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highly interdisciplinary setting combining microbial mutagenesis assays, mammalian cancer models, next-generation sequencing, bioinformatics, and machine learning. Experimental data will be integrated with
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- Location: Macquarie University, Wallumattagal Campus (North Ryde) Join a multi-disciplinary team pushing the boundaries of microbial membrane transport protein structure & function. Collaborate with world
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including C1 substrates using a microbial waste-to-products engineered coculture platform. The work will involve C1-consuming microorganisms including photoautotrophs. The post builds on established work and
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. These microorganisms play a significant role in maintaining the complex microbial ecosystem of the mouth. However, they are also closely associated with various oral and dental infections. Their ability to adhere
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Chemical Biological Centre (https://www.umu.se/en/kbc ) at Umeå University and is affiliated with the national Centre of Excellence – Umeå Centre for Microbial Research (UCMR) (https://www.umu.se/en/ucmr
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to bacterial genome organization and function, gene regulation (host and bacterial), and microbial community structure in the context of host–pathogen interactions in food animals. Ability to perform
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. Scientific Area(s): Bioinformatics, Computational Biology or Microbial Evolution Work Plan and Objectives: The post-doctoral fellow will work closely with experimentalists in Isabel Gordo’s lab to study
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soil carbon dynamics in old-growth forests of the Pacific Northwest, examining how root traits, microbial processes, and environmental conditions influence belowground carbon cycling using long-term
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degree in biological or biomedical sciences, and a PhD degree in the field of microbiology Significant experience with microbiology and microbial genomics and/or microbial bioinformatics is required Able
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will: Engineer microbial systems using cutting-edge synthetic biology tools and metabolic engineering strategies. Optimise yeast platforms for the sustainable production of high-value food ingredients