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Field of Research : Genetics
Research Topic : life-course changes
Australian State/Territory : NSW
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Genetics (9)
Life Histories (Incl. Population Ecology) (9)
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  • Funded Activity

    Discovery Projects - Grant ID: DP0451711

    Funder
    Australian Research Council
    Funding Amount
    $345,000.00
    Summary
    Intra-genomic conflict and the evolution of sexually selected traits. The dynamics of sexual selection may prevent the simultaneous optimization of traits shared by the sexes, or of different traits within each sex. This proposal focuses on the consequences of these conflicts for phenotypic and genomic evolution. First, I will compare selection acting on a sexually dimorphic trait in males and females. Second, I will use artificial selection to create a novel sexually dimorphic trait, and track .... Intra-genomic conflict and the evolution of sexually selected traits. The dynamics of sexual selection may prevent the simultaneous optimization of traits shared by the sexes, or of different traits within each sex. This proposal focuses on the consequences of these conflicts for phenotypic and genomic evolution. First, I will compare selection acting on a sexually dimorphic trait in males and females. Second, I will use artificial selection to create a novel sexually dimorphic trait, and track the evolutionary response. Third, I will investigate the link between two important fitness traits: body size and ageing rate. This work will enhance important on-going research in the laboratory of Robert Brooks (UNSW).
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    Funded Activity

    Discovery Projects - Grant ID: DP0208052

    Funder
    Australian Research Council
    Funding Amount
    $482,000.00
    Summary
    Putting sexual selection in a life-history context: What is meant by genetic quality? Theories of sexual signalling have been developed largely without reference to life-history theory and quantitative genetics. We will test recent theory that shows the costs of signals are best measured in units of future survival and reproduction. In a series of field and laboratory experiments on the cricket Teleogryllus commodus, we will test the idea that the "male genetic quality" referred to by good-genes .... Putting sexual selection in a life-history context: What is meant by genetic quality? Theories of sexual signalling have been developed largely without reference to life-history theory and quantitative genetics. We will test recent theory that shows the costs of signals are best measured in units of future survival and reproduction. In a series of field and laboratory experiments on the cricket Teleogryllus commodus, we will test the idea that the "male genetic quality" referred to by good-genes models of sexual selection is quality in the general ability to acquire resources, rather than in how resources are allocated among fitness components.
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    Funded Activity

    Linkage Projects - Grant ID: LP0224911

    Funder
    Australian Research Council
    Funding Amount
    $67,635.00
    Summary
    Assessing the potential for and success of animal tranlocation: The Eastern Bristlebird as a case study. Translocation is set to become an important tool in the biodiversity conservation "toolbox", especially in securing species of small, cover-dependent, poorly dispersed passerine birds. Although there is a good theory for translocations, too few have been studied in detail to direct actions or predict outcomes. This project will develop a translocation methodology for the endangered Eastern Br .... Assessing the potential for and success of animal tranlocation: The Eastern Bristlebird as a case study. Translocation is set to become an important tool in the biodiversity conservation "toolbox", especially in securing species of small, cover-dependent, poorly dispersed passerine birds. Although there is a good theory for translocations, too few have been studied in detail to direct actions or predict outcomes. This project will develop a translocation methodology for the endangered Eastern Bristlebird and use detailed trapping and radio-tracking to determine the success of founder populations and the impacts of removing animals from source sites.
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    Funded Activity

    Discovery Projects - Grant ID: DP0877542

    Funder
    Australian Research Council
    Funding Amount
    $619,000.00
    Summary
    The functional genomics of locust migratory behaviour. Unravelling the molecular genetic basis of locust migratory behaviour will place Australia at the forefront of international biological research and simultaneously contribute to the development of new and safer ways to manage these notorious agricultural pests. We will use genomics and gene expression analyses to identify the suite of genes involved in the behavioural changes that catalyse locust swarm formation and migration. This collabor .... The functional genomics of locust migratory behaviour. Unravelling the molecular genetic basis of locust migratory behaviour will place Australia at the forefront of international biological research and simultaneously contribute to the development of new and safer ways to manage these notorious agricultural pests. We will use genomics and gene expression analyses to identify the suite of genes involved in the behavioural changes that catalyse locust swarm formation and migration. This collaborative study will enhance international relations with China, foster the development of gene-focused locust control strategies, and provide an exemplar study of an important and complex problem faced by Australia and international community.
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    Funded Activity

    Discovery Projects - Grant ID: DP0451558

    Funder
    Australian Research Council
    Funding Amount
    $135,000.00
    Summary
    Costs and individual variation in immune function: studies on a long-lived predator in tropical Australia. Enzyme-linked Immunosorbent Assay (ELISA) will be employed to quantify costs and individual variation in antibody response to a non-pathogenic antigen in water pythons (Liasis fuscus). Immune responsiveness is strongly correlated with disease and parasite resistance and has been documented to depend on environmental and genetic factors. All immunized snakes will be known-aged animals (rang .... Costs and individual variation in immune function: studies on a long-lived predator in tropical Australia. Enzyme-linked Immunosorbent Assay (ELISA) will be employed to quantify costs and individual variation in antibody response to a non-pathogenic antigen in water pythons (Liasis fuscus). Immune responsiveness is strongly correlated with disease and parasite resistance and has been documented to depend on environmental and genetic factors. All immunized snakes will be known-aged animals (ranging from 6 months to >20 years), of different nutritional status, known blood and gastro-intestinal parasite load and documented immuno-genetic profiles. This multidisciplinary approach will bring together population ecology, molecular genetics and immunology to elucidate links between these traits and ultimately how they affect python fitness.
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    Funded Activity

    Discovery Projects - Grant ID: DP0774511

    Funder
    Australian Research Council
    Funding Amount
    $234,000.00
    Summary
    The genetic basis of differentiation: Towards a predictive understanding of evolution in the wild. Given that Australia cannot escape the effects of, among others, climate change and habitat deterioration, the question of how this is going to impact Australia's unique flora and fauna is an important one. Since extinction is the final consequence of the inability to adapt with sufficient speed to changing environmental conditions, this raises the issue of how well we understand the processes unde .... The genetic basis of differentiation: Towards a predictive understanding of evolution in the wild. Given that Australia cannot escape the effects of, among others, climate change and habitat deterioration, the question of how this is going to impact Australia's unique flora and fauna is an important one. Since extinction is the final consequence of the inability to adapt with sufficient speed to changing environmental conditions, this raises the issue of how well we understand the processes underlying evolutionary adaptation. This project will provide insight into the process of population divergence and the role of genetics therein, and will enhance our understanding of the effects of environmental change, habitat fragmentation and population bottlenecks on population viability and Australia's biodiversity in general.
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    Funded Activity

    Discovery Projects - Grant ID: DP1094295

    Funder
    Australian Research Council
    Funding Amount
    $298,000.00
    Summary
    To be cooperative or selfish: individual decisions in a model society. Understanding the basis of cooperative behaviour is a major challenge to biological and social science. Our ability to deal with problems such as global warming and the rapid loss of biodiversity, will depend upon an unprecedented level of cooperation between individuals and countries. Our work will use an animal model that shares a number of key characteristics with the societies of our early human ancestors to explore, thro .... To be cooperative or selfish: individual decisions in a model society. Understanding the basis of cooperative behaviour is a major challenge to biological and social science. Our ability to deal with problems such as global warming and the rapid loss of biodiversity, will depend upon an unprecedented level of cooperation between individuals and countries. Our work will use an animal model that shares a number of key characteristics with the societies of our early human ancestors to explore, through experiments and detailed molecular analysis, the basis of cooperative interactions between individuals. This work will uncover the key principles that drive the evolution of cooperation in society and will help us to understand the basis of one the most important components of human nature.
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    Funded Activity

    Discovery Projects - Grant ID: DP1094004

    Funder
    Australian Research Council
    Funding Amount
    $295,000.00
    Summary
    The mechanisms and fitness consequences of nongenetic inheritance. For many decades, it was assumed that parents influence the characteristics of their offspring almost exclusively through the genes that they transmit, and this assumption forms the basis of modern genetics and evolutionary theory. However, it is becoming increasing clear that parents can also influence their offspring in many other ways, and that such 'nongenetic inheritance' can allow for the transmission of environmental influ .... The mechanisms and fitness consequences of nongenetic inheritance. For many decades, it was assumed that parents influence the characteristics of their offspring almost exclusively through the genes that they transmit, and this assumption forms the basis of modern genetics and evolutionary theory. However, it is becoming increasing clear that parents can also influence their offspring in many other ways, and that such 'nongenetic inheritance' can allow for the transmission of environmental influences across generations. Accumulating evidence suggests that nongenetic inheritance plays a crucial role in heritable diseases, and theory suggests that it can influence evolution. Following up on intriguing preliminary findings, this project will investigate the mechanisms and consequences of nongenetic inheritance.
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    Funded Activity

    Discovery Projects - Grant ID: DP0211238

    Funder
    Australian Research Council
    Funding Amount
    $227,000.00
    Summary
    Population growth, genetic variation and adaptation in two Caulerpa species in southeastern Australia. This project will examine factors that influence the population growth, reproduction, genetic variation and adaptation in two seaweeds; the invasive Caulerpa taxifolia and the possibly invasive C. filiformis. A combination of surveys, modelling, molecular genetics and field experiments will be undertaken to achieve this. The current ambiguity surrounding the status of C. filiformis as an inva .... Population growth, genetic variation and adaptation in two Caulerpa species in southeastern Australia. This project will examine factors that influence the population growth, reproduction, genetic variation and adaptation in two seaweeds; the invasive Caulerpa taxifolia and the possibly invasive C. filiformis. A combination of surveys, modelling, molecular genetics and field experiments will be undertaken to achieve this. The current ambiguity surrounding the status of C. filiformis as an invasive species in Australia will be addressed by comparing DNA sequences of Australian and African plants. This project will provide critical data for managing invasive species, but more broadly, increase the current understanding of their biology and the factors important in their population growth and adaptation.
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