossref | GoogleScholarGoogle Scholar |

Woodroffe, R, and Ginsberg, JR (1999). Conserving the African wild dog Lycaon pictus I. Diagnosing and treating causes of decline. Oryx 33, 132–142.
Conserving the African wild dog Lycaon pictus I. Diagnosing and treating causes of decline.Crossref | GoogleScholarGoogle Scholar |

Woodroffe R, Sillero-Zubiri C (2020) African wild dog: Lycaon pictus. (amended version of 2012 assessment). In ‘The IUCN Red List of Threatened Species 2020’. (IUCN: Gland, Switzerland) Available at https://dx.doi.org/10.2305/IUCN.UK.2020-1.RLTS.T12436A166502262.en

Woodroffe, R, Davies-Mostert, H, Ginsberg, J, Graf, J, Leigh, K, McCreery, K, Robbins, R, Mills, G, Pole, A, Rasmussen, G, Somers, M, and Szykman, M (2007). Rates and causes of mortality in endangered African wild dogs Lycaon pictus: lessons for management and monitoring. Oryx 41, 215–223.
Rates and causes of mortality in endangered African wild dogs Lycaon pictus: lessons for management and monitoring.Crossref | GoogleScholarGoogle Scholar |

Young, JK, Steuber, J, Few, A, Baca, A, and Strong, Z (2019). When strange bedfellows go all in: a template for implementing non-lethal strategies aimed at reducing carnivore predation of livestock. Animal Conservation 22, 207–209.
When strange bedfellows go all in: a template for implementing non-lethal strategies aimed at reducing carnivore predation of livestock.Crossref | GoogleScholarGoogle Scholar |

Zub, K, Theuerkauf, J, Jędrzejewski, W, Jędrzejewska, B, Schmidt, K, and Kowalzcyk, R (2003). Wolf pack territory marking in the Bialowieza Primeval Forest (Poland). Behaviour 140, 635–648.
Wolf pack territory marking in the Bialowieza Primeval Forest (Poland).Crossref | GoogleScholarGoogle Scholar |

Zuur AF, Ieno EN, Walker N, et al. (2009) Model selection in a GLM, in ‘Mixed effects models and extensions in ecology with R: statistics for biology and health’ (Eds M Gail et al.). pp. 220–223. (Springer: New York, USA)