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Field
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methodologies relevant to the project including some or all of the following: electrophysiology, secretion experiments, small animal surgery, in vivo animal work, mouse behavioural analysis, molecular genetics
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in molecular biology or genetic engineering techniques ability to learn how to conduct protein purification and characterisation ability to operate and maintain biological equipment (e.g. FPLC
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, and genetic engineering techniques relevant to plants. Experience developing or applying programmable regulators, gene-editing tools (e.g., CRISPR, base/prime editors), synthetic gene circuits, or other
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, molecular biology, biotechnology, genetic engineering, or a closely related field. Demonstrated experience in molecular construct design, modular cloning systems (e.g., Golden Gate/MoClo), multi-gene assembly
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intersection of machine learning, crop genetics, and biological data science, contributing to high-impact research that supports accelerated crop improvement and strengthens Australia’s agricultural industries
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building next-generation models of congenital heart disease and cardiomyopathies in children with rare genetic disorders, with a clear line of sight to therapeutic discovery. You will step into a lab at a