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Australian State/Territory : QLD
Scheme : Linkage Projects
Research Topic : TARGET INNERVATION
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Marine And Estuarine Ecology (Incl. Marine Ichthyology) (6)
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Conservation And Biodiversity (2)
Sensory Systems (2)
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  • Researchers (16)
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  • Funded Activity

    Linkage Projects - Grant ID: LP0989676

    Funder
    Australian Research Council
    Funding Amount
    $79,000.00
    Summary
    Sensory strategies for protecting endangered sawfishes. The Gulf of Carpentaria is the last habitat worldwide containing sustainable populations of sawfish. Easily entangled in nets, the saw has reduced population numbers dramatically in Australia with all species now protected under the Australian Environment Protection and Biodiversity Conservation Act, including the Convention on International Trade in Endangered Species (CITES). This study will provide basic biological information on feeding .... Sensory strategies for protecting endangered sawfishes. The Gulf of Carpentaria is the last habitat worldwide containing sustainable populations of sawfish. Easily entangled in nets, the saw has reduced population numbers dramatically in Australia with all species now protected under the Australian Environment Protection and Biodiversity Conservation Act, including the Convention on International Trade in Endangered Species (CITES). This study will provide basic biological information on feeding, prey manipulation and the role of critical senses in the only captive population of sawfishes in Australia. Such knowledge will underpin the development and use of visual, chemical and/or magnetic repellents by fisherman that are still responsible for the loss of large numbers of sawfish as by-catch.
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    Funded Activity

    Linkage Projects - Grant ID: LP0453609

    Funder
    Australian Research Council
    Funding Amount
    $210,000.00
    Summary
    Ecology, physiology and molecular microbiology of coral disease on the Great Barrier Reef. Ecological, physiological, molecular and micro-biological techniques will be used to examine the disease of corals of the Great Barrier Reef (GBR). Molecular techniques include the development of diagnostic techniques for disease identification, using Fluorescent In Situ hybridisation (FISH) and DNA microarrays (CHIPS); physiological experiments include examining the effects of temperature and sediment o .... Ecology, physiology and molecular microbiology of coral disease on the Great Barrier Reef. Ecological, physiological, molecular and micro-biological techniques will be used to examine the disease of corals of the Great Barrier Reef (GBR). Molecular techniques include the development of diagnostic techniques for disease identification, using Fluorescent In Situ hybridisation (FISH) and DNA microarrays (CHIPS); physiological experiments include examining the effects of temperature and sediment on virulence and host susceptibility to disease infection; ecological surveys will examine the extent and seasonality of disease in northern and southern parts of the GBR and on isolated reefs in the central GBR. Management implications of the current coral-disease status of the GBR will be targeted.
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    Funded Activity

    Linkage Projects - Grant ID: LP0453612

    Funder
    Australian Research Council
    Funding Amount
    $493,356.00
    Summary
    Environmental management of coral reef resilience. The primary aim of this project is to provide the scientific evidence needed to effectively manage and protect reef resilience within the GBR Marine Park. We will develop and apply scientific tools for understanding the large-scale effect of multiple physical environmental stresses on coral populations. Furthermore, we will determine how fish communities influence the potential for coral reefs to remain healthy in the face of global change. Cent .... Environmental management of coral reef resilience. The primary aim of this project is to provide the scientific evidence needed to effectively manage and protect reef resilience within the GBR Marine Park. We will develop and apply scientific tools for understanding the large-scale effect of multiple physical environmental stresses on coral populations. Furthermore, we will determine how fish communities influence the potential for coral reefs to remain healthy in the face of global change. Central to this work will be an evaluation of the potential of No-Take Zones, a contemporary management tool, to promote resilience and the ability of coral reefs to cope with environmental change.
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    Funded Activity

    Linkage Projects - Grant ID: LP0214956

    Funder
    Australian Research Council
    Funding Amount
    $887,000.00
    Summary
    Vision and remote sensing: using nature's technology to examine the health of The Great Barrier Reef and Moreton Bay. We aim to use what is known and what we will discover about animals visual systems to examine environmental health on The Great Barrier Reef and Moreton Bay. Technology and knowledge from 8 university departments, 4 industry partners, and 7 international collaborators will be combined to both learn and provide information. The innovative aspect of our approach is to examine the w .... Vision and remote sensing: using nature's technology to examine the health of The Great Barrier Reef and Moreton Bay. We aim to use what is known and what we will discover about animals visual systems to examine environmental health on The Great Barrier Reef and Moreton Bay. Technology and knowledge from 8 university departments, 4 industry partners, and 7 international collaborators will be combined to both learn and provide information. The innovative aspect of our approach is to examine the world with the eyes of birds, fish and invertebrates. Tricks animals employ to solve visual tasks will be implemented at scales of instrumentation from hand-held to remote sensing and used to address problems such as coral reef bleaching.
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    Funded Activity

    Linkage Projects - Grant ID: LP0230323

    Funder
    Australian Research Council
    Funding Amount
    $67,635.00
    Summary
    The quality of seagrass as a dugong food resource: the importance of the effects of season and water depth. Australia has international obligations to conserve dugongs (sea cows). Dugongs rely on seagrasses for food. Knowledge of the abundance and quality of seagrasses, and how these change in response to the environment, is vital if dugong conservation is to have the necessary scientific basis. Research has focussed on intertidal seagrass as food for dugongs. However, deepwater seagrasses .... The quality of seagrass as a dugong food resource: the importance of the effects of season and water depth. Australia has international obligations to conserve dugongs (sea cows). Dugongs rely on seagrasses for food. Knowledge of the abundance and quality of seagrasses, and how these change in response to the environment, is vital if dugong conservation is to have the necessary scientific basis. Research has focussed on intertidal seagrass as food for dugongs. However, deepwater seagrasses are a mainstay of most significant dugong populations, such as the population in Hervey Bay, Queensland. This research will provide information on the effect of season and water depth on the quality of seagrasses as dugong food.
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    Funded Activity

    Linkage Projects - Grant ID: LP0883720

    Funder
    Australian Research Council
    Funding Amount
    $195,000.00
    Summary
    Spatial ecology of inshore predators in tropical marine systems and implications of marine protection zones. Coastal development and threats of global climate change mean that coastal ecosystems are under increasing pressure. Developing an understanding of how coastal habitats are used by native fauna and how effective protected areas are in the preservation of these species is critical for future management and sustainable use of resources. This research will provide data for resource and fis .... Spatial ecology of inshore predators in tropical marine systems and implications of marine protection zones. Coastal development and threats of global climate change mean that coastal ecosystems are under increasing pressure. Developing an understanding of how coastal habitats are used by native fauna and how effective protected areas are in the preservation of these species is critical for future management and sustainable use of resources. This research will provide data for resource and fisheries managers that are valuable for maintenance of several sectors of the economy including tourism and commercial fishing (inshore fishing worth $23 m a year). The project is linked to a national telemetry network thus providing opportunity for national and international collaboration benefiting scientific, management and coastal communities.
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    Funded Activity

    Linkage Projects - Grant ID: LP0882233

    Funder
    Australian Research Council
    Funding Amount
    $76,881.00
    Summary
    Diversity of Salinispora actinobacteria producing pharmaceutically relevant natural products from Australian marine sponges. By investigating the distribution of marine microbial resources relevant to drug discovery, we will directly contribute to ARC's Research Priority I - An Environmentally Sustainable Australia Priority Goal and the Priority Goal 'Sustainable use of Australia's biodiversity'. We will determine sources of marine bacteria and their genes useful for discovery of new natural pro .... Diversity of Salinispora actinobacteria producing pharmaceutically relevant natural products from Australian marine sponges. By investigating the distribution of marine microbial resources relevant to drug discovery, we will directly contribute to ARC's Research Priority I - An Environmentally Sustainable Australia Priority Goal and the Priority Goal 'Sustainable use of Australia's biodiversity'. We will determine sources of marine bacteria and their genes useful for discovery of new natural products for treatment of human diseases. We will do this by understanding where new strains of Salinispora bacteria may be isolated and how they are distributed in association with Australian marine sponge fauna, and by determining the distribution and chemical and genetic diversity of novel marine Salinispora bacteria.
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    Funded Activity

    Linkage Projects - Grant ID: LP100100650

    Funder
    Australian Research Council
    Funding Amount
    $120,000.00
    Summary
    Using biodiesel cleanup agents to reduce impacts on mangroves and tidal wetland ecosystems from oil spills. This Linkage project will demonstrate Australia's commitment towards minimisation of the ecological impacts of key pollutants like oil in the marine environment. It will also advance Australia's leadership position in the management of oil spill remediation and will, through the robust partnership developed with Australian Maritime Safety Authority build a skilled team better able to respo .... Using biodiesel cleanup agents to reduce impacts on mangroves and tidal wetland ecosystems from oil spills. This Linkage project will demonstrate Australia's commitment towards minimisation of the ecological impacts of key pollutants like oil in the marine environment. It will also advance Australia's leadership position in the management of oil spill remediation and will, through the robust partnership developed with Australian Maritime Safety Authority build a skilled team better able to respond effectively when such disasters occur. The challenge is to maintain this research focus and create some stability and continuity of the knowledge and experiences gained at the University of Queensland. Significantly the project will provide career-oriented research training opportunities in a field that clearly underpins National Research Priorities.
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