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Socio-Economic Objective : Diagnostics
Field of Research : Veterinary Sciences
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  • Funded Activity

    Linkage Projects - Grant ID: LP0211607

    Funder
    Australian Research Council
    Funding Amount
    $431,263.00
    Summary
    Molecular approaches to solving current and emerging problems in the epidemiology and diagnosis of Marek's disease in Australia. Marek's disease (MD) is a ubiquitous viral disease of chickens that is currently controlled in meat chickens by blanket vaccination of all chickens. However, as has happened overseas, the efficacy of the HVT vaccine being used in Australia is breaking down resulting in subclinical and clinical losses due to MD. To assist industry deal with this situation we propose to .... Molecular approaches to solving current and emerging problems in the epidemiology and diagnosis of Marek's disease in Australia. Marek's disease (MD) is a ubiquitous viral disease of chickens that is currently controlled in meat chickens by blanket vaccination of all chickens. However, as has happened overseas, the efficacy of the HVT vaccine being used in Australia is breaking down resulting in subclinical and clinical losses due to MD. To assist industry deal with this situation we propose to develop novel molecular methods for the quantification of Marek's disease viruses (MDV) in the host and the environment, to use these methods to design effective early monitoring systems for MD in broilers that predict disease and performance outcomes, and to develop an epidemiological model that will predict the spread and severity of MD as failure of vaccinal protection progresses.
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    Funded Activity

    Linkage Projects - Grant ID: LP0562190

    Funder
    Australian Research Council
    Funding Amount
    $117,444.00
    Summary
    Devil Facial Tumour Disease: Cytogenetic Clues to Transmission and Development. Devil Facial Tumour Disease is a fatal cancer that is decimating Tasmanian devils. Preliminary work suggests that tumours from different animals have identical sets of highly abnormal chromosomes, including a giant marker chromosome. We will use DNA probes to 'paint' abnormal tumour chromosomes to discover markers for diagnosis, and identify genes contributing to tumour development and immune suppression. Most import .... Devil Facial Tumour Disease: Cytogenetic Clues to Transmission and Development. Devil Facial Tumour Disease is a fatal cancer that is decimating Tasmanian devils. Preliminary work suggests that tumours from different animals have identical sets of highly abnormal chromosomes, including a giant marker chromosome. We will use DNA probes to 'paint' abnormal tumour chromosomes to discover markers for diagnosis, and identify genes contributing to tumour development and immune suppression. Most importantly, we will test our hypothesis that tumours all arose from a single ancestral cancer cell that is transmitted between animals. A cellular transmission has frightening implications for spread of disease, but will allow us to develop appropriate therapeutic strategies to save a unique Australian marsupial from extinction.
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    Funded Activity

    Linkage Projects - Grant ID: LP0561834

    Funder
    Australian Research Council
    Funding Amount
    $225,000.00
    Summary
    Biotechnology and epidemiology to control nodavirus in barramundi aquaculture. Production of farmed barramundi has increased more than 1200% in the NT since 2001 but is threatened by nodavirus infection. Three industry partners, Darwin Aquaculture Centre, Marine Harvest and Berrimah Veterinary Laboratory will collaborate with The University of Sydney to: 1. control nodavirus infection 2. develop new technologies to detect nodavirus using immunoassay and surface enhanced laser desorption ionis .... Biotechnology and epidemiology to control nodavirus in barramundi aquaculture. Production of farmed barramundi has increased more than 1200% in the NT since 2001 but is threatened by nodavirus infection. Three industry partners, Darwin Aquaculture Centre, Marine Harvest and Berrimah Veterinary Laboratory will collaborate with The University of Sydney to: 1. control nodavirus infection 2. develop new technologies to detect nodavirus using immunoassay and surface enhanced laser desorption ionisation mass spectroscopy (SELDI) 3. develop an integrated disease control strategy based on epidemiological survey data, and ensure that it is practical and able to be widely adopted By this means growth targets for barramundi aquaculture in northern Australia will be achieved.
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    Funded Activity

    Linkage Projects - Grant ID: LP0454006

    Funder
    Australian Research Council
    Funding Amount
    $240,000.00
    Summary
    The epidemiology of canine gastrointestinal parasitic zoonoses in different community settings in Thailand. The dog's role in transmitting zoonotic gastrointestinal parasites to humans has been recognised as a significant public health problem worldwide. Surveillance data with regard to canine parasites in Thailand and its regional countries is largely lacking, especially with regard to the dog's role as a perpetuator of the liver and intestinal flukes. This project aims to provide an accurate .... The epidemiology of canine gastrointestinal parasitic zoonoses in different community settings in Thailand. The dog's role in transmitting zoonotic gastrointestinal parasites to humans has been recognised as a significant public health problem worldwide. Surveillance data with regard to canine parasites in Thailand and its regional countries is largely lacking, especially with regard to the dog's role as a perpetuator of the liver and intestinal flukes. This project aims to provide an accurate and comprehensive assessment of the risks these parasites pose to the public using a combination of conventional and novel molecular epidemiological tools. Successful completion of this project will provide a model for control programs to be generated in the SE Asian region.
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    Funded Activity

    Linkage Projects - Grant ID: LP0989701

    Funder
    Australian Research Council
    Funding Amount
    $240,000.00
    Summary
    Retroviral invasion of the koala genome: prevalence, transmission and role in immunosuppressive disease. Koalas are a national symbol yet many of their populations are in decline as a result of habitat loss and disease. Lymphoid cancers and opportunistic infections are significant diseases in both captive and wild koala populations. We previously demonstrated that the recently identified koala retrovirus is associated with lymphoid cancer in koalas. This project will determine the distribution o .... Retroviral invasion of the koala genome: prevalence, transmission and role in immunosuppressive disease. Koalas are a national symbol yet many of their populations are in decline as a result of habitat loss and disease. Lymphoid cancers and opportunistic infections are significant diseases in both captive and wild koala populations. We previously demonstrated that the recently identified koala retrovirus is associated with lymphoid cancer in koalas. This project will determine the distribution of the virus in Australia, the mechanism of its spread and its effect on the immune function of koalas. This research will provide a foundation for better management of captive koalas and for conservation of wild koalas.
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