Design of the cardiovascular system of living and fossil vertebrates. This project aims to understand how the heart and blood vessels evolved in mammals, birds, reptiles and fish to achieve efficiency. The heart is the most important organ for life. The project will study the structure and function of vertebrate animals’ hollow and spongy hearts to show how energetics shaped their evolution. It will measure arterial holes in bone to gauge brain and bone metabolism, which opens up a new way to me ....Design of the cardiovascular system of living and fossil vertebrates. This project aims to understand how the heart and blood vessels evolved in mammals, birds, reptiles and fish to achieve efficiency. The heart is the most important organ for life. The project will study the structure and function of vertebrate animals’ hollow and spongy hearts to show how energetics shaped their evolution. It will measure arterial holes in bone to gauge brain and bone metabolism, which opens up a new way to measure metabolism in extinct animals directly from fossils, rather than by inference from living relatives. The expected outcome is to correlate cardiovascular design and metabolic rates of organs.Read moreRead less
Transport systems that underpin nitrogen efficient maize. This project aims to define the nitrogen transport network involved in the uptake, storage and redistribution of inorganic nitrogen (nitrate and ammonium) over the developmental life cycle of maize. This information will provide novel insight into the genetic control of nitrogen use in maize and other cereal crops.
Skeletal endocrine signalling in the regulation of glucose metabolism. This project seeks to explore a highly novel and interesting recent development in bone biology: the fact that the skeleton is a central regulator of glucose metabolism. Currently, the mechanisms involved in this process remain unclear. mTORC1 has been identified as a signalling pathway in bone cells that modulates glucose metabolism. This project plans to selectively delete mTORC1 in the bone cells of mice to examine how ske ....Skeletal endocrine signalling in the regulation of glucose metabolism. This project seeks to explore a highly novel and interesting recent development in bone biology: the fact that the skeleton is a central regulator of glucose metabolism. Currently, the mechanisms involved in this process remain unclear. mTORC1 has been identified as a signalling pathway in bone cells that modulates glucose metabolism. This project plans to selectively delete mTORC1 in the bone cells of mice to examine how skeletal mTORC1 signalling regulates glucose metabolism, and identify novel pathways and circulating factors involved in this process. These studies may provide greater understanding of the basic biology of glucose metabolism, and may have applications in animal husbandry and the future management of diabetes.Read moreRead less
Global Security, Strategic Paradox and Limited War: The Politics and Ethics of Force. This project will provide detailed empirical research results plus conceptual innovations in the areas of peace and conflict studies. These will contribute to better understanding of contemporary threats and the effects of using force, and will enable the development of more effective policy options. The project will contribute strongly to the ARC's research priority 4, 'safeguarding Australia', by providing im ....Global Security, Strategic Paradox and Limited War: The Politics and Ethics of Force. This project will provide detailed empirical research results plus conceptual innovations in the areas of peace and conflict studies. These will contribute to better understanding of contemporary threats and the effects of using force, and will enable the development of more effective policy options. The project will contribute strongly to the ARC's research priority 4, 'safeguarding Australia', by providing important studies, analytical tools and policy recommendations that will strengthen Australia's national security, contribute to reducing conflict, and help us shape the regional and global security environment in our interests.Read moreRead less
Young people with cognitive disability: relationships and paid support. This project aims to improve the rights and wellbeing of young people with cognitive disability by exploring their relationship and interaction with paid support workers. The introduction of national individualised funding and support is a watershed in Australian disability policy. Understanding the role that paid support plays in the ongoing identity development of these young people is urgently needed to realise national p ....Young people with cognitive disability: relationships and paid support. This project aims to improve the rights and wellbeing of young people with cognitive disability by exploring their relationship and interaction with paid support workers. The introduction of national individualised funding and support is a watershed in Australian disability policy. Understanding the role that paid support plays in the ongoing identity development of these young people is urgently needed to realise national policy aspirations for people with disability of rights, choice, inclusion and independence. Using social geography and recognition theory, the project expects to deliver new understanding and improved practice around how paid support relationships can foster mutual care, respect and value at a critically important time in young people’s lives.Read moreRead less
The basis of recognition and disposal of dysfunctional proteins by clusterin. When proteins become damaged they can precipitate. A blood protein called clusterin prevents precipitation of damaged proteins. Clusterin does this by forming complexes with the damaged proteins. Clusterin is the first blood protein known to do this. We will discover which parts of clusterin are responsible for this activity. We will also discover whether cells can take up and dispose of the complexes of clusterin and ....The basis of recognition and disposal of dysfunctional proteins by clusterin. When proteins become damaged they can precipitate. A blood protein called clusterin prevents precipitation of damaged proteins. Clusterin does this by forming complexes with the damaged proteins. Clusterin is the first blood protein known to do this. We will discover which parts of clusterin are responsible for this activity. We will also discover whether cells can take up and dispose of the complexes of clusterin and damaged proteins. This work is important because some diseases (eg, Alzheimers disease) involve the toxic effects of abnormal protein precipitation. Understanding how clusterin works may help in developing better treatments for these diseases.Read moreRead less
Protecting while they prosper? Organisational responses to whistleblowing. This project aims to examine the adequacy of organisational responses to whistleblowing (employee reporting of wrongdoing). So far, research into public-interest whistleblowing has revealed much about the incidence, significance and experience of whistleblowers. This project now extends the research to the other side of the issue — the organisations. By comparing employee and managerial experience in multiple public and p ....Protecting while they prosper? Organisational responses to whistleblowing. This project aims to examine the adequacy of organisational responses to whistleblowing (employee reporting of wrongdoing). So far, research into public-interest whistleblowing has revealed much about the incidence, significance and experience of whistleblowers. This project now extends the research to the other side of the issue — the organisations. By comparing employee and managerial experience in multiple public and private sector organisations in Australia and New Zealand, the project intends to identify the factors that influence good and bad responses across a range of institutions; provide a clearer basis for reform of policies, procedures and law; and set benchmarks for comparative research worldwide.Read moreRead less
Political Risk, Institutions and Regulatory Regimes: Business, Foreign Investment and Public Administration in Asia. Rating accurately the risk environment of emerging economies has always been problematic. Insufficiently developed methodological tools and the lack of institutional and regulatory data make the process imprecise. This project overcomes this problem, developing a new industry based risk assessment system for understanding political risk to commercial activities and foreign investo ....Political Risk, Institutions and Regulatory Regimes: Business, Foreign Investment and Public Administration in Asia. Rating accurately the risk environment of emerging economies has always been problematic. Insufficiently developed methodological tools and the lack of institutional and regulatory data make the process imprecise. This project overcomes this problem, developing a new industry based risk assessment system for understanding political risk to commercial activities and foreign investors in nine of Asia's most rapidly developing economies. The study, one of the first to correlate institutional and regulatory forms to the incidence, severity and recurrence of risk, will deepen our knowledge of political and regulatory institutions in Asia and provide investors with the ability to navigate those environments successfully. Read moreRead less
Understanding the evolutionary tempo and significance of the first animals through exceptional fossil preservation. This project will shed new light on the origins and early evolutionary history of the first complex marine animals that appeared over half a billion years ago. Extraordinarily preserved fossils, including soft tissues, from South Australia will highlight the rapid anatomical innovation that occurred during this crucial phase in the history of life.
Special Research Initiatives - Grant ID: SR0354622
Funder
Australian Research Council
Funding Amount
$20,000.00
Summary
Genes and Environment in Development. Interactions between the early environment and the genetic regulatory program of the early embryo have major consequences for the development of individuals. The aim of this Network is to harness the resources of leading researchers from the previously distinct disciplines of developmental biology and developmental physiology to better understand developmental regulatory networks and how environmental factors impinge on them. The formation of such a Network ....Genes and Environment in Development. Interactions between the early environment and the genetic regulatory program of the early embryo have major consequences for the development of individuals. The aim of this Network is to harness the resources of leading researchers from the previously distinct disciplines of developmental biology and developmental physiology to better understand developmental regulatory networks and how environmental factors impinge on them. The formation of such a Network is unique, timely and strategic in that it will generate new insights into the mechanisms by which events in early life determine the risk of adverse outcomes in perinatal and adult life.Read moreRead less