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Field
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production and ecosystem services through the rational design and deployment of more efficient root systems. The lab integrates high-throughput phenotyping, advanced imaging, quantitative genetics, gene
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perturbation strategies, including CRISPR-based gene editing and pharmacological inhibition, to identify mechanistic vulnerabilities in disease-relevant contexts. The candidate will contribute to experimental
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metabolism and tumorigenesis. Works in the lab that involves a combination of metabolomics, genomics, epigenomics, shRNA KD, CRISPR-gene editing approaches, over expression and a variety of model systems
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-bacterial/microbial-host interactions using molecular, cellular, and tissue-level assays. Designs, performs, and analyzes experiments involving gene perturbation, gene editing (CRISPR/Cas9, RNAi), and gene
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Therapy (MMGT) at the Biomedical Centre (BMC). MMGT houses labs with a variety of complementary expertise in stem cell biology and gene editing. More information on the lab can be found at leighnd.github.io
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such as next generation sequencing (whole genome sequencing, exome sequencing, RNA-seq, ChIP-seq, Hi-C), array CGH, droplet digital PCR, and genome editing. The postdoctoral position will study the genetic
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-leading research in several fields. Notably, the groundbreaking discovery of the CRISPR-Cas9 gene-editing tool, which was awarded the Nobel Prize in Chemistry, was made here. At Umeå University, everything
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biochemistry. Expertise in e.g. CRISPR-mediated gene editing, protein structure prediction, mass spectrometry-based proteomics, or fluorescence microscopy. Expertise and interest in functional analysis
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one or more of the following areas is a BIG PLUS: data science (machine learning and AI), cancer biology, animal physiology, organic chemistry, E3-ubiquitin biology, and gene editing. In all cases
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primary human hematopoietic cells to study myelodysplastic syndrome (MDS) and acute myeloid leukemia (AML). The studies include but are not limited to CRISPR gene editing, in vitro differentiation