Combining a map-based public survey with an estimation of site occupancy to determine the recent and changing distribution of the koala in New South Wales
Daniel Lunney A B , Mathew S. Crowther A C D , Ian Shannon A and Jessica V. Bryant AA Department of Environment and Climate Change (NSW), PO Box 1967, Hurstville, NSW 2220, Australia.
B School of Biological Sciences and Biotechnology, Murdoch University, Murdoch, WA 6150, Australia.
C Institute of Wildlife Research, School of Biological Sciences (A08), University of Sydney, NSW 2006, Australia.
D Corresponding author. Email: mathew.crowther@environment.nsw.gov.au or m.crowther@usyd.edu.au
Wildlife Research 36(3) 262-273 https://doi.org/10.1071/WR08079
Submitted: 22 May 2008 Accepted: 18 February 2009 Published: 15 April 2009
Abstract
The present study demonstrates one solution to a problem faced by managers of species of conservation concern – how to develop broad-scale maps of populations, within known general distribution limits, for the purpose of targeted management action. We aimed to map the current populations of the koala, Phascolarctos cinereus, in New South Wales, Australia. This cryptic animal is widespread, although patchily distributed. It principally occurs on private property, and it can be hard to detect. We combined a map-based mail survey of rural and outer-urban New South Wales with recent developments in estimating site occupancy and species-detection parameters to determine the current (2006) distribution of the koala throughout New South Wales. We were able to define the distribution of koalas in New South Wales at a level commensurate with previous community and field surveys. Comparison with a 1986 survey provided an indication of changes in relative koala density across the state. The 2006 distribution map allows for local and state plans, including the 2008 New South Wales Koala Recovery Plan, to be more effectively implemented. The application of this combined technique can now be extended to a suite of other iconic species or species that are easily recognised by the public.
Acknowledgements
We thank the following DECC NSW staff: S. Smith for funding; M. Stephens, R. Avery and R. Ruffio for map design and data-entry formatting, P. Sherratt for design of survey sheet; C. Togher and E. Knowles for GIS assistance; S. Rhind for her focus on Gunnedah, and D. Plowman for assistance with the Atlas; a competent data-entry team; A. House and Know-Ware for assistance; J. Baker for organisational support, and I. Dunn, M. Ellis, D. MacKenzie, C. McAlpine, C. Moon and J. Rhodes for their critical comments on the manuscript. We also acknowledge the help the anonymous reviewers and the editor, A. Taylor, gave to the manuscript.
Bailey, L. L. , Simons, T. R. , and Pollock, K. H. (2004). Estimating site occupancy and species detection probability parameters for terrestrial salamanders. Ecological Applications 14, 692–702.
| Crossref | GoogleScholarGoogle Scholar |
Crowther, M. S. (2002). Distributions of species of the Antechinus stuartii–A. flavipes complex as predicted by bioclimatic modelling. Australian Journal of Zoology 50, 77–91.
| Crossref | GoogleScholarGoogle Scholar |
Hutchinson, M. F. , and Bischof, R. J. (1983). A new method for estimating the spatial distribution of mean seasonal and annual rainfall as applied to the Hunter Valley, New South Wales. Australian Meteorological Magazine 31, 179–184.
Lunney, D. , and Leary, T. (1988). The impact on native mammals of land-use changes and exotic species in the Bega District New South Wales since settlement. Australian Journal of Ecology 14, 67–92.
Lunney, D. , Esson, C. , Moon, C. , Ellis, M. , and Matthews, A. (1997). A community-based survey of the koala, Phascolarctos cinereus in the Eden region of south-east New South Wales. Wildlife Research 24, 111–128.
| Crossref | GoogleScholarGoogle Scholar |
MacKenzie, D. I. , and Nichols, J. D. (2004). Occupancy as a surrogate for abundance estimation. Animal Biodiversity and Conservation 27, 461–467.
Matthews, A. , Lunney, D. , Gresser, S. , and Maitz, W. (2007). Tree use by koalas Phascolarctos cinereus after fire in remnant coastal forest. Wildlife Research 34, 84–93.
| Crossref | GoogleScholarGoogle Scholar |
McAlpine, C. A. , Rhodes, J. R. , Bowen, M. E. , Lunney, D. , Callaghan, J. G. , Mitchell, D. L. , and Possingham, H. P. (2008). Can multiscale models of species’ distribution be generalized from region to region? A case study of the koala. Journal of Applied Ecology 45, 558–567.
| Crossref | GoogleScholarGoogle Scholar |
Norton, D. A. (2000). Conservation biology and private land: shifting the focus. Conservation Biology 14, 1221–1223.
| Crossref | GoogleScholarGoogle Scholar |
Pressey, R. L. , Ferrier, S. , Hager, T. C. , Woods, C. A. , Tully, S. L. , and Weinman, K. M. (1996). How well protected are the forests of northeastern New South Wales? Analyses of forest environments in relation to tenure, formal protection measures and vulnerability to clearing. Forest Ecology and Management 85, 311–333.
| Crossref | GoogleScholarGoogle Scholar |
Rhodes, J. R. , Tyre, A. J. , Jonzén, N. , McAlpine, C. A. , and Possingham, H. P. (2006a). Optimizing presence-absence surveys for detecting population trends. Journal of Wildlife Management 70, 8–18.
| Crossref | GoogleScholarGoogle Scholar |
Toms, M. P. , and Newson, D. E. (2006). Volunteer surveys as a means of inferring trends in garden mammal populations. Mammal Review 36, 309–317.
| Crossref | GoogleScholarGoogle Scholar |
White, P. C. L. , Jennings, N. V. , Renwick, A. R. , and Barker, N. H. L. (2005). Questionnaires in ecology: a review of past use and recommendations for best practice. Journal of Applied Ecology 42, 421–430.
| Crossref | GoogleScholarGoogle Scholar |
Williams, W. D. , and Busby, J. R. (1991). The geographical distribution of Triops australiensis (Crustacea: Notostraca) in Australia – a biogeoclimatic analysis. Hydrobiologia 212, 235–240.
| Crossref | GoogleScholarGoogle Scholar |
Wintle, B. A. , Kavanagh, R. P. , McCarthy, M. A. , and Burgman, M. A. (2005). Estimating and dealing with detectability in occupancy surveys for forest owls and arboreal marsupials. Journal of Wildlife Management 69, 905–917.
| Crossref | GoogleScholarGoogle Scholar |