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Research Topic : Ecosystem function
Australian State/Territory : VIC
Socio-Economic Objective : Marine protected areas
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Ecology (3)
Marine And Estuarine Ecology (Incl. Marine Ichthyology) (3)
Biological Oceanography (1)
Conservation And Biodiversity (1)
Ecological Impacts of Climate Change (1)
Ecological Physiology (1)
Ecology And Evolution Not Elsewhere Classified (1)
Ecosystem Function (1)
Environmental Management And Rehabilitation (1)
Environmental Monitoring (1)
Environmental Science and Management (1)
Freshwater Ecology (1)
Global Change Biology (1)
Isotope Geochemistry (1)
Marine and Estuarine Ecology (incl. Marine Ichthyology) (1)
Palaeoclimatology (1)
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Integrated (ecosystem) assessment and management (4)
Marine protected areas (4)
Climate change (2)
Biological sciences (1)
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Estuarine and lagoon areas (1)
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Australian Research Council (4)
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  • Researchers (4)
  • Funded Activities (4)
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  • Funded Activity

    Linkage Infrastructure, Equipment And Facilities - Grant ID: LE100100041

    Funder
    Australian Research Council
    Funding Amount
    $100,000.00
    Summary
    A high-resolution isotope facility for low cost analysis of water, plant, and soil/sediment samples to understand environmental change. The most significant environmental challenges facing Australia include ensuring sustainable management of our water resources and conservation of both terrestrial and marine biodiversity, particularly in the face of our changing climate and land-use. The new instruments will accelerate progress across a number of projects aimed at understanding the developme .... A high-resolution isotope facility for low cost analysis of water, plant, and soil/sediment samples to understand environmental change. The most significant environmental challenges facing Australia include ensuring sustainable management of our water resources and conservation of both terrestrial and marine biodiversity, particularly in the face of our changing climate and land-use. The new instruments will accelerate progress across a number of projects aimed at understanding the development of groundwater resources, the relative dependency of ecosystems on groundwater versus soil and surface water, and an assessment of the likely impacts of altered hydrology, especially dewatering and salinisation, on ecosystems. In addition, they will also be used to extend our knowledge of climate variability in the recent past and increase understanding of critical marine resources.
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    Funded Activity

    Discovery Projects - Grant ID: DP1093230

    Funder
    Australian Research Council
    Funding Amount
    $350,000.00
    Summary
    Understanding the ecological resilience of nearshore marine communities. Our thinking about climate change and its effects on marine ecosystems is shifting from considering how we can prevent it occurring to understanding how natural systems might adapt to climate change, or how we might improve the ability of these ecosystems to recover, that is, their resilience to change. In many shallow water ecosystems, one or a few key species provide habitat structure that in turn determines the abundanc .... Understanding the ecological resilience of nearshore marine communities. Our thinking about climate change and its effects on marine ecosystems is shifting from considering how we can prevent it occurring to understanding how natural systems might adapt to climate change, or how we might improve the ability of these ecosystems to recover, that is, their resilience to change. In many shallow water ecosystems, one or a few key species provide habitat structure that in turn determines the abundance of a wide range of other species. This proposal will take two important temperate marine 'engineers' and identify the factors that make them most resilient.
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    Funded Activity

    Discovery Projects - Grant ID: DP0986471

    Funder
    Australian Research Council
    Funding Amount
    $277,182.00
    Summary
    The role of natural selection in macroevolution: a case study examining convergence of form and function in marine predator guilds. Darwin's theory of evolution natural selection is one of the most successful in the history of science and provides the framework for modern biology: however, areas of debate or uncertainty are often misinterpreted by non-scientists as indication of fundamental flaws in the theory. New 'hi-tech' tools provide the opportunity to re-examine these areas, and also to de .... The role of natural selection in macroevolution: a case study examining convergence of form and function in marine predator guilds. Darwin's theory of evolution natural selection is one of the most successful in the history of science and provides the framework for modern biology: however, areas of debate or uncertainty are often misinterpreted by non-scientists as indication of fundamental flaws in the theory. New 'hi-tech' tools provide the opportunity to re-examine these areas, and also to demonstrate the process of science to the public. The new tool is Computational Biomechanics, the future of studying biological form, and this project will further develop the leading role of Australian research in this technology which has applications for palaeontology, environmental management, medical science, and the next generation of engineering using 'biomaterials'.
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    Funded Activity

    Linkage Projects - Grant ID: LP0990640

    Funder
    Australian Research Council
    Funding Amount
    $695,000.00
    Summary
    Assessing and understanding ecological changes in highly disturbed estuaries: addressing the complexity of multiple stressors. The conservation of estuarine ecosystems is necessary due to the intrinsic value of their biodiversity and the ecosystem services they provide to humans (food, tourism, recreation). This project will identify anthropogenic stressors that pose ecological threats to estuaries. We will identify indicator species and biomarkers that are cost-effective signs of ecological cha .... Assessing and understanding ecological changes in highly disturbed estuaries: addressing the complexity of multiple stressors. The conservation of estuarine ecosystems is necessary due to the intrinsic value of their biodiversity and the ecosystem services they provide to humans (food, tourism, recreation). This project will identify anthropogenic stressors that pose ecological threats to estuaries. We will identify indicator species and biomarkers that are cost-effective signs of ecological change, useful to any manager of Australian estuaries. The simultaneous assessment of multiple stressors is a great advance in the ecological assessment of estuarine health. We will develop a manual of methods and indicators for measuring the success of environmental management programs.
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