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Develop scalable single-cell genomics and massively parallel screening pipelines for plant synbio parts discovery, construct evaluation, and plant characterisation Full-time appointment on a fixed
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‑on wet‑lab and in vivo therapeutic discovery in a funded translational program Base Salary, Academic Level A $113,400 - $121,054 + 17% superannuation About the opportunity The School of Life and
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will aim to determine the role of heavy metals in the initiation and evolution of prostate cancer through fostering recent advances in single-cell proteomic technologies, including a most recent
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a strong preference given to candidates with experience in fluorophore synthesis experience in cell culture, biological assays and fluorescence microscopy proven ability to conduct research/scholarly
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communication, and interpersonal skills Other desirable criteria familiarity with Nanopore direct sequencing, single cell and spatial transcriptomics knowledge in bioinformatics (e.g. R programming and
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WA node of Plant SynBio Australia under Bioplatforms Australia and the NCRIS program, PSIC will serve as a hub for cutting-edge research capabilities in plant synthetic biology, and agricultural
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Lead the design, assembly, optimisation, and high-throughput prototyping of synthetic biology constructs and circuits for plant genome and cell engineering. Full-time appointment on a fixed term