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Field of Research : Forestry Sciences
Research Topic : Health Program Collaboration
Australian State/Territory : TAS
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Forestry Sciences (8)
Pests, Health And Diseases (4)
Nutrition And Physiology (3)
Epidemiology (2)
Fire Management (2)
Forestry Pests, Health and Diseases (2)
Management And Environment (2)
Biotechnology Not Elsewhere Classified (1)
Conservation And Biodiversity (1)
Ecological Impacts of Climate Change (1)
Environmental Chemistry (Incl. Atmospheric Chemistry) (1)
Landscape Ecology (1)
Photogrammetry And Remote Sensing (1)
Tree Improvement (Selection and Breeding) (1)
Wildlife and Habitat Management (1)
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Hardwood plantations (3)
Air quality (2)
Environmental health (2)
Forestry (2)
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Softwood plantations (2)
Control of Animal Pests, Diseases and Exotic Species in Forest and Woodlands Environments (1)
Crop and animal protection chemicals (1)
Softwood Plantations (1)
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Australian Research Council (8)
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  • Researchers (5)
  • Funded Activities (8)
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  • Funded Activity

    Linkage Projects - Grant ID: LP0214138

    Funder
    Australian Research Council
    Funding Amount
    $190,000.00
    Summary
    Risk, impact on productivity and control of Mycosphaerella infections in plantations in plantations of E. nitens and E. globulus. Mycosphaerella, a defoliating fungal pathogen of eucalypts, has the potential to change markedly the economics of plantation development. This research will explore the fundamental physiological and pathological processes associated with the disease, link these findings into established process-based models of forest plantation growth for predictive purposes and util .... Risk, impact on productivity and control of Mycosphaerella infections in plantations in plantations of E. nitens and E. globulus. Mycosphaerella, a defoliating fungal pathogen of eucalypts, has the potential to change markedly the economics of plantation development. This research will explore the fundamental physiological and pathological processes associated with the disease, link these findings into established process-based models of forest plantation growth for predictive purposes and utilise hyperspectral remote sensing techniques to scale impact from the tree to plantation level. In doing this research not only are questions of key importance to an important and growing industry sector addressed, but an innovative approach to disease impact assessment established and a skills base and methodology widely applicable to other tree and agricultural disease problems established.
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    Funded Activity

    Linkage Projects - Grant ID: LP100100136

    Funder
    Australian Research Council
    Funding Amount
    $285,000.00
    Summary
    Protecting Australia's pine plantations from exotic pests and climate change. This project will protect pine plantations (representing 57% of Australia's $3.3 billion pa forestry industry) from the dual threat of exotic pests and climate change. Sirex wood wasp has been well controlled until the recent, unprecedented, increase of ips bark beetles. The ips beetle is now disrupting biological control of sirex by its feeding activity so work is required to understand and combat this effect. The wor .... Protecting Australia's pine plantations from exotic pests and climate change. This project will protect pine plantations (representing 57% of Australia's $3.3 billion pa forestry industry) from the dual threat of exotic pests and climate change. Sirex wood wasp has been well controlled until the recent, unprecedented, increase of ips bark beetles. The ips beetle is now disrupting biological control of sirex by its feeding activity so work is required to understand and combat this effect. The work is made more urgent by looming climate change because storm-damage, drought and heat stressed trees are especially vulnerable to sirex attack. It is estimated that this novel pest management approach could save the industry at least $188 million pa based on a conservative estimate of reducing losses by 10%.
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    Funded Activity

    Linkage Projects - Grant ID: LP0453591

    Funder
    Australian Research Council
    Funding Amount
    $197,466.00
    Summary
    Determining generic indicators of stress in eucalypt leaves for application to the remote sensing of canopy condition and productivity modelling. Biotic and abiotic stresses induce generic alterations of leaf chemistry (e.g. chlorophyll, anthocyanins). We will explore the behaviour of eucalypt leaf reflectance to changes in leaf cellular chemistry and structure arising from exposure to a range of stressful factors. We will relate leaf reflectance to physiological processes using a research radia .... Determining generic indicators of stress in eucalypt leaves for application to the remote sensing of canopy condition and productivity modelling. Biotic and abiotic stresses induce generic alterations of leaf chemistry (e.g. chlorophyll, anthocyanins). We will explore the behaviour of eucalypt leaf reflectance to changes in leaf cellular chemistry and structure arising from exposure to a range of stressful factors. We will relate leaf reflectance to physiological processes using a research radiation interception model. We will report on a) the potential integration of data related to stress, into process-based models for eucalypt plantation growth and b) the exploitation of generic reflectance indicators of stress in the remote acquisition of high resolution multispectral imagery with potential to spatially quantify plantation eucalypt health.
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    Funded Activity

    Linkage Projects - Grant ID: LP0882048

    Funder
    Australian Research Council
    Funding Amount
    $440,000.00
    Summary
    Understanding the health effects of landscape burning and biomass smoke in Australian towns and cities. Bushfires are increasingly affecting Australian towns and cities directly and indirectly from episodes of severe air pollution. An approach to manage bushfires is to reduce fuel loads by setting planned fires under stable weather conditions, yet this strategy is controversial because of community concerns about ecological sustainability and negative health impacts from smoke. The relative im .... Understanding the health effects of landscape burning and biomass smoke in Australian towns and cities. Bushfires are increasingly affecting Australian towns and cities directly and indirectly from episodes of severe air pollution. An approach to manage bushfires is to reduce fuel loads by setting planned fires under stable weather conditions, yet this strategy is controversial because of community concerns about ecological sustainability and negative health impacts from smoke. The relative importance of air pollution from planned and unplanned bushfires vs. wood heaters, agricultural burning and other sources of air pollution will be determined. Our study will enable evidence-based bushfire smoke management, help formulate national air quality standards and shape policies regarding biomass smoke and bushfire management.
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    Funded Activity

    Linkage Projects - Grant ID: LP0669742

    Funder
    Australian Research Council
    Funding Amount
    $227,820.00
    Summary
    Linking environmental stress in pine plantations to bark stripping by browsers and fungal attack: developing novel options for management. The Australian forest industry, under the pressure of certification requirements, is moving towards a more integrated, reduced chemical, environmentally sustainable approach to protecting forest. Novel insights into the stress biology of pine will provide valuable information that will underpin efforts to reduce risk e.g. the matching of specific genotypes to .... Linking environmental stress in pine plantations to bark stripping by browsers and fungal attack: developing novel options for management. The Australian forest industry, under the pressure of certification requirements, is moving towards a more integrated, reduced chemical, environmentally sustainable approach to protecting forest. Novel insights into the stress biology of pine will provide valuable information that will underpin efforts to reduce risk e.g. the matching of specific genotypes to site so that pest resistance can be maintained even under environmental stress conditions. By understanding the 'attraction' factor of stressed pine to wallabies we will develop and test an urgently and nationally required diversionary feed for this browser. Lethal control involving poison is becoming increasingly restricted.
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    Funded Activity

    Linkage Projects - Grant ID: LP0348543

    Funder
    Australian Research Council
    Funding Amount
    $395,000.00
    Summary
    Bushfire smoke and the relationship between human and landscape health. A team of landscape ecologists, environmental chemists and public health specialists will determine the ecological causes and adverse health effects of different levels of bushfire smoke in Darwin. Darwin is an ideal setting for this research because the only source of air pollution is the high incidence of controlled and uncontrolled bushfires during the dry season causing variable air quality: a preliminary study found a .... Bushfire smoke and the relationship between human and landscape health. A team of landscape ecologists, environmental chemists and public health specialists will determine the ecological causes and adverse health effects of different levels of bushfire smoke in Darwin. Darwin is an ideal setting for this research because the only source of air pollution is the high incidence of controlled and uncontrolled bushfires during the dry season causing variable air quality: a preliminary study found a link between smoke pollution levels and asthma. The findings of the proposed research will contribute to improved fire management practices to reduce injurious smoke pollution events and contribute to setting appropriate national air quality standards.
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    Funded Activity

    Linkage Projects - Grant ID: LP0455303

    Funder
    Australian Research Council
    Funding Amount
    $260,000.00
    Summary
    Info-chemicals for the environmentally sustainable management of autumn gum moth and scarab beetle pests of bluegum plantations. Insect pest control in Australian bluegum plantations currently relies on insecticides. Insecticides are incompatible with maintaining populations of native beneficial insects and achieving biotic regulation of pest populations. Info-chemicals offer ways of disrupting pest populations that are benign to beneficials because they only interfere with the responses of the .... Info-chemicals for the environmentally sustainable management of autumn gum moth and scarab beetle pests of bluegum plantations. Insect pest control in Australian bluegum plantations currently relies on insecticides. Insecticides are incompatible with maintaining populations of native beneficial insects and achieving biotic regulation of pest populations. Info-chemicals offer ways of disrupting pest populations that are benign to beneficials because they only interfere with the responses of the target insect. This project will pioneer the development of sex pheromone-based technologies for managing autumn gum moth and reveal potential applications of info-chemicals for managing scarab beetles. Application of info-chemical solutions to plantation pests will improve public perception of the industry and assist with forestry standard certification.
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    Funded Activity

    Linkage Projects - Grant ID: LP140100602

    Funder
    Australian Research Council
    Funding Amount
    $470,000.00
    Summary
    Linking plant genetics and chemistry to maximise tree production in the softwood industry. This project aims to test a ‘gene to plantation’ approach for the management of pests in softwood forestry. The project aims to focus on the stripping of bark from Pinus radiata trees by mammals: a major threat to tree productivity in many regions of Australia and an economic burden for forestry companies. The project aims to use a wide complement of P. radiata germplasm to link genetics, bark defensive ch .... Linking plant genetics and chemistry to maximise tree production in the softwood industry. This project aims to test a ‘gene to plantation’ approach for the management of pests in softwood forestry. The project aims to focus on the stripping of bark from Pinus radiata trees by mammals: a major threat to tree productivity in many regions of Australia and an economic burden for forestry companies. The project aims to use a wide complement of P. radiata germplasm to link genetics, bark defensive chemistry and susceptibility to damage. It aims to identify genotypes with increased resistance, unravel defensive tree traits, screen for genetic markers and identify specific gene regions correlated with trait variation, and examine cross-correlations with other major tree productivity traits.
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