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Ecology, management and conservation in natural and modified habitats
RESEARCH ARTICLE

Spatial ecology of an urban eastern grey kangaroo (Macropus giganteus) population: local decline driven by kangaroo–vehicle collisions

Elizabeth A. Brunton https://orcid.org/0000-0003-2982-5439 A B , Sanjeev K. Srivastava A and Scott Burnett A
+ Author Affiliations
- Author Affiliations

A University of the Sunshine Coast, Sippy Downs Drive, Sippy Downs, Qld 4556, Australia.

B Corresponding author. Email: ebrunton@usc.edu.au

Wildlife Research 45(8) 685-695 https://doi.org/10.1071/WR18077
Submitted: 4 October 2017  Accepted: 27 September 2018   Published: 20 November 2018

Abstract

Context: As urban landscapes proliferate globally, the need for research into urban wildlife interactions is magnified. The eastern grey kangaroo (Macropus giganteus) is a widespread species commonly involved in wildlife–vehicle collisions in urban areas in Australia. Despite the many urban kangaroo populations and associated conflicts with human activities, few studies have examined how eastern grey kangaroos interact with, and are affected by, the urban matrix.

Aims: The present study aimed to quantify kangaroo demography, movements, habitat utilisation and exposure to risks during a period of intensive urban development in a rapidly changing suburb located in a region undergoing high urban growth rates.

Methods: We utilised foot-based census surveys, global positioning system (GPS) collars, direct observations and reports of wildlife mortality between 2014 and 2016. Geographical information systems (GIS) were used to integrate GPS-tracking data with spatial layers, to quantify kangaroo movements and habitat utilisation.

Key results: The kangaroo population underwent a steep decline and kangaroo–vehicle collisions were the main source of mortality (73%) during the study period. Kangaroos were regularly exposed to the risk of injury, with roads intersecting many parts of their home range. Kangaroos showed positive habitat selection both for lawn and forest habitats and kangaroo movement and presence at the study site were influenced by high-quality forage and cover.

Conclusions: The present research has highlighted that despite areas of suitable habitat remaining, road-kill was a major contributor to localised kangaroo-population decline. We showed that habitat preferences of eastern grey kangaroos in this urban area were consistent with those in natural landscapes.

Implications: The present study is the first to implicate kangaroo–vehicle collisions as the major factor in population decline in kangaroos. These findings can be utilised to guide design and placement of kangaroo–vehicle collision mitigation and assist in planning of urban areas, particularly where kangaroo populations are in decline. Local extirpation of urban kangaroo populations would be greatly reduced by incorporating site-specific kangaroo habitat preferences and existing patterns of kangaroo habitat use in infrastructure planning. The study has contributed to our understanding of the effects of roads on urban wildlife in general and highlighted the importance of landscape permeability.

Additional keywords: GPS-collaring, habitat utilisation, macropod, South-eastern Queensland, urbanisation.


References

Adams, L. (2005). Urban wildlife ecology and conservation: a brief history of the discipline. Urban Ecosystems 8, 139–156.
Urban wildlife ecology and conservation: a brief history of the discipline.Crossref | GoogleScholarGoogle Scholar |

Adams, A. L., Dickinson, K. J. M., Robertson, B. C., and van Heezik, Y. (2013). An evaluation of the accuracy and performance of lightweight gps collars in a suburban environment. PLoS One 8, e68496.
An evaluation of the accuracy and performance of lightweight gps collars in a suburban environment.Crossref | GoogleScholarGoogle Scholar |

Alldredge, J. R., and Ratti, J. T. (1992). Further comparisons of some statistical techniques for analysis of resource selection. The Journal of Wildlife Management 56, 1–9.
Further comparisons of some statistical techniques for analysis of resource selection.Crossref | GoogleScholarGoogle Scholar |

Aronson M. F. J. La Sorte F. A. Nilon C. H. Katti M. Goddard M. A. Lepczyk C. A. Warren P. S. Williams N. S. G. Cilliers S. Clarkson B. Dobbs C. Dolan R. Hedblom M. Klotz S. Kooijmans J. L. Kühn I. MacGregor-Fors I. McDonnell M. Mörtberg U. Pyšek P. Siebert S. Sushinsky J. Werner P. Winter M. 2014 A global analysis of the impacts of urbanization on bird and plant diversity reveals key anthropogenic drivers. Proceedings of the Royal Society B: Biological Sciences 281 10.1098/rspb.2013.3330

Australian Bureau of Statistics (2016). ‘Regional Population Growth.’ Available at http://www.abs.gov.au/AUSSTATS/abs@.nsf/Lookup/3218.0Explanatory%20Notes12013-14?OpenDocument [Accessed 30 April 2016].

Ben-Ami, D., Ramp, D., and Croft, D. (2006). Population viability assessment and sensitivity analysis as a management tool for the peri-urban environment. Urban Ecosystems 9, 227–241.
Population viability assessment and sensitivity analysis as a management tool for the peri-urban environment.Crossref | GoogleScholarGoogle Scholar |

Bond, A. R., and Jones, D. N. (2008). Temporal trends in use of fauna-friendly underpasses and overpasses. Wildlife Research 35, 103–112.
Temporal trends in use of fauna-friendly underpasses and overpasses.Crossref | GoogleScholarGoogle Scholar |

Bond, A. R., and Jones, D. N. (2014). Roads and macropods: interactions and implications. Australian Mammalogy 36, 1–14.
Roads and macropods: interactions and implications.Crossref | GoogleScholarGoogle Scholar |

Brearley, G. (2012). Influence of urban edges on stress in an arboreal mammal: a case study of squirrel gliders in southeast Queensland, Australia. Landscape Ecology 27, 1407–1419.
Influence of urban edges on stress in an arboreal mammal: a case study of squirrel gliders in southeast Queensland, Australia.Crossref | GoogleScholarGoogle Scholar |

Brunton, E. A., Srivastava, S. K., Schoeman, D. S., and Burnett, S. (2018). Quantifying trends and predictors of decline in eastern grey kangaroo (Macropus giganteus) populations in a rapidly urbanising landscape. Pacific Conservation Biology , .
Quantifying trends and predictors of decline in eastern grey kangaroo (Macropus giganteus) populations in a rapidly urbanising landscape.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 |

Chambers, B., and Bencini, R. (2010). Road mortality reduces survival and population growth rates of tammar wallabies on Garden Island, Western Australia. Wildlife Research 37, 588–596.
Road mortality reduces survival and population growth rates of tammar wallabies on Garden Island, Western Australia.Crossref | GoogleScholarGoogle Scholar |

Coghlan, B. A., Goldizen, A. W., Thomson, V. A., and Seddon, J. M. (2015). Phylogeography of eastern grey kangaroos, Macropus giganteus, suggests a mesic refugium in eastern Australia. PLoS One 10, .
Phylogeography of eastern grey kangaroos, Macropus giganteus, suggests a mesic refugium in eastern Australia.Crossref | GoogleScholarGoogle Scholar |

Coulson, G. (1997). Male bias in road-kills of macropods. Wildlife Research 24, 21–25.
Male bias in road-kills of macropods.Crossref | GoogleScholarGoogle Scholar |

Coulson, G., Cripps, J., and Wilson, M. (2014). Hopping down the main street: eastern grey kangaroos at home in an urban matrix. Animals 4, 272–291.
Hopping down the main street: eastern grey kangaroos at home in an urban matrix.Crossref | GoogleScholarGoogle Scholar |

D’Eon, R. G., and Delparte, D. (2005). Effects of radio-collar position and orientation on GPS radio-collar performance, and the implications of PDOP in data screening. Journal of Applied Ecology 42, 383–388.
Effects of radio-collar position and orientation on GPS radio-collar performance, and the implications of PDOP in data screening.Crossref | GoogleScholarGoogle Scholar |

Dawson, T. (2012). ‘Kangaroos.’ (CSIRO Publishing: Melbourne.)

Dearborn, D.C., and Kark, S. (2010). Motivations for conserving urban biodiversity. Conservation Biology 24, 432–440.

Department of Transport and Main Roads (2016). ‘Baseline Roads and Tracks Queensland.’ Queensland Spatial Catalogue. Available at http://qldspatial.information.qld.gov.au/catalogue/custom/index.page [Accessed 29 August 2016].

Descovich, K., Tribe, A., McDonald, I. J., and Phillips, C. J. C. (2016). The eastern grey kangaroo: current management and future directions. Wildlife Research 43, 576–589.

DeStefano, S., and DeGraaf, R. M. (2003). Exploring ecology of suburban wildlife. Frontiers in Ecology and the Environment 1, 95–101.
Exploring ecology of suburban wildlife.Crossref | GoogleScholarGoogle Scholar |

FitzGibbon, S. I. (2015). Reproductive ecology of the northern brown bandicoot (Isoodon macrourus) in habitat fragments of urban Brisbane. Australian Mammalogy 37, 253–259.
Reproductive ecology of the northern brown bandicoot (Isoodon macrourus) in habitat fragments of urban Brisbane.Crossref | GoogleScholarGoogle Scholar |

Forman, R. T. T., and Alexander, L. E. (1998). Roads and their major ecological effects. Annual Review of Ecology and Systematics 29, 207–231.
Roads and their major ecological effects.Crossref | GoogleScholarGoogle Scholar |

Garden, J., McAlpine, C., Peterson, A. N. N., Jones, D., and Possingham, H. (2006). Review of the ecology of Australian urban fauna: a focus on spatially explicit processes. Austral Ecology 31, 126–148.
Review of the ecology of Australian urban fauna: a focus on spatially explicit processes.Crossref | GoogleScholarGoogle Scholar |

Goldingay, R. L. (2015). A review of home-range studies on Australian terrestrial vertebrates: adequacy of studies, testing of hypotheses, and relevance to conservation and international studies. Australian Journal of Zoology 63, 136–146.
A review of home-range studies on Australian terrestrial vertebrates: adequacy of studies, testing of hypotheses, and relevance to conservation and international studies.Crossref | GoogleScholarGoogle Scholar |

Grimm, N. B., Faeth, S. H., Golubiewski, N. E., Redman, C. L., Wu, J., Bai, X., and Briggs, J. M. (2008). Global change and the ecology of cities. Science 319, 756–760.

Grinder, M. I. (2001). Home range, habitat use, and nocturnal activity of coyotes in an urban environment. The Journal of Wildlife Management 65, 887–898.
Home range, habitat use, and nocturnal activity of coyotes in an urban environment.Crossref | GoogleScholarGoogle Scholar |

Henderson, T., Rajaratnam, R., and Vernes, K. (2017). Population density of eastern grey kangaroos (Macropus giganteus) in a periurban matrix at Coffs Harbour, New South Wales. Australian Mammalogy , .
Population density of eastern grey kangaroos (Macropus giganteus) in a periurban matrix at Coffs Harbour, New South Wales.Crossref | GoogleScholarGoogle Scholar |

Higginbottom, K., and Page, S. (2010). Monitoring the fate of translocated eastern grey kangaroos at the Gold Coast. In ‘Macropods: The Biology of Kangaroos, Wallabies, and Rat-kangaroos’. (Eds G. M. Coulson and M. D. B. Eldridge) pp. 341–348. (CSIRO: Melbourne.)

Hill, G. (1981). A study of habitat preferences in the grey kangaroo. Wildlife Research 8, 245–254.
A study of habitat preferences in the grey kangaroo.Crossref | GoogleScholarGoogle Scholar |

Inwood, D., Catanchin, H., and Coulson, G. (2008). ‘Roo Town Slow Down: a Community-based Kangaroo Management Plan for Anglesea, Victoria.’ (Royal Zoological Society of New South Wales: Sydney.)

Isaac, B., White, J., Ierodiaconou, D., and Cooke, R. (2013). Response of a cryptic apex predator to a complete urban to forest gradient. Wildlife Research 40, 427–436.
Response of a cryptic apex predator to a complete urban to forest gradient.Crossref | GoogleScholarGoogle Scholar |

Jaremovic, R. V., and Croft, D. B. (1987). Comparison of techniques to determine eastern grey kangaroo home range. The Journal of Wildlife Management 51, 921–930.
Comparison of techniques to determine eastern grey kangaroo home range.Crossref | GoogleScholarGoogle Scholar |

Jaremovic, R. V., and Croft, D. B. (1991). Social-organization of eastern gray kangaroos in southeastern New South Wales. 2. Associations with mixed groups. Mammalia 55, 543–554.
Social-organization of eastern gray kangaroos in southeastern New South Wales. 2. Associations with mixed groups.Crossref | GoogleScholarGoogle Scholar |

Jarman, P. (1983). Mating system and sexual dimorphism in large terrestrial, mammalian herbivores. Biological Reviews of the Cambridge Philosophical Society 58, 485–520.
Mating system and sexual dimorphism in large terrestrial, mammalian herbivores.Crossref | GoogleScholarGoogle Scholar |

Jarman, P., and Taylor, R. (1983). Ranging of eastern grey kangaroos and wallaroos on a New England pastoral property. Wildlife Research 10, 33–38.
Ranging of eastern grey kangaroos and wallaroos on a New England pastoral property.Crossref | GoogleScholarGoogle Scholar |

Johnson, D. H. (1980). The comparison of usage and availability measurements for evaluating resource preference. Ecology 61, 65–71.
The comparison of usage and availability measurements for evaluating resource preference.Crossref | GoogleScholarGoogle Scholar |

Klöcker, U., Croft, D. B., and Ramp, D. (2006). Frequency and causes of kangaroo–vehicle collisions on an Australian outback highway. Wildlife Research 33, 5–15.
Frequency and causes of kangaroo–vehicle collisions on an Australian outback highway.Crossref | GoogleScholarGoogle Scholar |

Lee, E., Croft, D., and Ramp, D. (2010). Flight response as a causative factor in kangaroo–vehicle collisions. In ‘Macropods: the Biology of Kangaroos, Wallabies and Rat-Kangaroos’. (Eds G. M. Coulson and M. D. B. Eldridge) pp. 301–311. (CSIRO: Melbourne.)

Lewis, D. L., Baruch-Mordo, S., Wilson, K. R., Breck, S. W., Mao, J. S., and Broderick, J. (2015). Foraging ecology of black bears in urban environments: guidance for human-bear conflict mitigation. Ecosphere 6, .
Foraging ecology of black bears in urban environments: guidance for human-bear conflict mitigation.Crossref | GoogleScholarGoogle Scholar |

Lopez, R. R., Silvy, N. J., Wilkins, R. N., Frank, P. A., Peterson, M. J., and Peterson, M. N. (2004). Habitat-use patterns of Florida key deer: implications of urban development. The Journal of Wildlife Management 68, 900–908.
Habitat-use patterns of Florida key deer: implications of urban development.Crossref | GoogleScholarGoogle Scholar |

Magle, S. B., Hunt, V. M., Vernon, M., and Crooks, K. R. (2012). Urban wildlife research: past, present, and future. Biological Conservation 155, 23–32.
Urban wildlife research: past, present, and future.Crossref | GoogleScholarGoogle Scholar |

McKinney, M. L. (2002). Urbanization, biodiversity and conservation. Bioscience 52, 883–890.
Urbanization, biodiversity and conservation.Crossref | GoogleScholarGoogle Scholar |

Moore, B. D., Coulson, G., and Way, S. (2002). Habitat selection by adult female eastern grey kangaroos. Wildlife Research 29, 439–445.
Habitat selection by adult female eastern grey kangaroos.Crossref | GoogleScholarGoogle Scholar |

Natural Resource Management Ministerial Council (2010). Australia’s Biodiversity Conservation Strategy 2010–2030. (Australian Government, Department of Sustainability, Environment, Water, Population and Communities: Canberra, Australia.) Available at https://environment.gov.au/topics/australias-biodiversity-conservation-strategy [Accessed 1 September 2017]

Ordeñana, M. A., Crooks, K. R., Boydston, E. E., Fisher, R. N., Lyren, L. M., Siudyla, S., Haas, C. D., Harris, S., Hathaway, S. A., Turschak, G. M., Miles, A. K., and Van Vuren, D. H. (2010). Effects of urbanization on carnivore species distribution and richness. Journal of Mammalogy 91, 1322–1331.
Effects of urbanization on carnivore species distribution and richness.Crossref | GoogleScholarGoogle Scholar |

Poessel, S. A., Burdett, C. L., Boydston, E. E., Lyren, L. M., Alonso, R. S., Fisher, R. N., and Crooks, K. R. (2014). Roads influence movement and home ranges of a fragmentation-sensitive carnivore, the bobcat, in an urban landscape. Biological Conservation 180, 224–232.
Roads influence movement and home ranges of a fragmentation-sensitive carnivore, the bobcat, in an urban landscape.Crossref | GoogleScholarGoogle Scholar |

Potapov, E., Bedford, A., Bryntesson, F., Cooper, S., Nyholm, B., and Robertson, D. (2014). White-tailed deer (Odocoileus virginianus) suburban habitat use along disturbance gradients. American Midland Naturalist 171, 128–138.
White-tailed deer (Odocoileus virginianus) suburban habitat use along disturbance gradients.Crossref | GoogleScholarGoogle Scholar |

Queensland Herbarium (2018) Regional Ecosystem Description Database (REDD). Version 10.1 (March 2018) (Queensland Department of Environment and Science: Brisbane).

Ramp, D. (2010). Roads as drivers of change for macropodids. In ‘Macropods: the Biology of Kangaroos, Wallabies, and Rat-kangaroos’. (Eds G. M. Coulson and M. D. B. Eldridge) pp. 279–291. (CSIRO: Melbourne.)

Ramp, D., and Ben-Ami, D. (2006). The effect of road-based fatalities on the viability of a peri-urban swamp wallaby population. The Journal of Wildlife Management 70, 1615–1624.
The effect of road-based fatalities on the viability of a peri-urban swamp wallaby population.Crossref | GoogleScholarGoogle Scholar |

Soulsbury, C. D., and White, P. C. L. (2015). Human–wildlife interactions in urban areas: a review of conflicts, benefits and opportunities. Wildlife Research 42, 541–553.
Human–wildlife interactions in urban areas: a review of conflicts, benefits and opportunities.Crossref | GoogleScholarGoogle Scholar |

Stokeld, D., Hamer, A. J., van der Ree, R., Pettigrove, V., and Gillespie, G. (2014). Factors influencing occurrence of a freshwater turtle in an urban landscape: a resilient species? Wildlife Research 41, 163–171.
Factors influencing occurrence of a freshwater turtle in an urban landscape: a resilient species?Crossref | GoogleScholarGoogle Scholar |

Taylor, R. J. (1984). Foraging in the eastern grey kangaroo and the wallaroo. Journal of Animal Ecology 53, 65–74.
Foraging in the eastern grey kangaroo and the wallaroo.Crossref | GoogleScholarGoogle Scholar |

Thomas, D., and Taylor, E. (2006). Study designs and tests for comparing resource use and availability. The Journal of Wildlife Management 70, 324–336.
Study designs and tests for comparing resource use and availability.Crossref | GoogleScholarGoogle Scholar |

Weaving, M. J., White, J. G., Hower, K., Isaac, B., and Cooke, R. (2014). Sex-biased space-use response to urbanization in an endemic urban adapter. Landscape and Urban Planning 130, 73–80.
Sex-biased space-use response to urbanization in an endemic urban adapter.Crossref | GoogleScholarGoogle Scholar |