Zoology & Ecology
Saul Chemonges
- Adjunct Associate Professor
- saul.chemonges@jcu.edu.au
Daniel Montesinos Torres
- Senior Research Fellow
- daniel.montesinos@jcu.edu.au
Claire Gely
- Lecturer, Zoology and Ecology
- claire.gely@jcu.edu.au
Ben Hirsch
- Adjunct Senior Lecturer
- ben.hirsch@jcu.edu.au
Stephen Williams
- Adjunct Professor
- stephen.williams@jcu.edu.au
Myles Menz
- Senior Lecturer, Zoology and Ecology
- myles.menz@jcu.edu.au
Martijn van de Pol
- Associate Professor, Mathematical Modelling
- martijn.vandepol@jcu.edu.au
Slade Allen-Ankins
- Research Fellow
- slade.allenankins@jcu.edu.au
Noel Preece
- Adjunct Associate Professor
- noel.preece@jcu.edu.au
Conrad Hoskin
- Professor
- conrad.hoskin@jcu.edu.au
Conservation genetics and population trends in the endangered Mahogany Glider (Petaurus gracilis) (Old ID 27035)
Forest clearances has resulted in severe habitat fragmentation that threats population connectivity and genetic diversity of Mahogany Gliders, an endangered gliding possum endemic to Australian Wet Tropics. Using species distribution modelling, we aim to map the glider’s current theoretical distribution, and based on that, conducting fieldworks to collect DNA samples from different populations. These DNA samples enable us to do fine-scaled genomic analyses to estimate the population size and structures of the Mahogany Gliders, and to know whether the population suffers from inbreeding. Knowing these information helps to identify important corridors to connect populations and guide future conservation plans.
Improving the quality of water for release from land-based aquaculture in northern Australia (Old ID 26373)
Effluent from land-based aquaculture farms is problematic because of its nutrient content. This project will be the first in Australia and the tropics to assess the ability of 'denitrification bioreactors' (woodchip-filled trenches) to remove suspended solids and nitrogen from effluent leaving an aquaculture farm. It will be carried out on a barramundi farm the Great Barrier Reef catchment in North Queensland. Changes in quality of water flowing through bioreactors will be measured under a range of likely operating conditions, including differences in salinity and effluent retention rate. The results will be applicable to aquaculture farms throughout the tropics, enabling a reduction in negative environmental impacts, and facilitating intensification and expansion of fish production without increasing nutrient export.
Can species interactions drive rapid niche evolution? (Old ID 23427)
Climate change can alter the distribution of speies and cause novel interactions This project will test whether such interactions can actually drive adaptation to the changing environment. Two Australian fruitfly species will be lab-reared separately and together along a thermal resource gradient. Estimates of each species' niche will be obtained. Using experimental evolution, resource space will then be manipulated to create competition and test whether either species/ niche will evolve into new space. A shift of either species beyond its former niche limits would provide evidence of the potential for evolutionary rescue via rapid adaptation to changing environmental conditions.
Can species interactions drive rapid niche evolution? (Old ID 23427)
Climate change can alter the distribution of speies and cause novel interactions This project will test whether such interactions can actually drive adaptation to the changing environment. Two Australian fruitfly species will be lab-reared separately and together along a thermal resource gradient. Estimates of each species' niche will be obtained. Using experimental evolution, resource space will then be manipulated to create competition and test whether either species/ niche will evolve into new space. A shift of either species beyond its former niche limits would provide evidence of the potential for evolutionary rescue via rapid adaptation to changing environmental conditions.
Conservation Geonomics of Nursery Frogs (Old ID 27588)
Nursery Frogs of the Cophixalus genus make up 5 of 7 critically endangered vertebrate species. They are vulnerable to climate change and restricted to extremely small ranges on mountain-tops and boulder-fields. Without conservation action, they are predicted to go extinct within 20 years. A major threat to threatened species like this is a loss of genetic diversity which leads to inbreeding depression, inability to adapt, and heightened extinction risk. This project aims to provide essential genetic assessment of one widespread and three threatened Nursery Frogs. Managers will be engaged with directly to inform conservation decisions in wild and captive populations.
Conservation Geonomics of Nursery Frogs (Old ID 27588)
Nursery Frogs of the Cophixalus genus make up 5 of 7 critically endangered vertebrate species. They are vulnerable to climate change and restricted to extremely small ranges on mountain-tops and boulder-fields. Without conservation action, they are predicted to go extinct within 20 years. A major threat to threatened species like this is a loss of genetic diversity which leads to inbreeding depression, inability to adapt, and heightened extinction risk. This project aims to provide essential genetic assessment of one widespread and three threatened Nursery Frogs. Managers will be engaged with directly to inform conservation decisions in wild and captive populations.
Research to Inform Yellow Crazy Ant Management in the Wet Tropics (Old ID 23489)
Research and activities required will be: ensure compliance with APVMA permit conditions; research efficacy of current pesticide treatments; research the reproductive phenology of YCA colonies and factors affecting; assess effects of YCA and the baiting program on biodiversity; maintain breeding colonies of YCA for use in dog detection training; design, develop, and test new detection techniques; design and develop further monitoring protocols; analyse WTMA collected data; attend and present findings at monthly and quarterly meetings; provide periodic reports and stay up-to-date with new developments in YCA management.
Utilising drone-based thermal remote sensing technology to accurately estimate spectacled flying-fox (Pteropus conspicillatus) abundance and model population trajectories.
This project aims to address knowledge gaps in our understanding of the abundance and population trajectory of the spectacled flying fox, a keystone species in tropical rainforest ecosystems that is currently listed as Endangered. The research will focus on applying novel remote sensing technologies such as drone-based thermal imagery to estimate the current population size of spectacled flying foxes, and develop a standardised monitoring protocol specifically for use by Indigenous rangers. Additionally, the project will seek to test and adapt theoretical models for predicting species population trajectories using spectacled flying foxes as a case study. This work aligns with national conservation priorities and is crucial to understand whether conservation management actions are having the intended impact of mitigating spectacled flying fox population declines. Moreover, the project supports broader efforts to conserve tropical fauna globally by developing widely applicable field- and desktop-based methods for assessing population declines.
Securing the future of Australia’s threatened tropical mountain flora for science and society (Old ID 25045)
This project will enable us to secure the future of Australia’s climate-threatened tropical mountaintop plants. We will do this by building a multi-strategy ex-situ conservation reserve to ‘backup’ at-risk wild populations and support research, display and education. Our novel research on seed banking strategies, genetic diversity and plant tolerance of extreme climates will ensure that the reserve collections, distributed across multiple Botanic Gardens and Seed Banks along Australia’s east coast, incorporate high redundancy, are genetically and physiologically diverse, and climatically matched to wild habitat.
Distribution, ecology and conservation of the Magnificent Broodfrog (Pseudophryne covacevichae) in the mountains of north Queensland (Old ID 30045)
This project aims to resolve the knowledge gaps surrounding the ecology and key threatening processes to the Magnificent Broodfrog, Pseudophryne covacevichae (MBF). We will do this by determining appropriate survey methods, investigating aspects of breeding behaviour and the associated climatic conditions; resolving the fine-scale distribution, determining connectivity among the known populations, and determining genetic diversity within populations.
Complex growth rate evolution in a latitudinally widespread species
- 2004
- Wiley-Blackwell
- Researchers:Lin Schwarzkopf
Shade acclimation of rainforest leaves to colonization by lichens
- 2002
- Wiley-Blackwell
- Researchers:Betsy Jackes
Master of them all: performance specialization does not result in trade-offs in tropical lizards
- 2007
- Evolutionary Ecology
- Researchers:Lin Schwarzkopf
Does total reproductive effort evolve independently of offspring size?
- 2001
- Wiley-Blackwell
- Researchers:Lin Schwarzkopf
Nomadic movement in tropical toads
- 2002
- Wiley-Blackwell
- Researchers:Lin Schwarzkopf
Start Date:
01 Jan 1986
Start Date:
01 Jan 1984
End Date:
01 Jan 2007
End Date:
01 Jan 2002
End Date:
01 Jan 1999
Title:
ERC Expert Panel
Start Date:
01 Jan 2020
End Date:
01 Jan 2021
Start Date:
01 Jan 2011
End Date:
01 Jan 2019
Start Date:
01 Jan 2022
Start Date:
01 Jan 2018
Start Date:
01 Jan 2010
