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Research Topic : Sun Protection
Field of Research : Evolutionary Biology
Australian State/Territory : SA
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Animal Systematics, Taxonomy And Phylogeny (4)
Evolutionary Biology (4)
Plant Protection (Pests, Diseases And Weeds) (4)
Ecology And Evolution Not Elsewhere Classified (2)
Invertebrate Biology (1)
Molecular Evolution (1)
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Biological sciences (3)
Control of pests and exotic species (3)
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  • Funded Activity

    Linkage Projects - Grant ID: LP0348703

    Funder
    Australian Research Council
    Funding Amount
    $69,099.00
    Summary
    Genetic variation in the Cotesia flavipes complex of parasitic wasps: towards the effective biological control of stem-borer pests. This project will determine the genetic variation among world populations of the parasitic wasp Cotesia flavipes, as a prelude to the preemptive biological control of stemborer pests of sugarcane in Australia. These pests currently do not occur in Australia, but are found in crops across New Guinea and Indonesia, so that their incursion into Australia is highly lik .... Genetic variation in the Cotesia flavipes complex of parasitic wasps: towards the effective biological control of stem-borer pests. This project will determine the genetic variation among world populations of the parasitic wasp Cotesia flavipes, as a prelude to the preemptive biological control of stemborer pests of sugarcane in Australia. These pests currently do not occur in Australia, but are found in crops across New Guinea and Indonesia, so that their incursion into Australia is highly likely in the future. The results of this project will clarify the taxonomic status of C. flavipes-like species in Australia and provide the means, using molecular markers, to select host strains of this wasp suitable for the control of specific stemborer species
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    Funded Activity

    Linkage Projects - Grant ID: LP0990713

    Funder
    Australian Research Council
    Funding Amount
    $265,000.00
    Summary
    Phylogeography and host specificity of stemborer parasitoids: essential components for the pre-emptive biocontrol of sugarcane pests in Australia. Stemboring insects cause huge economic losses to the sugar industry world-wide but fortunately these pests are largely absent from Australia, in part because quarantine measures have prevented their introduction. However, given their proximity, incursion of foreign stemborers from Asia pose a serious threat to Australian sugarcane. To prepare effectiv .... Phylogeography and host specificity of stemborer parasitoids: essential components for the pre-emptive biocontrol of sugarcane pests in Australia. Stemboring insects cause huge economic losses to the sugar industry world-wide but fortunately these pests are largely absent from Australia, in part because quarantine measures have prevented their introduction. However, given their proximity, incursion of foreign stemborers from Asia pose a serious threat to Australian sugarcane. To prepare effective pest management plans that can be adopted promptly in a worst-case scenario, this study will 1) develop molecular diagnostic tools to select wasp biocontrol agents that are suitable for the control of specific foreign stemborer pests, and 2) evaluate whether any Australian native wasps have the ability to kill foreign stemborers.
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    Funded Activity

    Linkage Projects - Grant ID: LP0776833

    Funder
    Australian Research Council
    Funding Amount
    $227,000.00
    Summary
    Systematics and coevolution of insect herbivores on casuarinas: testing phylogenetic congruence for selection of plant biocontrol agents. The casuarinas (sheoaks) are a significant component of the Australian floral landscape. Associated with them are many co-evolved insects, some of which may prove useful as biocontrol agents against Casuarina weeds. Using morphological taxonomy combined with a novel molecular approach, we will compare the co-evolution of psyllids, scale and gall insects, and w .... Systematics and coevolution of insect herbivores on casuarinas: testing phylogenetic congruence for selection of plant biocontrol agents. The casuarinas (sheoaks) are a significant component of the Australian floral landscape. Associated with them are many co-evolved insects, some of which may prove useful as biocontrol agents against Casuarina weeds. Using morphological taxonomy combined with a novel molecular approach, we will compare the co-evolution of psyllids, scale and gall insects, and weevils with that of the casuarinas. This project will have significant implications for conservation and regeneration of casuarinas in the Australian context and the selection of specific biocontrol agents against casuarinas as environmental weeds.
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    Funded Activity

    Discovery Projects - Grant ID: DP0452084

    Funder
    Australian Research Council
    Funding Amount
    $210,000.00
    Summary
    Evolution of microgastroid parasitic wasps and their symbiotic viruses - a major group of biological control agents. Microgastroid wasps represent a huge assemblage of species that are parasitic in lepidopteran (moth) larvae and are a major group of biological control agents of agricultural pests. They also possess a unique association with a group of symbiotic viruses that when introduced into a host, block its immune response. This project will elucidate the evolutionary relationships among .... Evolution of microgastroid parasitic wasps and their symbiotic viruses - a major group of biological control agents. Microgastroid wasps represent a huge assemblage of species that are parasitic in lepidopteran (moth) larvae and are a major group of biological control agents of agricultural pests. They also possess a unique association with a group of symbiotic viruses that when introduced into a host, block its immune response. This project will elucidate the evolutionary relationships among wasps and viruses employing morphology, sequence data and information on mitochondrial genome organisation as a basis for investigating the level of cophylogeny between these partner organisms, and to provide a framework for studies on wasp-host interactions at a molecular level.
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