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Research Topic : Microarray Bioinformatics
Socio-Economic Objective : Marine Flora, Fauna and Biodiversity
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Gene Expression (incl. Microarray and other genome-wide approaches) (5)
Ecology (2)
Genetics (2)
Marine and Estuarine Ecology (incl. Marine Ichthyology) (2)
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Developmental Genetics (incl. Sex Determination) (1)
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Marine Flora, Fauna and Biodiversity (5)
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Effects of Climate Change and Variability on Australia (excl. Social Impacts) (1)
Pearls (1)
Rehabilitation of Degraded Coastal and Estuarine Environments (1)
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  • Researchers (23)
  • Funded Activities (5)
  • Organisations (25)
  • Funded Activity

    Linkage Projects - Grant ID: LP130100086

    Funder
    Australian Research Council
    Funding Amount
    $467,600.00
    Summary
    Translating genomic discoveries into improved commercial outcomes for the South Sea pearl industry. The purpose of this project is to understand the relationship between gene expression and pearl quality. By identifying the relationship between genes and pearls this project will determine the best conditions to grow selected pearl oyster stocks for the Australian South Sea pearl industry.
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    Funded Activity

    Discovery Projects - Grant ID: DP170103290

    Funder
    Australian Research Council
    Funding Amount
    $453,500.00
    Summary
    Chemical signalling in the sea. This project aims to understand how eggs attract and select sperm, and how the environment influences these interactions. Differential sperm chemotaxis, a form of mate choice involving chemical signalling between eggs and sperm, has only been described in mussels, but may be a widespread form of gamete-level sexual selection. The project will study the biochemical and molecular basis of differential sperm chemotaxis in mussels, and the stability of gamete-level in .... Chemical signalling in the sea. This project aims to understand how eggs attract and select sperm, and how the environment influences these interactions. Differential sperm chemotaxis, a form of mate choice involving chemical signalling between eggs and sperm, has only been described in mussels, but may be a widespread form of gamete-level sexual selection. The project will study the biochemical and molecular basis of differential sperm chemotaxis in mussels, and the stability of gamete-level interactions under different environmental conditions. Improved fundamental knowledge of reproduction in a commercially important marine species may yield future commercial benefits for Australia’s marine food production sector
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    Funded Activity

    Discovery Projects - Grant ID: DP120102849

    Funder
    Australian Research Council
    Funding Amount
    $340,000.00
    Summary
    Heads or tails - which did echinoderms lose in the evolution of radial symmetry? Echinoderms, despite their unusual radial body plan, are closely related to chordates, but it is not known how this plan evolved. This project uses gene expression studies with uniquely suited Australian species to identify genes involved in radial body plan development and generate insights into origins of chordates and the vertebrate central nervous system (CNS).
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    Active Funded Activity

    Discovery Projects - Grant ID: DP210101932

    Funder
    Australian Research Council
    Funding Amount
    $517,000.00
    Summary
    Saving seagrass from climate change. This research aims to test whether seagrass ecosystems can be safeguarded from climate change impacts by enhancing genetic connectivity in range edge populations using novel genetic rescue approaches. We will use the range edge seagrass meadows of the UNESCO World Heritage Site of Shark Bay as our model, which was significantly impacted by a marine heat wave in 2010/2011. The project will generate new knowledge on how seagrasses can adapt and survive in situ. .... Saving seagrass from climate change. This research aims to test whether seagrass ecosystems can be safeguarded from climate change impacts by enhancing genetic connectivity in range edge populations using novel genetic rescue approaches. We will use the range edge seagrass meadows of the UNESCO World Heritage Site of Shark Bay as our model, which was significantly impacted by a marine heat wave in 2010/2011. The project will generate new knowledge on how seagrasses can adapt and survive in situ. Expected outcomes are improved conservation, management and restoration practices for seagrass meadows. This should provide significant benefits for long-term resilience of this economically and culturally significant ecosystem.
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    Funded Activity

    Discovery Projects - Grant ID: DP180100668

    Funder
    Australian Research Council
    Funding Amount
    $525,413.00
    Summary
    Seagrass adaptation and acclimation responses to extreme climatic events. This project aims to advance our understanding of how temperate marine plants in their northern limit will respond to the effects of synergistic stressors from extreme events combined with climate change. The project will study Shark Bay, a UNESCO World Heritage site, where a semi-permanent, salinity gradient maintained by shallow seagrass banks has resulted in unique ecosystems like stromatolites to persist. Expected outc .... Seagrass adaptation and acclimation responses to extreme climatic events. This project aims to advance our understanding of how temperate marine plants in their northern limit will respond to the effects of synergistic stressors from extreme events combined with climate change. The project will study Shark Bay, a UNESCO World Heritage site, where a semi-permanent, salinity gradient maintained by shallow seagrass banks has resulted in unique ecosystems like stromatolites to persist. Expected outcomes include practical solutions for building resilience to climate change mitigation in marine ecosystems. This will benefit the broader Australian community through changing how we manage significant resources and services these systems support, such as fisheries, coastal protection.
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