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Field of Research : Evolutionary Biology
Australian State/Territory : NSW
Research Topic : resources allocation
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Evolutionary Biology (12)
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  • Researchers (22)
  • Funded Activities (12)
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  • Funded Activity

    Discovery Projects - Grant ID: DP0452193

    Funder
    Australian Research Council
    Funding Amount
    $360,000.00
    Summary
    Latitudinal gradients in biotic processes affecting plant growth and establishment. The idea that plant-animal interactions are more intense in the tropics underpins much thinking about tropical ecology, global patterns in plant traits, and latitudinal gradients in biodiversity. In this project, we will provide the first direct and global test of this idea by quantifying the intensity of herbivory, seed predation and density-dependent seedling mortality at approximately 100 study sites around th .... Latitudinal gradients in biotic processes affecting plant growth and establishment. The idea that plant-animal interactions are more intense in the tropics underpins much thinking about tropical ecology, global patterns in plant traits, and latitudinal gradients in biodiversity. In this project, we will provide the first direct and global test of this idea by quantifying the intensity of herbivory, seed predation and density-dependent seedling mortality at approximately 100 study sites around the world. We will also investigate the causes of these latitudinal gradients by determining which environmental variables are most closely associated with the strength of biotic interactions.
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    Funded Activity

    Discovery Projects - Grant ID: DP0558434

    Funder
    Australian Research Council
    Funding Amount
    $440,000.00
    Summary
    Integrating sexual selection and the allocation of sex in the zebra finch: back to the outback. The Australian zebra finch has become the primary avian model species in evolutionary biology studies in Europe and North America as the focus of classic laboratory-based studies of sexual selection, and sex allocation. Surprisingly, these studies have focused on populations of birds maintained in an unnatural environment and in captivity for decades that have been through tens of generations of artif .... Integrating sexual selection and the allocation of sex in the zebra finch: back to the outback. The Australian zebra finch has become the primary avian model species in evolutionary biology studies in Europe and North America as the focus of classic laboratory-based studies of sexual selection, and sex allocation. Surprisingly, these studies have focused on populations of birds maintained in an unnatural environment and in captivity for decades that have been through tens of generations of artificial selection, the effects of which are unknown - not a trivial issue for students of evolution. Using experimental manipulations I will study these high profile research areas in wild populations, focusing international attention on this internationally recognised Australian species and raising the profile of Australian research.
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    Funded Activity

    Discovery Projects - Grant ID: DP0211364

    Funder
    Australian Research Council
    Funding Amount
    $25,000.00
    Summary
    How and why do female lizards manipulate the sex and size of their offspring. Mathematical models suggest that reproducing females may be able to enhance their evolutionary fitness by modifying the relative allocation of resources to sons versus daughters. This project uses a model reptile system and an integrated series of experimental and field studies to examine patterns of maternal allocation to sons versus daughters and differential male and female offspring fitness in a range of environmen .... How and why do female lizards manipulate the sex and size of their offspring. Mathematical models suggest that reproducing females may be able to enhance their evolutionary fitness by modifying the relative allocation of resources to sons versus daughters. This project uses a model reptile system and an integrated series of experimental and field studies to examine patterns of maternal allocation to sons versus daughters and differential male and female offspring fitness in a range of environments. This study will provide robust tests of adaptationist hypotheses from sex-allocation theory and provide quantitative data necessary to understand the evolution of sex-determination systems in reptiles.
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    Funded Activity

    Discovery Projects - Grant ID: DP0774015

    Funder
    Australian Research Council
    Funding Amount
    $320,000.00
    Summary
    Uncovering the evolutionary history of Australasian marsupials: combining molecular phylogenetics and ecological inference. Marsupials are symbolic of the uniqueness of Australia's biological systems and there is widespread public interest in their natural history. Yet we know little of the evolutionary mechanisms that have shaped their biodiversity. This is a critical problem when considered in the context of Australian marsupials having suffered the highest extinction rate of any continental m .... Uncovering the evolutionary history of Australasian marsupials: combining molecular phylogenetics and ecological inference. Marsupials are symbolic of the uniqueness of Australia's biological systems and there is widespread public interest in their natural history. Yet we know little of the evolutionary mechanisms that have shaped their biodiversity. This is a critical problem when considered in the context of Australian marsupials having suffered the highest extinction rate of any continental mammal fauna over the past 200 years. This project will make a major contribution to understanding the origins, timescale and ecological nature of Australasian marsupial evolution. In doing so, it will inform conservation strategy, promote Australasian marsupials as a model system for studying faunal coevolution and develop widely applicable bioinformatic tools.
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    Funded Activity

    Discovery Projects - Grant ID: DP0987218

    Funder
    Australian Research Council
    Funding Amount
    $225,000.00
    Summary
    Predicting Biodiversity from Population Dynamics. This research aims to deepen our understanding of how changes to the environment, including those attributable to human activities, influence the ecological and evolutionary mechanisms that generate and maintain biodiversity. This understanding is of urgent importance, in light of the predicted changes in climate and habitat over the next century, because biodiversity is critical to the proper functioning of ecosystems that human societies depend .... Predicting Biodiversity from Population Dynamics. This research aims to deepen our understanding of how changes to the environment, including those attributable to human activities, influence the ecological and evolutionary mechanisms that generate and maintain biodiversity. This understanding is of urgent importance, in light of the predicted changes in climate and habitat over the next century, because biodiversity is critical to the proper functioning of ecosystems that human societies depend upon. The graduate student involved in this research will have the opportunity to receive in-depth training as part of a cross-disciplinary collaboration that combines mathematics, ecology, evolution, and paleontology.
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    Funded Activity

    Linkage - International - Grant ID: LX0668753

    Funder
    Australian Research Council
    Funding Amount
    $22,000.00
    Summary
    The evolutionary effect of the domestication process in a model organism. A significant proportion of research in the field of evolutionary biology, focuses on captive populations of laboratory-bred animals. Little is known about the impact of the domestication process on these species, raising questions about the relevance of such studies. The Australian zebra finch is the avian model species of choice in evolutionary biology laboratories in Europe and the USA and the focus of many high profile .... The evolutionary effect of the domestication process in a model organism. A significant proportion of research in the field of evolutionary biology, focuses on captive populations of laboratory-bred animals. Little is known about the impact of the domestication process on these species, raising questions about the relevance of such studies. The Australian zebra finch is the avian model species of choice in evolutionary biology laboratories in Europe and the USA and the focus of many high profile publications. Our investigation into the affect of domestication on the evolutionary biology of this key model species will have a high international impact, raising the profile of Australian research, in addition to providing fundamental knowledge across several areas of reproductive biology.
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    Funded Activity

    Discovery Projects - Grant ID: DP0879313

    Funder
    Australian Research Council
    Funding Amount
    $400,000.00
    Summary
    Mother knows best: an integrative study on the causes and fitness consequences of individual maternal strategies in the Australian zebra finch. Mothers can shape the development and behavior of their offspring by differentially allocating recourses at early life stages. Such early maternal effects have been described throughout the animal kingdom, from insects to man, their long-term consequences for the offspring are however poorly understood. Using the iconic Australian zebra finch, I will inv .... Mother knows best: an integrative study on the causes and fitness consequences of individual maternal strategies in the Australian zebra finch. Mothers can shape the development and behavior of their offspring by differentially allocating recourses at early life stages. Such early maternal effects have been described throughout the animal kingdom, from insects to man, their long-term consequences for the offspring are however poorly understood. Using the iconic Australian zebra finch, I will investigate how early maternal strategies can shape the offspring's later life, including their sexual behavior and own reproduction. This project is at the forefront of this topical biological discipline and will significantly rise the international profile of Australian basic research.
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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

    Discovery Projects - Grant ID: DP0772577

    Funder
    Australian Research Council
    Funding Amount
    $255,000.00
    Summary
    Exposing genetic quality: whole-organism performance and life-history trade-offs under genetic and phenotypic stress in the field cricket Teleogryllus commodus. This project will provide fundamental knowledge by answering several important evolutionary questions concerning the relationship between performance and reproductive fitness, and in doing so will pave the way for future integration between traditionally separate disciplines. If funded, the project will enhance Australia's reputation for .... Exposing genetic quality: whole-organism performance and life-history trade-offs under genetic and phenotypic stress in the field cricket Teleogryllus commodus. This project will provide fundamental knowledge by answering several important evolutionary questions concerning the relationship between performance and reproductive fitness, and in doing so will pave the way for future integration between traditionally separate disciplines. If funded, the project will enhance Australia's reputation for integrative evolutionary research, and will contribute to the training of young scientists in this and related areas. Finally, the proposed work will provide important information to conservationists and animal breeders on the potential effects of inbreeding, and on factors affecting the spread of invasive species.
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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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