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Current Selection
Scheme : Linkage Projects
Research Topic : Breeding Programs
Australian State/Territory : ACT
Status : Closed
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Crop and Pasture Production (5)
Crop and Pasture Improvement (Selection and Breeding) (4)
Crop and Pasture Biochemistry and Physiology (2)
Plant Improvement (Selection, Breeding And Genetic Engineering) (2)
Plant Physiology (2)
Quantitative Genetics (incl. Disease and Trait Mapping Genetics) (2)
Agronomy (1)
Forestry Sciences (1)
Forestry Sciences Not Elsewhere Classified (1)
Genetic Engineering And Enzyme Technology (1)
Genetics not elsewhere classified (1)
Plant Biochemistry And Physiology (1)
Plant Biology (1)
Soil Biology (1)
Terrestrial Ecology (1)
Tree Improvement (Selection, Breeding And Genetic Engineering) (1)
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Canola (2)
Field crops (2)
Biological sciences (1)
Climate Change Adaptation Measures (1)
Computer software and services not elsewhere classified (1)
Control of pests and exotic species (1)
Environmentally Sustainable Plant Production not elsewhere classified (1)
Hardwood plantations (1)
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Australian Research Council (7)
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Linkage Projects (7)
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  • Researchers (13)
  • Funded Activities (7)
  • Organisations (3)
  • Funded Activity

    Linkage Projects - Grant ID: LP120200830

    Funder
    Australian Research Council
    Funding Amount
    $380,000.00
    Summary
    Characterisation of a major quantitative trait locus on wheat chromosome 3BL responsible for Fusarium crown rot resistance. Fusarium crown rot (FCR) is a serious wheat disease in Australia and worldwide. Our team has identified a major chromosome region controlling this disease. This project is proposing to develop DNA markers for marker assisted breeding, to understand the genetic mechanism of resistance and to identify genes responsible for resistance to the disease.
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    Funded Activity

    Linkage Projects - Grant ID: LP110200257

    Funder
    Australian Research Council
    Funding Amount
    $240,000.00
    Summary
    Towards improving the yield of Canola and other Brassicas during drought. One of the major problems faced by world agriculture is drought; this project should improve the yield of Canola during moderate to severe droughts. Significantly, this project includes both "traditional" non-genetically modified (GM) strategies and GM strategies to maximise the market for our drought-tolerant canola both in Australia and overseas.
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    Funded Activity

    Linkage Projects - Grant ID: LP0347460

    Funder
    Australian Research Council
    Funding Amount
    $255,000.00
    Summary
    Using defined biotic and abiotic stimuli to dissect patterns of gene expression and protein accumulation that specify root architecture. Root morphogenesis is fundamental to agriculture and valuable for investigating the informational networks of genes, proteins and metabolites that control root growth and plant development. Root systems vary widely both within and between species. Root morphology is directed by a basic genetic program that is influenced by environmental factors to provide an e .... Using defined biotic and abiotic stimuli to dissect patterns of gene expression and protein accumulation that specify root architecture. Root morphogenesis is fundamental to agriculture and valuable for investigating the informational networks of genes, proteins and metabolites that control root growth and plant development. Root systems vary widely both within and between species. Root morphology is directed by a basic genetic program that is influenced by environmental factors to provide an enormous "phenotypic plasticity". This project will use two model plant systems to investigate how different external signals are "translated" by the plant into different developmental regimes. This knowledge is crucial to understanding how the plasticity of root development is modulated in response to changing environmental factors.
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    Funded Activity

    Linkage Projects - Grant ID: LP0990330

    Funder
    Australian Research Council
    Funding Amount
    $480,000.00
    Summary
    Role of alanine aminotransferase in improved nitrogen use efficiency (NUE) in cereals. The use of nitrogen-based fertilisers by crop plants is poor where efficiencies (nitrogen taken up to that applied) is often less than 40%. Nitrogen not used is often lost to the environment through leaching and or volatilisation. Improving nitrogen use efficiency (NUE) in agriculture will decrease overall nitrogen fertiliser use and minimise its environmental footprint. This project will characterise a nov .... Role of alanine aminotransferase in improved nitrogen use efficiency (NUE) in cereals. The use of nitrogen-based fertilisers by crop plants is poor where efficiencies (nitrogen taken up to that applied) is often less than 40%. Nitrogen not used is often lost to the environment through leaching and or volatilisation. Improving nitrogen use efficiency (NUE) in agriculture will decrease overall nitrogen fertiliser use and minimise its environmental footprint. This project will characterise a novel NUE technology that when transferred to plants significantly improves NUE. We will define the phenotype at the molecular, biochemical and physiological levels to maximise its adoption to other agricultural crops such as wheat, barley and maize.
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    Funded Activity

    Linkage Projects - Grant ID: LP0667708

    Funder
    Australian Research Council
    Funding Amount
    $435,000.00
    Summary
    Breeding for resistance: Diagnostic toolkit for predicting variation in plant defence compounds in Eucalyptus. Pulp and timber from plantations are important for Australia's economic and environmental future. However, we must ensure that these plantations are grown sustainably. One area of concern is the current reliance on pesticides to control herbivores of plantation eucalypts. The work proposed here aims to use existing ecological findings together with early access to the genome of Eucal .... Breeding for resistance: Diagnostic toolkit for predicting variation in plant defence compounds in Eucalyptus. Pulp and timber from plantations are important for Australia's economic and environmental future. However, we must ensure that these plantations are grown sustainably. One area of concern is the current reliance on pesticides to control herbivores of plantation eucalypts. The work proposed here aims to use existing ecological findings together with early access to the genome of Eucalyptus to develop ways of using the natural resistance of Eucalyptus as an alternative to chemical pesticides. The work will also help us to understand how eucalypts produce the distinctive odours that are so characteristic of Australian landscapes.
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    Funded Activity

    Linkage Projects - Grant ID: LP100100495

    Funder
    Australian Research Council
    Funding Amount
    $710,280.00
    Summary
    Enabling Molecular Plant Breeding for Drought Adaptation Using Genome-to-Phenome Modelling Technologies. Effective molecular plant breeding for improved water productivity of sorghum would generate significant economic and social benefits for rural communities in NE Australia. There is a significant opportunity to expand the sorghum industry in the region. Despite the global financial crisis, global demand for meat continues to increase, generating strong demand from intensive livestock industri .... Enabling Molecular Plant Breeding for Drought Adaptation Using Genome-to-Phenome Modelling Technologies. Effective molecular plant breeding for improved water productivity of sorghum would generate significant economic and social benefits for rural communities in NE Australia. There is a significant opportunity to expand the sorghum industry in the region. Despite the global financial crisis, global demand for meat continues to increase, generating strong demand from intensive livestock industries for feed grain. Price is projected to return to high levels given continuing use of major feed grains for biofuel. A 10% increase in sorghum production would add net value of $48M annually, much via employment. The scientific content of this project positions Australia at the leading edge globally in this emerging research field.
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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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    Showing 1-7 of 7 Funded Activites

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