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Tracking antibiotic resistance genes and mobile genetic elements in the environment

Antibiotic resistance is a massive problem for medicine, and thus much effort is being put into understanding the genetic basis of how bacteria evolve so quickly to become resistant more...

Supervisor(s): Coleman, Nicholas (Associate Professor)

Understanding how leaves develop

Plants utilize "boundaries" of genes expression to help decide where to position and how to shape leaves. This project will investigate how these boundaries control plant developmen more...

Supervisor(s): Heisler, Marcus (Associate Professor)

Functional Genomics, Genetics and Bioinformatics of Cereal Rust Fungi

De Novo genome assembly using third generation sequencing RNA-seq based genomic annotation for cereal rust fungi Comparative genomics of cereal robust isolates in pursuit of avi more...

Supervisor(s): Wu, Jingqin (Dr)

Understanding the utility and yield of Next generation sequencing gene panels for the diagnosis of genetic movement disorders in children

Movement disorders are common in children, and include tics, dystonia, chorea, myoclonus and tremor. Other than tics, these disorders often have a genetic basis, which is ‘mon more...

Supervisor(s): Mohammad, Shekeeb (Dr)

Understanding how cell polarity is patterned in plants

The symmetrical arrangements of leaves and flowers have long fascinated artists and mathematicians alike for hundreds of years. Using live-imaging, molecular biology and genetics, t more...

Supervisor(s): Heisler, Marcus (Associate Professor)

Mechanisms of Transgenerational Epigenetic inheritance

We are interested in understanding the molecular mechanisms that allow a phenomenon called epigenetic inheritance to occur: that is, the transmission of non-genetic information from more...

Supervisor(s): Ashe, Alyson (Dr)

Gene editing of stem cells or cancer to develop new stem cell therapies to treat human disease

This project involves the use of human stem cells and CRISPR genome editing to study basic signalling pathways controlling stem cell differentiation and/or cancer. A compliment more...

Supervisor(s): Neely, Greg (Professor)

Gene editing of human stem cells and to better understand chronic pain disease

This project involves the use of human stem cells to generate pain sensing neurons and CRISPR gene editing to identify new pain killers. A complimentary scholarship for this pr more...

Supervisor(s): Neely, Greg (Professor)

Gene and Cell therapy for treating corneal diseases

Two research projects existing under this board area :1. Develop in vivo gene editing technique to treat corneal diseases; and 2. Sequencing and mapping gene and protein interaction more...

Supervisor(s): You, Jingjing (Dr), Sutton, Gerard (Professor)

Pharmacological targeting of sphingosine 1-phosphate receptors to promote remyelination in Alzheimer’s disease and multiple sclerosis

In this project you will investigate a new molecular pathway that is required for normal myelin formation, and the therapeutic potential of targeting this pathway to promote remyeli more...

Supervisor(s): Don, Anthony (Associate Professor)