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Primary supervisor - Dr Myriam Charpentier Are you passionate about plant biology, endosymbiosis, system biology or bioengineering? Join a cutting-edge research project exploring how plants
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replication and transcription. Using C. elegans genetics, advanced RNA biology techniques, and industrial biochemistry training with Inspiralis Ltd., the student will investigate how RNAs and their
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recently (~50,000 years ago), there were many other types of humans on earth, including Neanderthals and Denisovans. What was it about modern human biology—if anything—that set us apart from these extinct
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to alternative splicing. This PhD offers the scope to develop independence – pursing promising leads on interesting biology – while addressing one of evolution’s most longstanding challenges. Beyond advancing
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their host plant. Use cutting-edge molecular biology and genomics, we will try to solve a decades-old mystery in plant pathology. Many plant disease-causing fungi lose their ability to cause disease
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at the John Innes Centre, providing opportunities to develop extensive skills in a breadth of areas, including field surveys, plant pathology, molecular biology, and computational biology. Additionally, you
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model, human organoid technology, cell and molecular biology, confocal microscopy and metagenomic sequence analysis. By deciphering the interactions between AIEC, the microbiome and the intestinal
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Adriaenssens, phage biology, and Dr Claire Jenkins, UK Health Security Agency lead for E. coli. Together they will provide world class training and support to the student in developing cutting edge skills in
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microbiology and bioinformatics approaches, we will consider appropriate expertise in either microbiology, molecular biology or bioinformatics with the desire to learn about the other aspects. The willingness
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devastating fungal disease of cereals, Blast (caused the pathogen Magnaporthe oryzae). The studentship will involve techniques including molecular biology, biochemistry, structural biology, AI-led computational