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Metagenomics and the genetic basis of ecology and evolution of communities - complex microbial communities in industrial processes as excellent paradigms. Benefits accrue on two fronts: the international reputation of Australian science in contributing significantly to two new, challenging and highly topical questions in ecology and evolution, and in pioneering a route to better efficiency and control of an important industrial process. Wastewater is rich in organic phosphorus that is damaging t ....Metagenomics and the genetic basis of ecology and evolution of communities - complex microbial communities in industrial processes as excellent paradigms. Benefits accrue on two fronts: the international reputation of Australian science in contributing significantly to two new, challenging and highly topical questions in ecology and evolution, and in pioneering a route to better efficiency and control of an important industrial process. Wastewater is rich in organic phosphorus that is damaging to the environment if untreated, but current understanding enables only rudimentary control of the microbial communities that are the basis of the treatment process. The work will provide unprecedented insight into the mechanisms underpinning the dynamics of phosphorus absorbing microbes in industrial facilities by integrating from gene-to-ecosystem.Read moreRead less
Genetic evaluation of the diversity of the stygobitic fauna of the Pilbara, Western Australia. This study has two main aims, designed to help manage populations of the subterranean invertebrate fauna in an economically important region of Western Australia: 1) to provide phylogenetic and population genetic information on the structure of populations of amphipods and other groundwater fauna in the Pilbara, Western Australia, and 2) to investigate areas of the ecology of the fauna including respon ....Genetic evaluation of the diversity of the stygobitic fauna of the Pilbara, Western Australia. This study has two main aims, designed to help manage populations of the subterranean invertebrate fauna in an economically important region of Western Australia: 1) to provide phylogenetic and population genetic information on the structure of populations of amphipods and other groundwater fauna in the Pilbara, Western Australia, and 2) to investigate areas of the ecology of the fauna including response to changes in water chemistry. The genetic information will be used to gain an understanding of species diversity, distributions, and movement in order to help set conservation priorities in managing resources, habitats, and fauna. The ecological data will be used to study the effects of dewatering and changes in water chemsitry on morphology and survival.Read moreRead less
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE0346702
Funder
Australian Research Council
Funding Amount
$193,000.00
Summary
High Performance Liquid Chromatography - Inductively Coupled Plasma - Mass Spectrometry (HPLC-ICPMS). HPLC-ICP-MS is the most reliable cutting edge technology for speciation of metals and metalloids in biological and environmental matrices, and is essential for toxicological studies, which is a major aim behind NRCET's establishment. It will provide a very powerful utility to fill a badly needed knowledge gap for our research and serve the needs of both postgraduate students and postdoctoral fel ....High Performance Liquid Chromatography - Inductively Coupled Plasma - Mass Spectrometry (HPLC-ICPMS). HPLC-ICP-MS is the most reliable cutting edge technology for speciation of metals and metalloids in biological and environmental matrices, and is essential for toxicological studies, which is a major aim behind NRCET's establishment. It will provide a very powerful utility to fill a badly needed knowledge gap for our research and serve the needs of both postgraduate students and postdoctoral fellows. This technology will provide new opportunities in research. It will strengthen our linkages within Faculty of Heath Sciences and with our research partners in CQU, QUT and Griffith and enforce our strong national and international reputation.Read moreRead less
Management of rehabilitated bauxite mines to accelerate the return of vertebrate fauna. This project will examine the effect of thinning and burning mine-site rehabilitation on the abundance of terrestrial mammals and reptiles. This nationally significant project will provide Resource Managers in Western Australia with measures of impacts of forestry thinning and burning (for timber production and drinking water catchment) on vertebrates, and will provide management tools to conserve biodiversit ....Management of rehabilitated bauxite mines to accelerate the return of vertebrate fauna. This project will examine the effect of thinning and burning mine-site rehabilitation on the abundance of terrestrial mammals and reptiles. This nationally significant project will provide Resource Managers in Western Australia with measures of impacts of forestry thinning and burning (for timber production and drinking water catchment) on vertebrates, and will provide management tools to conserve biodiversity within productive forest environments. Expected outcomes are procedures to accelerate returns of vertebrate fauna to mine-sites, measurements of thinning and burning practices on tree-health, and trial procedures for forest thinning (the 12000 Ha Wungong catchment) that minimise impacts on terrestrial vertebrates.Read moreRead less
Urban Possum: Defining and developing an effective, humane strategy for management of urban wildlife populations. This project will provide fundamental information on the factors, which influence possum movements and behaviour in urban environments and the effectiveness of current possum relocation strategies. The project is of significance to Zoological Parks as possums at present cause extensive damage to vegetation and pose a threat to animals in the collection through possible transmission ....Urban Possum: Defining and developing an effective, humane strategy for management of urban wildlife populations. This project will provide fundamental information on the factors, which influence possum movements and behaviour in urban environments and the effectiveness of current possum relocation strategies. The project is of significance to Zoological Parks as possums at present cause extensive damage to vegetation and pose a threat to animals in the collection through possible transmission of disease. This project will lead to the development and trial of new methods for management of these populations.Read moreRead less
Do dingoes regulate the structure of arid ecosystems? Predation by the red fox and land degradation due to overgrazing have been identified as major factors contributing to the loss of biodiversity in arid Australia. I hypothesise that dingoes by regulating populations of foxes and herbivores may have positive effects on biodiversity. If this hypothesis is supported, this project will have great significance for biodiversity conservation and is likely to irrevocably change land and wildlife man ....Do dingoes regulate the structure of arid ecosystems? Predation by the red fox and land degradation due to overgrazing have been identified as major factors contributing to the loss of biodiversity in arid Australia. I hypothesise that dingoes by regulating populations of foxes and herbivores may have positive effects on biodiversity. If this hypothesis is supported, this project will have great significance for biodiversity conservation and is likely to irrevocably change land and wildlife management practices in Australia. The recommendations arising from this research will influence policy on land management and contribute to achieving an environmentally sustainable Australia.
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Optimal management of threatened amphibian metapopulations in urbanising landscapes. This project will enable the identification of optimal management strategies for many species threatened by the loss and fragmentation of their habitat, both in Australia and internationally. Our research will contribute to the recovery of the endangered Growling Grass Frog, and drive the conservation of wetland biodiversity on the fringe of Australia's fastest growing city. Both the methods and specific recomme ....Optimal management of threatened amphibian metapopulations in urbanising landscapes. This project will enable the identification of optimal management strategies for many species threatened by the loss and fragmentation of their habitat, both in Australia and internationally. Our research will contribute to the recovery of the endangered Growling Grass Frog, and drive the conservation of wetland biodiversity on the fringe of Australia's fastest growing city. Both the methods and specific recommendations for management that we develop will contribute to the goal of an environmentally-sustainable Australia. This project will expand Australia's capacity to solve conservation problems, and will promote biological diversity in urban environments, to the benefit of their human inhabitants.Read moreRead less
Human-induced changes in the genetic structure of amphibian populations. This study will produce one of the first predictive models of the impact of humans on the genetic structure of animal populations. It will contribute to land-use planning in the greater Melbourne area, and support the regional action plan called Melbourne2030. It will promote active collaboration between universities and Museum Victoria, enriching our local intellectual community. The project will address current debates wi ....Human-induced changes in the genetic structure of amphibian populations. This study will produce one of the first predictive models of the impact of humans on the genetic structure of animal populations. It will contribute to land-use planning in the greater Melbourne area, and support the regional action plan called Melbourne2030. It will promote active collaboration between universities and Museum Victoria, enriching our local intellectual community. The project will address current debates within landscape genetics, and strengthen Australia's international standing in landscape ecology. Several Australian undergraduate and PhD students will participate in cutting-edge science, which helps Australia maintain its prominent international reputation in these fields.Read moreRead less
Saving Wildlife: Saving People On Our Roads. Wildlife roadkill accrues high economic and social costs to all Australians. Motor vehicle damage, human fatalities and passenger distress, high insurance premiums and loss of biodiversity all result from wildlife-vehicle collisions. We have formed a coalition between government agencies, animal welfare organisations and our research institution to strategically research roadkill. We will gather, collate and analyse statistics on collisions to identif ....Saving Wildlife: Saving People On Our Roads. Wildlife roadkill accrues high economic and social costs to all Australians. Motor vehicle damage, human fatalities and passenger distress, high insurance premiums and loss of biodiversity all result from wildlife-vehicle collisions. We have formed a coalition between government agencies, animal welfare organisations and our research institution to strategically research roadkill. We will gather, collate and analyse statistics on collisions to identify causal factors and develop predictive models of roadkill to target blackspots for mitigation. We will develop and apply effective abatement technologies to significantly reduce the incidence of roadkill. The result will be safer roads for us and our wildlife.Read moreRead less
Contemporary sulfur biomineralisation in acid sulfate soil landscapes. This project aims to generate fundamental knowledge on the processes, kinetics and impacts to water quality of contemporary sulfur biomineralisation in acid sulfate soil landscapes. Extreme concentrations of highly reactive sulfides are forming in the surface sediments of floodplain drains, wetlands and agricultural soils. The newly forming sulfides are linked to severe oxygen depletion and acidification of coastal rivers a ....Contemporary sulfur biomineralisation in acid sulfate soil landscapes. This project aims to generate fundamental knowledge on the processes, kinetics and impacts to water quality of contemporary sulfur biomineralisation in acid sulfate soil landscapes. Extreme concentrations of highly reactive sulfides are forming in the surface sediments of floodplain drains, wetlands and agricultural soils. The newly forming sulfides are linked to severe oxygen depletion and acidification of coastal rivers and the complete failure of floodplain vegetation, leaving soils susceptible to erosion. The proposed study will greatly advance our understanding of how our precious coastal floodplain soil and water resources are being degraded, and will guide better land management.
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