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2026 ARDC Annual Survey is now open!

The Australian Research Data Commons (ARDC) invites you to participate in a short survey about your interaction with the ARDC and use of our national research infrastructure and services. The survey will take approximately 5 minutes and is anonymous. It’s open to anyone who uses our digital research infrastructure services including Reasearch Link Australia.

We will use the information you provide to improve the national research infrastructure and services we deliver and to report on user satisfaction to the Australian Government’s National Collaborative Research Infrastructure Strategy (NCRIS) program.

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Australian State/Territory : QLD
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  • Funded Activity

    Linkage Projects - Grant ID: LP0883429

    Funder
    Australian Research Council
    Funding Amount
    $270,000.00
    Summary
    Patterns of connectivity and hot-spots of recruitment: a basis for prioritising high value coastal rivers. Provision of water for agricultural, industrial and residential use is becoming increasingly difficult in Australia. By determining the need for important migratory fish species to have access to marine conditions, this project aims to assist managers to identify river systems where changing flow patterns will be particularly detrimental. The project will provide information about the ne .... Patterns of connectivity and hot-spots of recruitment: a basis for prioritising high value coastal rivers. Provision of water for agricultural, industrial and residential use is becoming increasingly difficult in Australia. By determining the need for important migratory fish species to have access to marine conditions, this project aims to assist managers to identify river systems where changing flow patterns will be particularly detrimental. The project will provide information about the need for artificial opening of estuary mouths, fish ladders and other practical means to ensure the continued survival of these species.
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    Funded Activity

    Linkage Projects - Grant ID: LP0560890

    Funder
    Australian Research Council
    Funding Amount
    $328,860.00
    Summary
    A Bayesian framework for metapopulation dynamics of species in endangered communities: integrating demographic, environmental and genetic data. Biodiversity conservation is a spatial and temporal problem. Populations change in time, constrained by the structure and spatial division of their habitat. This study will develop a tool that can be used to assess the influence of environmental fluctuations and landscape heterogeneity on the persistence of endemic species in the mound springs of the Gr .... A Bayesian framework for metapopulation dynamics of species in endangered communities: integrating demographic, environmental and genetic data. Biodiversity conservation is a spatial and temporal problem. Populations change in time, constrained by the structure and spatial division of their habitat. This study will develop a tool that can be used to assess the influence of environmental fluctuations and landscape heterogeneity on the persistence of endemic species in the mound springs of the Great Artesian Basin. Using a Bayesian framework to integrate data from diverse sources, we will develop models for the biodiversity impacts of groundwater withdrawal and climate change in central Australia. These tools are essential for management of this ecosystem, which has been listed as an 'endangered community' under the Environmental Protection and Biodiversity Conservation Act of 1999.
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    Funded Activity

    Discovery Projects - Grant ID: DP1093175

    Funder
    Australian Research Council
    Funding Amount
    $750,000.00
    Summary
    The only constant is change: ecology and evolution of phage-host interactions in a model ecosystem. Microorganisms underpin life on Earth, but our understanding of their diversity and activity is limited by our inability to grow most of them in the laboratory. Recently, new techniques have emerged that allow access to the genetic information of all microorganisms by directly sequencing DNA and RNA from the environment. In this research we will further develop these frontier technologies, promoti .... The only constant is change: ecology and evolution of phage-host interactions in a model ecosystem. Microorganisms underpin life on Earth, but our understanding of their diversity and activity is limited by our inability to grow most of them in the laboratory. Recently, new techniques have emerged that allow access to the genetic information of all microorganisms by directly sequencing DNA and RNA from the environment. In this research we will further develop these frontier technologies, promoting this new area of science in Australia. We will apply these techniques to microbial communities involved in wastewater treatment in order to understand the interactions between microorganisms and the viruses that infect them. Understanding this interaction will have important implications for optimising these treatment processes.
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    Funded Activity

    Linkage Projects - Grant ID: LP0219352

    Funder
    Australian Research Council
    Funding Amount
    $302,570.00
    Summary
    Prediction and Management Strategies for Blooms of the Toxic Cyanobacterium Lyngbya majuscula in Coastal Australian Waters. Blooms of the toxic cyanobacterium Lyngbya majuscula in Australia coastal waters are resulting in severe ecological and economic impacts, including significant human health problems. What is urgently needed is the capacity to predict the onset of a Lyngbya bloom and the development of management strategies to reduce or control blooms. We have assembled a dynamic team of a .... Prediction and Management Strategies for Blooms of the Toxic Cyanobacterium Lyngbya majuscula in Coastal Australian Waters. Blooms of the toxic cyanobacterium Lyngbya majuscula in Australia coastal waters are resulting in severe ecological and economic impacts, including significant human health problems. What is urgently needed is the capacity to predict the onset of a Lyngbya bloom and the development of management strategies to reduce or control blooms. We have assembled a dynamic team of active and experienced researchers using various state-of-the-art technologies to elucidate the key factors contributing to Lyngbya blooms and have industry partners willing to implement large scale testing of various controls. We have a unique opportunity to potentially solve a pressing environmental problem.
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