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Australian State/Territory : WA
Field of Research : Crop and Pasture Production
Research Topic : VESTIBULAR DISEASE
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Crop and Pasture Improvement (Selection and Breeding) (5)
Crop and Pasture Production (5)
Quantitative Genetics (incl. Disease and Trait Mapping Genetics) (5)
Crop and Pasture Biochemistry and Physiology (2)
Genomics (1)
Plant Cell and Molecular Biology (1)
Sustainable Agricultural Development (1)
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Canola (2)
Environmentally Sustainable Plant Production not elsewhere classified (2)
Expanding Knowledge in the Agricultural and Veterinary Sciences (2)
Wheat (2)
Barley (1)
Climate Change Adaptation Measures (1)
Climate Change Mitigation Strategies (1)
Expanding Knowledge in the Biological Sciences (1)
Management of Greenhouse Gas Emissions from Plant Production (1)
Oats (1)
Sown Pastures (excl. Lucerne) (1)
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  • Researchers (6)
  • Funded Activities (5)
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  • Active Funded Activity

    Linkage Projects - Grant ID: LP200200927

    Funder
    Australian Research Council
    Funding Amount
    $785,312.00
    Summary
    Digging deeper to improve yield stability. This project aims to provide innovative breeding solutions that harness the ‘hidden’ part of the plant, roots, to support the development of more productive crops in the face of climate variability. The project expects to generate new insights into the biology and genetics of root development in barley, a model cereal crop, by applying cutting-edge genome editing, phenotyping and genomics technologies. Anticipated outcomes include novel methodologies to .... Digging deeper to improve yield stability. This project aims to provide innovative breeding solutions that harness the ‘hidden’ part of the plant, roots, to support the development of more productive crops in the face of climate variability. The project expects to generate new insights into the biology and genetics of root development in barley, a model cereal crop, by applying cutting-edge genome editing, phenotyping and genomics technologies. Anticipated outcomes include novel methodologies to accelerate breeding for diverse production environments, with direct applications in barley, and other major cereals including wheat and oats. This should provide significant economic and social benefits to the Australian grains industry through yield stability amidst climate variability.
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    Funded Activity

    Linkage Projects - Grant ID: LP130100925

    Funder
    Australian Research Council
    Funding Amount
    $548,792.00
    Summary
    Establishing novel breeding methods for canola improvement. It is imperative to ensure reliable food production in the coming years of climate change and increasing population. Genomics offers the greatest potential to increase food production. This project will apply genomic selection methods to accelerate canola oilseed breeding to ensure continued increases in production of this important food and national export.
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    Funded Activity

    Linkage Projects - Grant ID: LP110100341

    Funder
    Australian Research Council
    Funding Amount
    $200,000.00
    Summary
    Improving heat and drought tolerance in canola through genomic selection in Brassica rapa. This project aims to improve heat and drought tolerance in canola by identifying stress tolerance genes in the genetically diverse turnip family. An effective large-scale screening test for heat and drought tolerance will be developed and a number of heat- and drought-tolerant lines will be identified for genomic breeding and selection.
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    Funded Activity

    Linkage Projects - Grant ID: LP100200085

    Funder
    Australian Research Council
    Funding Amount
    $210,000.00
    Summary
    Exploiting subterranean clover genetic variation for methane mitigation and ruminant health challenges to the Australian livestock industries. Subterranean clover is the most widely sown annual pasture legume species in southern Australia. It is native to the Mediterranean basin and has been sown over an estimated area of 22 million hectares. This project will provide breeders with a genomic resource for future breeding programs focused on methane emission mitigation and ruminant health. The foc .... Exploiting subterranean clover genetic variation for methane mitigation and ruminant health challenges to the Australian livestock industries. Subterranean clover is the most widely sown annual pasture legume species in southern Australia. It is native to the Mediterranean basin and has been sown over an estimated area of 22 million hectares. This project will provide breeders with a genomic resource for future breeding programs focused on methane emission mitigation and ruminant health. The focused marker assisted breeding will lead to more efficient and effective breeding of elite cultivars for sustainable and profitable farming systems to benefit the wool and meat industries. Low methanogenic pastures with low isoflavone content offer an exciting avenue for agriculture to reduce its carbon footprint whilst maintaining or improving profitability.
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    Funded Activity

    Industrial Transformation Research Hubs - Grant ID: IH130200027

    Funder
    Australian Research Council
    Funding Amount
    $4,308,668.00
    Summary
    ARC Research Hub for genetic diversity and molecular breeding for wheat in a hot and dry climate. ARC Research Hub for genetic diversity and molecular breeding for wheat in a hot and dry climate. This Research Hub, in partnership with wheat breeding companies, aims to deliver advanced technologies, germplasm and information to produce new stress tolerant varieties. Genetic diversity and novel traits will be introduced from exotic germplasm and high-throughput field-phenotyping tools will be deve .... ARC Research Hub for genetic diversity and molecular breeding for wheat in a hot and dry climate. ARC Research Hub for genetic diversity and molecular breeding for wheat in a hot and dry climate. This Research Hub, in partnership with wheat breeding companies, aims to deliver advanced technologies, germplasm and information to produce new stress tolerant varieties. Genetic diversity and novel traits will be introduced from exotic germplasm and high-throughput field-phenotyping tools will be developed to assist in selection of superior lines. Strategic research will be targeted towards the development of wheat with combined heat and drought tolerance and maintenance of high grain protein.
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    Showing 1-5 of 5 Funded Activites

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