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Habituation to humans in a predator-free wild ungulate

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Abstract

Arctic caribou and reindeer face an increase in human activity, tourism and infrastructure, which impact may depend on the potential for habituation. Habituation to nonlethal human disturbance in wild animals depends on their risk perception and is therefore hard to separate from effects of predation and hunting pressure. Having evolved under strong isolation with negligible predation and only recent (and local) hunting, the high-Arctic wild Svalbard reindeer represent an adequate model system for studies of habituation to humans. Here, we test for habituation by repeatedly provoking 739 flight responses in 29 radio-collared females throughout two summers in a nonhunted population where human activity level decreases with the distance to a small settlement (Ny-Ålesund). Following provocation by an approaching human on foot, reindeer escape distance (ED) before resuming normal activity ranged from 5 to 500 m and was highly variable among individuals (individual median ED = 23–100 m). Controlling for the effects of individual, observer, terrain ruggedness (positive effect) and having a calf (positive effect), ED increased with distance to Ny-Ålesund [from 32 to 57 m (w/o calf) and 38 to 70 m (with calf) across ~1 to 24 km distance to Ny-Ålesund]. ED also decreased with approach number during the two-month-long summer [average 44–34 m (w/o calf) and 55–43 m (with calf)]. The present study has demonstrated that the naïve Svalbard reindeer habituates to human presence at small spatiotemporal scales through individual learning, suggesting that wild predator-free ungulates may adapt rapidly to increased human activity.

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References

  • Aanes R, Sæther B-E, Øritsland NA (2000) Fluctuations of an introduced population of Svalbard reindeer: the effects of density dependence and climatic variation. Ecography 23:437–443

    Article  Google Scholar 

  • Arnemo JM, Aanes R (2009) Reversible immobilization of free-ranging Svalbard reindeer (Rangifer tarandus platyrhynchus) with Medetomidine–Ketamine and Atipamezole. J Wildl Dis 45:877–880

    Article  CAS  PubMed  Google Scholar 

  • Baskin LM, Skogland T (1997) Direction of escape in reindeer. Rangifer 17:37–40

    Article  Google Scholar 

  • Bates D, Maechler M, Dai B (2008) lme4: linear mixed-effects models using S4 classes. R package version 1.0-4 [computer program]. http://cran.r-project.org/web/packages/lme4/index.html. Accessed 14 Jan 2014

  • Berger J (2007) Carnivore repatriation and holarctic prey: narrowing the deficit in ecological effectiveness. Conserv Biol 21:1105–1116

    Article  PubMed  Google Scholar 

  • Cassirer EF, Freddy DJ, Ables ED (1992) Elk responses to disturbance by cross-country skiers in Yellowstone National Park. Wildl Soc Bull 20:375–381

    Google Scholar 

  • Colman JE, Jacobsen BW, Reimers E (2001) Summer response distances of Svalbard reindeer Rangifer tarandus platyrhynchus to provocation by humans on foot. Wildl Biol 7:275–283

    Google Scholar 

  • Côté SD, Hamel S, St-Louis A, Mainguy J (2013) Do mountain goats habituate to helicopter disturbance? J Wildl Manage 77:1244

    Article  Google Scholar 

  • Denniston RH (1956) Ecology, behaviour, and population dynamics of the Wyoming or Rocky Mountain moose, Alces alces shirasi. Zoologica 41:105–118

    Google Scholar 

  • Derocher AE, Wiig O, Bangjord G (2000) Predation of Svalbard reindeer by polar bears. Polar Biol 23:675–678

    Article  Google Scholar 

  • Dussault C, Ouellet J, Laurian C, Courtois R, Poulin M, Breton L (2007) Moose movement rates along highways and crossing probability models. J Wildl Manage 71:2338–2345

    Article  Google Scholar 

  • Dyer SJ, O’Neill JP, Wasel SM, Boutin S (2001) Avoidance of industrial development by woodland caribou. J Wildl Manage 65:531–542

    Article  Google Scholar 

  • Frid A, Dill L (2002) Human-caused disturbance stimuli as a form of predation risk. Conserv Ecol 6:16

    Google Scholar 

  • Geist V (1971) A behavioural approach to the management of wild ungulates. In: Duffey E, Watt, ES (eds) The scientific management of animal and plant communities for conservation. The 11th symposium of the British Ecological Society, University of East Anglia, Norwich, Blackwell Scientific Publications, Oxford, pp 413–424

  • Governor of Svalbard (2012) Årsrapport for Sysselmannen på Svalbard 2011 (Annual report of the Governor of Svalbard 2011). Governor of Svalbard, Longyearbyen

    Google Scholar 

  • Hansen BB, Herfindal I, Aanes R, Sæther B-E, Henriksen S (2009) Functional response in habitat selection and the tradeoffs between foraging niche components in a large herbivore. Oikos 118:859–872

    Article  Google Scholar 

  • Johnson CJ, Boyce MS, Case RL, Cluff HD, Gau RJ, Gunn A, Mulders R (2005) Cumulative effects of human developments on Arctic wildlife. Wildl Monogr 160:1–36

    Google Scholar 

  • Leblond M, Frair J, Fortin D, Dussault C, Ouellet J-P, Courtois R (2011) Assessing the influence of resource covariates at multiple spatial scales: an application to forest-dwelling caribou faced with intensive human activity. Landsc Ecol 26:1433–1446

    Article  Google Scholar 

  • Leblond M, Dussault C, Ouellet J-P (2013) Avoidance of roads by large herbivores and its relation to disturbance intensity. J Zool 289:32–40

    Article  Google Scholar 

  • Louis S, Le Beere M (2000) Adjustment in flight distance from humans by Marmota marmota. Can J Zool 78:556–563

    Article  Google Scholar 

  • Prestrud P (1992) Arctic foxes in Svalbard: population ecology and rabies. PhD thesis, Univ Oslo, Oslo

  • R Development Core Team (2012) R: a language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria

  • Reimers E, Colman JE (2006) Reindeer and caribou (Rangifer tarandus) response towards human activities. Rangifer 26:55–71

    Article  Google Scholar 

  • Reimers E, Eftestøl S (2012) Response behaviour of Svalbard reindeer towards humans and humans disguised as polar bears on Edgeøya. Arct Antarct Alp Res 44:483–489

    Article  Google Scholar 

  • Reimers E, Røed KH, Flaget Ø, Lurs E (2010) Habituation responses in wild reindeer exposed to recreational activities. Rangifer 30:45–59

    Article  Google Scholar 

  • Reimers E, Lund S, Ergon T (2011) Vigilance and fright behaviour in the insular Svalbard reindeer (Rangifer tarandus platyrhynchus). Can J Zool 89:753–764

    Article  Google Scholar 

  • Sandal T (2009) Blant rein og bjørn (in Norwegian). Villreinen 24:68–69

    Google Scholar 

  • Sappington JM, Longshore KM, Thompson DB (2007) Quantifying landscape ruggedness for animal habitat analysis: a case study using bighorn sheep in the Mojave Desert. J Wildl Manage 71:1419–1426

    Article  Google Scholar 

  • Singer FJ (1978) Behaviour of mountain goats in relation to U.S. Highway 2, Glacier National Park Montana. J Wildl Manage 42:591–597

    Article  Google Scholar 

  • Stankowich T (2008) Ungulate flight responses to human disturbance: a review and meta-analysis. Biol Conserv 141:2159–2173

    Article  Google Scholar 

  • Stankowich T, Blumstein DT (2005) Fear in animals: a meta-analysis and review of risk assessment. Proc R Soc Lond B Biol Sci 272:2627–2634

    Article  Google Scholar 

  • Tarlow EM, Blumstein DT (2007) Evaluating methods to quantify anthropogenic stressors on wild animals. Appl Anim Behav Sci 102:429–451

    Article  Google Scholar 

  • Tyler NJC (1987) Natural limitation of the abundance of the high Arctic Svalbard reindeer. Dissertation, University of Cambridge

  • Tyler NJC (1991) Short-term behavioural responses of Svalbard reindeer Rangifer tarandus platyrhynchus to direct provocation by a snowmobile. Biol Conserv 56:179–194

    Article  Google Scholar 

  • UNEP (2001) GLOBIO—global methodology for mapping human impacts on the biosphere. United Nations Environmental Programme, Nairobi

    Google Scholar 

  • Vistnes I, Nellemann C (2008) The matter of spatial and temporal scales: a review of reindeer and caribou response to human activity. Polar Biol 31:399–407

    Article  Google Scholar 

  • Vors LS, Boyce MS (2009) Global declines of caribou and reindeer. Glob Change Biol 15:2626–2633

    Article  Google Scholar 

  • Wolfe SA, Griffith B, Wolfe CAG (2000) Response of reindeer and caribou to human activities. Polar Res 19:63–73

    Article  Google Scholar 

Download references

Acknowledgments

The study was funded by the Norwegian Research Council (Arctic Field Grant and POLARPROG Grant Nr 216051 to BBH), the Norwegian Polar Institute and Centre for Biodiversity Dynamics (co-funded through the Norwegian University of Science and Technology). We thank S. Henriksen for collecting data in 1999 and O. G. Støen, H. Skoglund, W. L. G. Johansen, M. Ericson, J. P. Ikonen, P. Kuss and H. Landsem for valuable help in the field. We are also grateful to the personnel at the Sverdrup Station in Ny-Ålesund for logistical assistance.

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Correspondence to Brage Bremset Hansen.

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Hansen, B.B., Aanes, R. Habituation to humans in a predator-free wild ungulate. Polar Biol 38, 145–151 (2015). https://doi.org/10.1007/s00300-014-1572-0

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