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ecotypes and seek to identify their associated and underlying genetics. Specifically, it will examine parallel evolution of genomic divergence, gene expression levels, and alternative splice variants
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contribute to the preparation of manuscripts. Our research focuses on uncovering the proximate mechanisms underlying evolutionary changes in developmental and behavioural processes in nematodes. Much of our
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, biochemistry, pathology, pharmacology, toxicology, genetics, breeding, immunology, bacteriology, virology, parasitology, epizootology, comparative medicine, food safety, bioinformatics and One Health. Our
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, comparative medicine, food safety, bioinformatics and One Health. Our research covers everything from production animals to sports and pet animals, laboratory animals and wild animals. The department's
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programming, parallel computing, and bioinformatic and statistical genetic software packages. Experience in working with genomic and proteomic data available for large extended pedigrees. License
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management, cache optimization, and vectorization techniques. Strong understanding of algorithms and data structures, especially those suitable for parallel processing and distributed computing. Understanding
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doctoral education. The PhD position is linked to Section 1 at the Faculty of Odontology (Oral Biology and Pathology) with collaboration within Section 2 (Maxillofacial Surgery and Materials Science and
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to two YBDTP projects (which can be at different universities). If you have any questions about the application process, please email YBDTP@leeds.ac.uk If you have any questions about the project you are
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-regulatory elements typically reduce translation of the primary coding sequence, whereas proteoforms are different protein isoforms translated from the same gene. This project aims to enhance both molecular
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biomaterials, including tuneable 2D and 3D culture systems, advanced microscopy, and polysome profiling, to study the impact of mechanical cues on ribosome function. In parallel, you will use bioinformatics