A molecular ecophysiological assessment of the importance of using local provenance seed in plant biodiversity restoration. The rehabilitation of Australia's unique plant diversity, following disturbance, is an increasingly important activity nationally, involving industry, government and community. The use of local seeds is recognised as best practise, but how local is local? We will use molecular tools to identify the extent of local seed transfer zones, conduct trials to assess the relative ....A molecular ecophysiological assessment of the importance of using local provenance seed in plant biodiversity restoration. The rehabilitation of Australia's unique plant diversity, following disturbance, is an increasingly important activity nationally, involving industry, government and community. The use of local seeds is recognised as best practise, but how local is local? We will use molecular tools to identify the extent of local seed transfer zones, conduct trials to assess the relative performance of local and non-local seeds (is there a home-site advantage?), and assess the consequences of mixing provenances for future generations. We will work closely with industry and community restoration practitioners to improve the effectiveness of restoration, with benefits flowing nationally through general provenance guidelines.Read moreRead less
A stitch in time: evidence-based strategy to keep platypus from extinction. This project aims to assess the status of the iconic platypus, identified as ‘near-threatened’ in 2014. The project’s multidisciplinary approach plans to compare regulated and unregulated rivers to investigate metapopulation structure (via physical and genetic tagging), current condition and future adaptability of the species, as well as other threats and habitat quality. The project also links vulnerability of platypus ....A stitch in time: evidence-based strategy to keep platypus from extinction. This project aims to assess the status of the iconic platypus, identified as ‘near-threatened’ in 2014. The project’s multidisciplinary approach plans to compare regulated and unregulated rivers to investigate metapopulation structure (via physical and genetic tagging), current condition and future adaptability of the species, as well as other threats and habitat quality. The project also links vulnerability of platypus populations to conservation actions that reduce extinction risk, through rigorous decision analyses. It is anticipated that the project will deliver implementable conservation actions at relevant scales.Read moreRead less
Improving the Accuracy and Intelligibility of Decisions for Conservation using the Informed Regulator Rule. Standard conservation biology uses some obsolete statistical and experimental design methods that may damage conservation biology, the environment and the economy. This project intends to refine and test a methodology (the Informed Regulator Rule) to improve the quality and transparency of conservation studies, compliance monitoring and auditing. Building on research in the psychology of ....Improving the Accuracy and Intelligibility of Decisions for Conservation using the Informed Regulator Rule. Standard conservation biology uses some obsolete statistical and experimental design methods that may damage conservation biology, the environment and the economy. This project intends to refine and test a methodology (the Informed Regulator Rule) to improve the quality and transparency of conservation studies, compliance monitoring and auditing. Building on research in the psychology of statistical (mis)understanding, the project will test the Informed Regulator Rule by computer simulation and empirical tests of impact scenarios with emphasis on data from recent studies. The cognitive accessibility and utility of the rule will be assessed theoretically and in practice.Read moreRead less
Optimal management of threatened amphibian metapopulations in urbanising landscapes. This project will enable the identification of optimal management strategies for many species threatened by the loss and fragmentation of their habitat, both in Australia and internationally. Our research will contribute to the recovery of the endangered Growling Grass Frog, and drive the conservation of wetland biodiversity on the fringe of Australia's fastest growing city. Both the methods and specific recomme ....Optimal management of threatened amphibian metapopulations in urbanising landscapes. This project will enable the identification of optimal management strategies for many species threatened by the loss and fragmentation of their habitat, both in Australia and internationally. Our research will contribute to the recovery of the endangered Growling Grass Frog, and drive the conservation of wetland biodiversity on the fringe of Australia's fastest growing city. Both the methods and specific recommendations for management that we develop will contribute to the goal of an environmentally-sustainable Australia. This project will expand Australia's capacity to solve conservation problems, and will promote biological diversity in urban environments, to the benefit of their human inhabitants.Read moreRead less
Human-induced changes in the genetic structure of amphibian populations. This study will produce one of the first predictive models of the impact of humans on the genetic structure of animal populations. It will contribute to land-use planning in the greater Melbourne area, and support the regional action plan called Melbourne2030. It will promote active collaboration between universities and Museum Victoria, enriching our local intellectual community. The project will address current debates wi ....Human-induced changes in the genetic structure of amphibian populations. This study will produce one of the first predictive models of the impact of humans on the genetic structure of animal populations. It will contribute to land-use planning in the greater Melbourne area, and support the regional action plan called Melbourne2030. It will promote active collaboration between universities and Museum Victoria, enriching our local intellectual community. The project will address current debates within landscape genetics, and strengthen Australia's international standing in landscape ecology. Several Australian undergraduate and PhD students will participate in cutting-edge science, which helps Australia maintain its prominent international reputation in these fields.Read moreRead less
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE160100066
Funder
Australian Research Council
Funding Amount
$260,000.00
Summary
Enhanced modelling capacity for the Industrial Ecology Virtual Laboratory. Enhanced modelling capacity for the Industrial Ecology Virtual Laboratory:
This project aims to enable Australian research leaders working on the integrated sustainability assessment of policies, products and projects to collaborate in the Industrial Ecology Virtual Laboratory (IELab). It seeks to develop and implement an enhanced modelling capability and suite of online analytical tools to support sustainability scienti ....Enhanced modelling capacity for the Industrial Ecology Virtual Laboratory. Enhanced modelling capacity for the Industrial Ecology Virtual Laboratory:
This project aims to enable Australian research leaders working on the integrated sustainability assessment of policies, products and projects to collaborate in the Industrial Ecology Virtual Laboratory (IELab). It seeks to develop and implement an enhanced modelling capability and suite of online analytical tools to support sustainability scientists and analysts from Australia and abroad conducting research projects of national and international significance. In particular, the project would provide policy-makers, investors and communities with detailed and tailored information to help make better decisions about a sustainable future. By upgrading IELab hardware and analytical and modelling software, the project would be versatile and flexible and remain up to date.Read moreRead less
Rediscovering Aboriginal dispersal pathways. This project aims to use cutting-edge and transdisciplinary tools in partnership with Aboriginal people to rediscover deliberate prehistoric plant dispersal pathways along the Australian east coast. By working on three unrelated species with similar disjunct distributions, expected outcomes include detecting significant ‘cultural’ vegetation patterns that will challenge current assumptions about 'natural' plant distributions. New associations between ....Rediscovering Aboriginal dispersal pathways. This project aims to use cutting-edge and transdisciplinary tools in partnership with Aboriginal people to rediscover deliberate prehistoric plant dispersal pathways along the Australian east coast. By working on three unrelated species with similar disjunct distributions, expected outcomes include detecting significant ‘cultural’ vegetation patterns that will challenge current assumptions about 'natural' plant distributions. New associations between plant biogeography and deliberate Aboriginal manipulation of Australian environments will benefit cultural heritage, land management and restoration initiatives.Read moreRead less
Using fire to manage biodiversity in fragmented landscapes. Using fire to manage biodiversity in fragmented landscapes. This project intends to develop a conservation management tool for use in fire-prone fragmented landscapes to reverse biodiversity loss. It will address two critical knowledge gaps: the combined effects of fire and fragmentation on animal movement, and the implications of current and future fire regimes for native animal populations. Land-use change has severely fragmented 40% ....Using fire to manage biodiversity in fragmented landscapes. Using fire to manage biodiversity in fragmented landscapes. This project intends to develop a conservation management tool for use in fire-prone fragmented landscapes to reverse biodiversity loss. It will address two critical knowledge gaps: the combined effects of fire and fragmentation on animal movement, and the implications of current and future fire regimes for native animal populations. Land-use change has severely fragmented 40% of Australia’s natural landscapes, resulting in loss of habitat for native biodiversity. Remaining habitat fragments are at risk from increases in the frequency and intensity of fire, which also threatens biodiversity. The anticipated outcome is a conservation management tool that is readily transferable to any fire-prone system.Read moreRead less
Effective biodiversity behaviour change across supply chains. Consumption of resources is the major driver of biodiversity loss yet understanding of how to change behavioural drivers is lacking. This project aims to understand barriers to biodiversity behaviours across a supply chain, how to overcome them and increase positive biodiversity impact via spillover effects. We will use coffee as a case study to test specific interventions, design effective message frames for reducing the psychologica ....Effective biodiversity behaviour change across supply chains. Consumption of resources is the major driver of biodiversity loss yet understanding of how to change behavioural drivers is lacking. This project aims to understand barriers to biodiversity behaviours across a supply chain, how to overcome them and increase positive biodiversity impact via spillover effects. We will use coffee as a case study to test specific interventions, design effective message frames for reducing the psychological distance of consumption behaviours and develop a framework for generalising to other behaviours impacting biodiversity. The project is expected to generate new knowledge and approaches critical for policy makers and other actors seeking to reduce consumptive impacts on biodiversity.Read moreRead less
Genetic rescue of Australian wildlife. Genetic rescue of Australian wildlife. This project aims to test genetic rescue as an efficient recovery technique for threatened plants and animals. Genetic rescue is under-utilised, even though it is overwhelmingly beneficial. This project will convert management actions on five Endangered/Critically Endangered species into rigorous experiments that measure the fitness benefits of genetic rescue, and demonstrate genome-wide consequences. Anticipated outco ....Genetic rescue of Australian wildlife. Genetic rescue of Australian wildlife. This project aims to test genetic rescue as an efficient recovery technique for threatened plants and animals. Genetic rescue is under-utilised, even though it is overwhelmingly beneficial. This project will convert management actions on five Endangered/Critically Endangered species into rigorous experiments that measure the fitness benefits of genetic rescue, and demonstrate genome-wide consequences. Anticipated outcomes include innovative genetic rescue protocols, a framework for genetic rescue, and leading-edge conservation training. Expected benefits are increased persistence of species that are otherwise unresponsive to management, and a new path to saving endangered species.Read moreRead less