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Research Topic : Epigenetics
Status : Closed
Australian State/Territory : SA
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Epigenetics (incl. Genome Methylation and Epigenomics) (6)
Genetics (3)
Cell Development, Proliferation and Death (2)
Evolutionary Biology (2)
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Animal Growth and Development (1)
Biochemistry and Cell Biology not elsewhere classified (1)
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  • Researchers (4)
  • Funded Activities (7)
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  • Funded Activity

    The Impact Of The Neonatal Gut Microbiome On Specific And Nonspecific Vaccine Responses.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $661,496.00
    Summary
    Humans are colonised by a large and diverse group of microorganisms, collectively known as the microbiome. The gut microbiome, in particular, hosts an enormous abundance and diversity of bacteria, which perform a range of essential beneficial functions. Our study will investigate whether disruption of the gut microbiome in newborns, for example through antibiotic usage or maternal diet, leads to an impairment of subsequent immune responses to childhood immunisations.
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    Funded Activity

    Histone Demethylase KDM6A Is A Novel Target For Treating Craniosynostosis In Children With Saethre-Chotzen Syndrome

    Funder
    National Health and Medical Research Council
    Funding Amount
    $548,854.00
    Summary
    Children with Saethre-Chotzen syndrome exhibit premature fused coronal sutures, and other skull/ skeletal malformations. Surgical intervention is the only treatment option to ensure optimal cognitive and skeletal development. Our studies have identified a candidate molecular pathway that regulates bone formation by cranial bone cells from these patients. Targeting this key molecular regulator with chemical inhibitors will help prevent the premature fusion of cranial sutures.
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    Funded Activity

    Discovery Projects - Grant ID: DP120101703

    Funder
    Australian Research Council
    Funding Amount
    $344,000.00
    Summary
    HEN1 is a regulator of piRNA metabolism, transcriptional regulation and mammalian male fertility. This project is to define the biochemistry of a previously uncharacterized protein in male fertility using a unique mouse model and innovative DNA and protein technologies. This project will define a novel, and essential, pathway for male fertility and may ultimately have relevance to the maintenance of health or improving fertility.
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    Funded Activity

    ARC Future Fellowships - Grant ID: FT130100525

    Funder
    Australian Research Council
    Funding Amount
    $752,520.00
    Summary
    The role of long non-coding RNAs in the epigenetic control of gene expression during endosperm development in plants. Elucidating the molecular events underlying the biology of seed development is important in both understanding plant development and in developing new methods to enhance the productivity and qualities of grain crops. In recent years it has become clear that various classes of non-coding RNAs have important roles in gene regulation. Of these non-coding RNAs, small RNAs (20-25 nucl .... The role of long non-coding RNAs in the epigenetic control of gene expression during endosperm development in plants. Elucidating the molecular events underlying the biology of seed development is important in both understanding plant development and in developing new methods to enhance the productivity and qualities of grain crops. In recent years it has become clear that various classes of non-coding RNAs have important roles in gene regulation. Of these non-coding RNAs, small RNAs (20-25 nucleotides) are beginning to be understood however less is known about the role and complexity of long non-coding RNAs. This project would identify new regulators of seed development that may lead to novel methods to increase grain yields, ultimately benefitting the Australian grains industry.
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    Funded Activity

    Linkage Projects - Grant ID: LP130100646

    Funder
    Australian Research Council
    Funding Amount
    $554,645.00
    Summary
    The role of epigenetic modifications in bovid adaptation to environmental change. This project will explore the role of epigenetic change, where gene expression is regulated without changing the deoxyribonucleic acid (DNA) sequence, in how animals adapt to rapid climate change. This project will trace epigenetic markers in ancient bison and cows through 30,000 years of climate change, and identify key adaptive genes for the cattle industry.
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    Funded Activity

    ARC Future Fellowships - Grant ID: FT110100373

    Funder
    Australian Research Council
    Funding Amount
    $695,028.00
    Summary
    Ageing and the muscle stem cell niche. Adult stem cells are critical for repair and maintenance of tissues and ageing tissues show reduced stem cell function. This project will focus on how ageing leads to disruption of communication between muscle stem cells and their niche. The project aims to identify new therapeutic targets for age-related muscle wasting and reduced mobility in the elderly.
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    Funded Activity

    Discovery Early Career Researcher Award - Grant ID: DE180100624

    Funder
    Australian Research Council
    Funding Amount
    $365,058.00
    Summary
    The role of epigenetic modifications in tiger snake adaptation. This project aims to investigate mechanisms underlying animal adaptation to future environmental change by examining the molecular basis for phenotypic plasticity in snakes. This project will specifically examine variation in genetic/epigenetic profiles and compare against important fitness traits, such as variable head size, bite force and swallowing performance to identify relationships between molecular change and physiology. Suc .... The role of epigenetic modifications in tiger snake adaptation. This project aims to investigate mechanisms underlying animal adaptation to future environmental change by examining the molecular basis for phenotypic plasticity in snakes. This project will specifically examine variation in genetic/epigenetic profiles and compare against important fitness traits, such as variable head size, bite force and swallowing performance to identify relationships between molecular change and physiology. Such research is a critical first step in improving our knowledge of the mechanisms whereby animal populations may adapt to environmental change, allowing us to facilitate such processes or concentrate conservation effort where species are unable to adapt via epigenetic modification.
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