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Found 4 matching student topics

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The role of genetics in the development and mechanism of human traits

The Statistical and Genomic Epidemiology Laboratory (SGEL) studies the role of genetics in the development and mechanism of human traits, with particular emphasis on migraine, and the specific goal of identifying genetic risk factors and detecting common genetic links with other disorders, in particular depression, endometriosis, and epilepsy.

Study level
PhD, Master of Philosophy
Faculty
Faculty of Health
School
School of Biomedical Sciences
Research centre(s)
Centre for Genomics and Personalised Health

Uncovering the dark transcriptome and proteome with long-read sequencing

Parts of the transcriptome and proteome are invisible to current technologies. We refer to them as the dark transcriptome and proteome and they encompass uncharacterised mRNA and protein isoforms. Importantly, this hidden molecular phenotype is believed to play a critical role in animal health and behavior.Recent developments in mRNA analytical methods such as long-read sequencing (PacBio, ONT) have enabled better characterization of isoforms and are redefining the transcriptome landscape in many species. We and others have found that data generated …

Study level
Honours
Faculty
Faculty of Science
School
School of Biology and Environmental Science

Genome to phenome: exploiting multi-omics and deep learning strategies to decipher importance of isoforms in health and behaviour

The molecular process that leads to multiple mRNA transcripts being produced from the same segment of DNA (aka gene) is known as alternative splicing (AS). This is a common form of regulation in higher eukaryotes, enabling the production of novel protein isoforms, which in turn are known to have a big impact on phenotype. Understanding the regulatory factors involved in AS, including epigenetic mechanisms such as DNA methylation, will offer key insights into important biological phenomena (health disease, behaviour, production). …

Study level
PhD
Faculty
Faculty of Science
School
School of Biology and Environmental Science

Multi-microbial 3D printing for screening microbiome functions

The ability to 3D print bacteria has relevance to a wide range of applications, ranging from developing novel anti-microbial modalities to probiotics for promoting human health. Traditional culture techniques used in microbiology such as agar plates and suspension cultures have limited spatio-temporal control over the bacteria microenvironment as well as their interaction partners, in particular, mammalian host cells. This project aims to bridge this technological gap by combining 3D printing and microfluidics technologies to spatially control the localisation of multiple …

Study level
PhD, Master of Philosophy
Faculty
Faculty of Health
School
School of Biomedical Sciences

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