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Current Selection
Status : Active
Field of Research : Evolutionary Biology
Research Topic : ADAPTATION
Australian State/Territory : NSW
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Biological Adaptation (7)
Evolutionary Biology (7)
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  • Researchers (35)
  • Funded Activities (7)
  • Organisations (8)
  • Active Funded Activity

    Discovery Projects - Grant ID: DP180103844

    Funder
    Australian Research Council
    Funding Amount
    $530,496.00
    Summary
    Does dynamic ecological change cause rapid evolution? This project aims to increase understanding of how Australia’s native biota responds to rapid environmental changes. Abrupt environmental change has the potential to drive rapid evolution, which may facilitate species persistence in the face of novel challenges. This project will use long-term genomic data to quantify rates of evolutionary change in species living in arid environments, whose populations fluctuate markedly in response to rainf .... Does dynamic ecological change cause rapid evolution? This project aims to increase understanding of how Australia’s native biota responds to rapid environmental changes. Abrupt environmental change has the potential to drive rapid evolution, which may facilitate species persistence in the face of novel challenges. This project will use long-term genomic data to quantify rates of evolutionary change in species living in arid environments, whose populations fluctuate markedly in response to rainfall variation. By measuring the pace of genomic change in these species, and the evolutionary processes driving that change, this project will reveal species’ evolutionary responses to major environmental fluctuations.
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    Active Funded Activity

    Discovery Projects - Grant ID: DP200101971

    Funder
    Australian Research Council
    Funding Amount
    $424,514.00
    Summary
    Can sexual conflict contribute to a resolution of the paradox of sex? Despite over a century of research, it remains unclear why most animals can reproduce only via sex. An exciting new hypothesis proposes that sexual conflict can promote sexual reproduction and inhibit asexual strategies, suggesting a potential solution to this long-standing paradox. Building on my research expertise, and using a native Australian insect species in which the role of sexual conflict can be studied in natural pop .... Can sexual conflict contribute to a resolution of the paradox of sex? Despite over a century of research, it remains unclear why most animals can reproduce only via sex. An exciting new hypothesis proposes that sexual conflict can promote sexual reproduction and inhibit asexual strategies, suggesting a potential solution to this long-standing paradox. Building on my research expertise, and using a native Australian insect species in which the role of sexual conflict can be studied in natural populations, this ambitious project aims to test this hypothesis for the first time. This research will expand knowledge in the biological sciences by helping to answer one of the most challenging questions in evolutionary biology. This work will also contribute to efforts to monitor Australia's unique insect fauna.
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    Active Funded Activity

    Discovery Projects - Grant ID: DP190100899

    Funder
    Australian Research Council
    Funding Amount
    $390,000.00
    Summary
    How mates and sexual rivals affect reproductive costs, lifespan and ageing. This project aims to dissect the complex costs of reproduction, bridging an old divide between evolutionary and biomedical approaches to understanding ageing and lifespan. Merely detecting the smell of another individual, without ever encountering them, can cause an individual to mature sooner, age faster, or live a shorter life. These costs, and the fact that subsequent mating can restore adult ageing and lifespan to "n .... How mates and sexual rivals affect reproductive costs, lifespan and ageing. This project aims to dissect the complex costs of reproduction, bridging an old divide between evolutionary and biomedical approaches to understanding ageing and lifespan. Merely detecting the smell of another individual, without ever encountering them, can cause an individual to mature sooner, age faster, or live a shorter life. These costs, and the fact that subsequent mating can restore adult ageing and lifespan to "normal" are causing a re-evaluation of the costs of reproduction - an important but enigmatic concept in evolution. This project expects to resolve how and why the physical presence of a mate, or odour cues of such a mate, can have such dramatic effects on ageing and late-life performance.
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    Active Funded Activity

    Discovery Projects - Grant ID: DP180103611

    Funder
    Australian Research Council
    Funding Amount
    $217,096.00
    Summary
    How does climate affect regeneration and distribution of Australian plants? This project aims to quantify the degree to which Australian plant species have responded to changes in climate over the last few decades, and to build understanding of the mechanisms that underpin responses to climate change. It seeks to fill critical knowledge gaps about the way heatwaves, freezing temperatures and temperature variability affect plants. The project aims to introduce a novel approach that will allow ass .... How does climate affect regeneration and distribution of Australian plants? This project aims to quantify the degree to which Australian plant species have responded to changes in climate over the last few decades, and to build understanding of the mechanisms that underpin responses to climate change. It seeks to fill critical knowledge gaps about the way heatwaves, freezing temperatures and temperature variability affect plants. The project aims to introduce a novel approach that will allow assessment of physiological and morphological change in response to recent climate change in the absence of historic data. Improved accuracy in identifying species that will have trouble responding to climate change would allow managers to more effectively target their resources to maximise biodiversity and ecosystem function.
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    Active Funded Activity

    Discovery Projects - Grant ID: DP200100832

    Funder
    Australian Research Council
    Funding Amount
    $520,000.00
    Summary
    The sparrows in the mining towns: a century of adaptation to contamination. Our research will characterise how contamination from the extraction of precious metals can spread through the environment and how it effects a highly urbanised bird – the house sparrow. In many cases, populations of these birds have been intimately associated with mining operations for over a century, and our recent work has provided evidence of adaptation over time. House sparrows provide a great natural system to unde .... The sparrows in the mining towns: a century of adaptation to contamination. Our research will characterise how contamination from the extraction of precious metals can spread through the environment and how it effects a highly urbanised bird – the house sparrow. In many cases, populations of these birds have been intimately associated with mining operations for over a century, and our recent work has provided evidence of adaptation over time. House sparrows provide a great natural system to understand the genetic potential of organisms to adapt to anthropomorphic change in the environment connected with the resources industry. Our work, will bring new insight into the future management of environmental contamination, and the mitigation of adverse effects arising from resource extraction.
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    Active Funded Activity

    Discovery Early Career Researcher Award - Grant ID: DE220100466

    Funder
    Australian Research Council
    Funding Amount
    $462,647.00
    Summary
    Mito-nuclear coevolution as an engine of biodiversity. This project aims to advance understanding of the processes that drive speciation and generate biodiversity. It will use Australia’s native social bees to test whether genetic diversity in mitochondrial genomes drives biodiversity at the population level, combining molecular and field studies in this uniquely tractable natural system. The expected outcome is a significant advance in knowledge of how coevolution between the two genomes of euk .... Mito-nuclear coevolution as an engine of biodiversity. This project aims to advance understanding of the processes that drive speciation and generate biodiversity. It will use Australia’s native social bees to test whether genetic diversity in mitochondrial genomes drives biodiversity at the population level, combining molecular and field studies in this uniquely tractable natural system. The expected outcome is a significant advance in knowledge of how coevolution between the two genomes of eukaryotic cells - mitochondrial and nuclear - affect the observable diversity of the natural world. The project is also expected to benefit the management and conservation of Australian native bees, which are vital pollinators in our natural and agro-ecosystems.
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    Active Funded Activity

    Discovery Projects - Grant ID: DP210102176

    Funder
    Australian Research Council
    Funding Amount
    $450,000.00
    Summary
    Skin Microbes and Animal Health: Understanding the Ecological Context. This project aims to understand the fundamental ecological relationships between animal hosts (frogs, geckos) and bacteria on their skin by separating host effects from environmental factors that determine skin microbiome composition. The research is significant because it will generate new knowledge needed to understand how skin microbes function in providing protection against disease. Expected outcomes include the provisio .... Skin Microbes and Animal Health: Understanding the Ecological Context. This project aims to understand the fundamental ecological relationships between animal hosts (frogs, geckos) and bacteria on their skin by separating host effects from environmental factors that determine skin microbiome composition. The research is significant because it will generate new knowledge needed to understand how skin microbes function in providing protection against disease. Expected outcomes include the provision of essential information that will guide future research efforts on the factors that determine a healthy skin microbial community (which is needed before skin diseases can be combated). The research will provide significant benefits, including more targeted conservation efforts to combat wildlife skin diseases.
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    Showing 1-7 of 7 Funded Activites

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