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Research Topic : life-course changes
Australian State/Territory : TAS
Australian State/Territory : NSW
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Evolutionary Biology (3)
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  • Funded Activity

    Linkage Projects - Grant ID: LP140100088

    Funder
    Australian Research Council
    Funding Amount
    $160,000.00
    Summary
    The Lively Regional City: Mapping City Centre ‘Assemblages’ that Work. This project analyses city centre revitalisation processes and policies in the context of regional Australia. Working with Wollongong City Council, the project aims to provide an evidence-based analysis of how the Wollongong city centre is perceived, regarded and used by its residents and visitors, paying particular attention to those aspects considered either 'lively' or 'dead'; its goal is to interrogate revitalisation poli .... The Lively Regional City: Mapping City Centre ‘Assemblages’ that Work. This project analyses city centre revitalisation processes and policies in the context of regional Australia. Working with Wollongong City Council, the project aims to provide an evidence-based analysis of how the Wollongong city centre is perceived, regarded and used by its residents and visitors, paying particular attention to those aspects considered either 'lively' or 'dead'; its goal is to interrogate revitalisation policy frameworks and create decision-making tools to inform planning processes for long-term city centre revitalisation and sustainable economic growth; and identify opportunities for innovative city centre planning in Wollongong to contribute to the regions sustainable transformation, long-term growth, employment and community development.
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    Funded Activity

    Discovery Projects - Grant ID: DP0881329

    Funder
    Australian Research Council
    Funding Amount
    $342,000.00
    Summary
    Molecular aggression: variation and heritability of the levels of reactive oxygen species, and their effects on the evolution of life histories in the wild. Three areas of biology have intrigued every generation since Aristotle (c. 300 BC)- sex, embryology, and ageing. This proposal targets all three of these areas with a special focus on aspects of ageing. In particular, we assess how 'free radicals', so often identified in our food and wine for good and bad, exert selection on living organisms .... Molecular aggression: variation and heritability of the levels of reactive oxygen species, and their effects on the evolution of life histories in the wild. Three areas of biology have intrigued every generation since Aristotle (c. 300 BC)- sex, embryology, and ageing. This proposal targets all three of these areas with a special focus on aspects of ageing. In particular, we assess how 'free radicals', so often identified in our food and wine for good and bad, exert selection on living organisms and whether resistance (and defense) towards free radicals may drive evolution of ageing in the wild, its trade offs with fertility and fecundity, and how it is influenced by sexual or non-sexual reproduction. In spite of excellent work in the laboratory, this is the first attempt to do this in 'the real world' and will extend Australia's excellent reputation in evolutionary biology.
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    Funded Activity

    Linkage - International - Grant ID: LX0774859

    Funder
    Australian Research Council
    Funding Amount
    $38,000.00
    Summary
    From developmental stability to organismic senility: Hox genes and telomere impact on life history evolution. Australia benefits from training researchers and technicians in new, break-through biotechnology and from applying this knowledge to relevant, cutting-edge questions in highly publicized research fields. This project contains both these ingredients. Our model species (a lizard) has a relatively high level of offspring malformations (ca 15%), which makes it much more likely to detect thei .... From developmental stability to organismic senility: Hox genes and telomere impact on life history evolution. Australia benefits from training researchers and technicians in new, break-through biotechnology and from applying this knowledge to relevant, cutting-edge questions in highly publicized research fields. This project contains both these ingredients. Our model species (a lizard) has a relatively high level of offspring malformations (ca 15%), which makes it much more likely to detect their underlying genetic mechanism. Furthermore, we can also assess how these animals survive and reproduce in relation to how quickly they age, which can be measured by assessing the shortening of telomeres per unit time. Thus, this collaboration provides an opportunity to train Australian researchers and in that process generate very high profile research.
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    Active Funded Activity

    Discovery Projects - Grant ID: DP220102928

    Funder
    Australian Research Council
    Funding Amount
    $468,000.00
    Summary
    Unlocking telomere effects on life, death and fitness in a warming world. Few things in biology provoke such a strong desire for understanding as when adult death and fatal disease can be predicted early in life. A common factor linking early life stress, disease, ageing and time of death are telomeres, the protective regions at the end of each chromosome. This project aims to explicitly link telomere dynamics in free-living ectotherm populations with experimental approaches to advance our under .... Unlocking telomere effects on life, death and fitness in a warming world. Few things in biology provoke such a strong desire for understanding as when adult death and fatal disease can be predicted early in life. A common factor linking early life stress, disease, ageing and time of death are telomeres, the protective regions at the end of each chromosome. This project aims to explicitly link telomere dynamics in free-living ectotherm populations with experimental approaches to advance our understanding of parental and environmental effects on offspring telomeres and their effects later in life. This project will take advantage of one of the world’s longest datasets on ectotherm responses to climate to provide new knowledge of how telomeres affect fitness and the role that the environment plays.
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