Author
Listed:
- J. F. Ocock
(Charles Sturt University, Institute of Land, Water and Society
UNSW Australia, Centre for Ecosystem Science, School of Biological, Earth & Environmental Sciences
NSW Office of Environment and Heritage, Water, Wetlands and Coast Science Branch, Science Division)
- G. Bino
(Charles Sturt University, Institute of Land, Water and Society
UNSW Australia, Centre for Ecosystem Science, School of Biological, Earth & Environmental Sciences)
- S. Wassens
(Charles Sturt University, Institute of Land, Water and Society)
- J. Spencer
(Charles Sturt University, Institute of Land, Water and Society
UNSW Australia, Centre for Ecosystem Science, School of Biological, Earth & Environmental Sciences
NSW Office of Environment and Heritage, Water, Wetlands and Coast Science Branch, Science Division)
- R. F. Thomas
(Charles Sturt University, Institute of Land, Water and Society
UNSW Australia, Centre for Ecosystem Science, School of Biological, Earth & Environmental Sciences
NSW Office of Environment and Heritage, Water, Wetlands and Coast Science Branch, Science Division)
- R. T. Kingsford
(UNSW Australia, Centre for Ecosystem Science, School of Biological, Earth & Environmental Sciences)
Abstract
Freshwater turtles face many threats, including habitat loss and river regulation reducing occupancy and contributing to population decline. Limited knowledge of hydrological conditions required to maintain viable turtle populations in large floodplain wetlands hinders effective adaptive management of environmental water in regulated rivers. We surveyed three turtle species over 4 years across the Lower Murrumbidgee River floodplain, a large wetland complex with a long history of water resource development. Using site and floodplain metrics and generalized linear models, within a Bayesian Model Averaging framework, we quantified the main drivers affecting turtle abundance. We also used a hierarchical modeling approach, requiring large sample sizes, quantifying possible environmental effects while accounting for detection probabilities of the eastern long-necked turtle (Chelodina longicollis). The three species varied in their responses to hydrological conditions and connectivity to the main river channel. Broad-shelled turtles (Chelodina expansa) and Macquarie River turtles (Emydura macquarii macquarii) had restricted distributions, centered on frequently inundated wetlands close to the river, whereas the eastern long-necked turtles were more widely distributed, indicating an ability to exploit variable habitats. We conclude that turtle communities would benefit from long-term management strategies that maintain a spatiotemporal mosaic of hydrological conditions. More specifically, we identified characteristics of refuge habitats and stress the importance of maintaining their integrity during dry periods. Neighboring habitats can be targeted during increased water availability years to enhance feeding and dispersal opportunities for freshwater turtles.
Suggested Citation
J. F. Ocock & G. Bino & S. Wassens & J. Spencer & R. F. Thomas & R. T. Kingsford, 2018.
"Identifying Critical Habitat for Australian Freshwater Turtles in a Large Regulated Floodplain: Implications for Environmental Water Management,"
Environmental Management, Springer, vol. 61(3), pages 375-389, March.
Handle:
RePEc:spr:envman:v:61:y:2018:i:3:d:10.1007_s00267-017-0837-0
DOI: 10.1007/s00267-017-0837-0
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