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Research Topic : BINDING INTERACTIONS
Field of Research : Ecology
Australian State/Territory : SA
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Ecology (4)
Behavioural Ecology (2)
Host-Parasite Interactions (2)
Animal behaviour (1)
Behavioural ecology (1)
Gene Expression (incl. Microarray and other genome-wide approaches) (1)
Host-parasite interactions (1)
Population Ecology (1)
Proteomics and Intermolecular Interactions (excl. Medical Proteomics) (1)
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Expanding Knowledge in the Biological Sciences (3)
Control of Pests, Diseases and Exotic Species in Sparseland, Permanent Grassland and Arid Zone Environments (2)
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  • Researchers (6)
  • Funded Activities (4)
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  • Active Funded Activity

    Discovery Projects - Grant ID: DP230100002

    Funder
    Australian Research Council
    Funding Amount
    $551,771.00
    Summary
    Pair bonding: is it all in the brain? This project aims to understand the interaction between classic pair bonding neural circuits, parasites, and the immune system in sleepy lizards. Social bonds are a cornerstone of human societies, especially true of the pair bond and this project expects to generate knowledge to help understand why healthy adult pair bonds are the single best predictor of longevity in humans. The expected outcomes of this project are to reveal the mechanistic basis of pair b .... Pair bonding: is it all in the brain? This project aims to understand the interaction between classic pair bonding neural circuits, parasites, and the immune system in sleepy lizards. Social bonds are a cornerstone of human societies, especially true of the pair bond and this project expects to generate knowledge to help understand why healthy adult pair bonds are the single best predictor of longevity in humans. The expected outcomes of this project are to reveal the mechanistic basis of pair bonding by identifying the brain regions, cell types and neurochemicals that promote pair bonding behaviour — for the first time in a wild animal. This project should provide significant benefits by increasing our knowledge of how pair bonds promote wellness.
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    Funded Activity

    Discovery Projects - Grant ID: DP130100145

    Funder
    Australian Research Council
    Funding Amount
    $535,000.00
    Summary
    What drives parasite spread through social networks: lessons from lizards. Australia's biodiversity is continually threatened by new epidemics of local and foreign diseases and parasites. This project will enhance our understanding of how these diseases spread, allowing more effective controls to be developed to protect wildlife species, animal populations and, ultimately, Australian ecosystems.
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    Funded Activity

    Discovery Projects - Grant ID: DP110103852

    Funder
    Australian Research Council
    Funding Amount
    $455,000.00
    Summary
    Parasite transmission through social networks in the pygmy bluetongue lizard. Australia's biodiversity is continually threatened by new epidemics of diseases and parasites, some local, others from overseas. This project will provide information on how they spread so that more effective management of these diseases can be developed to protect wildlife species, animal populations and, ultimately, Australian ecosystems.
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    Funded Activity

    Linkage Projects - Grant ID: LP160100189

    Funder
    Australian Research Council
    Funding Amount
    $164,000.00
    Summary
    Testing co-evolutionary processes driving venom diversity in tiger snakes. Testing co-evolutionary processes driving venom diversity in tiger snakes. This project aims to examine the geographic variation amongst tiger snakes in anatomy, ecology, and life history traits, and the relationship of these factors to venom toxins and production; and to evaluate the true pharmacological potential of tiger snake venom. This project will investigate the role of venom adaptation in long-term animal evoluti .... Testing co-evolutionary processes driving venom diversity in tiger snakes. Testing co-evolutionary processes driving venom diversity in tiger snakes. This project aims to examine the geographic variation amongst tiger snakes in anatomy, ecology, and life history traits, and the relationship of these factors to venom toxins and production; and to evaluate the true pharmacological potential of tiger snake venom. This project will investigate the role of venom adaptation in long-term animal evolution, by identifying rare venom transcripts involved in providing evolutionary potential for adaptation to environmental change. This is essential as continuing climatic and human-induced alteration of our environment affects southern Australia where many people live, work and interact with native wildlife. Anticipated outcomes are maximizing venom harvests and enhanced snakebite treatment capacity.
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