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Disease resistance in plants: Chickpea

Honours project: Combine your passion for agriculture, plant science and bioinformatics to investigate genetic resistance to disease in chickpea.
Discovery of new genes that promote T cell activity against cancer

Honours project: Help identify novel genes involved in T cell trafficking to solid tumours.
[Read more about Discovery of new genes that promote T cell activity against cancer]
Controlling inflammation during influenza infection

Honours project: Investigate Tr1 cell mediated control of tissue damage during influenza infection.
[Read more about Controlling inflammation during influenza infection]
How do cancer cells become aggressive?

Honours project: Investigate the function of alternative splice variants in cancer cell plasticity.
Understanding T cells in autoimmune disease

Honours project: Investigate transcriptional control of inflammatory T helper cells in autoimmunity.
[Read more about Understanding T cells in autoimmune disease]
Environmental monitoring: Teasing out real biodiversity patterns from sampling biases

Honours project: Identify areas of conservation priority through the development of on-ground biodiversity sampling strategies and the interpretation of ecosystem changes.
Environmental monitoring: What is the extent of canopy dieback in a refugial forest?

Honours project: Use satellite imagery and on-ground monitoring data to map the extent of tree dieback to develop predictions and policy recommendations.
Ubiquitin signalling in human diseases

Honours project: Investigate the effect of ubiquitin signalling on cell differentiation.
In vitro maturation of canine oocytes

Honours project: Determine the effects of different in vitro maturation (IVM) conditions on the developmental competence of canine oocytes.
Predicting concentration-gradient-driven fluid flow in 2D membranes

Honours project: Chemistry honours opportunities that aim to predict concentration-gradient-driven fluid flow in two-dimensional (2D) membranes.
[Read more about Predicting concentration-gradient-driven fluid flow in 2D membranes]