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consequences of mitochondrial dysfunction in patients with inherited disorders and in animal models of mitochondrial pathology. The goal is to uncover novel insights into the role of mitochondria in human
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spinal cord as a model system. You will engage a systematic strategy to identify these mechanisms by generating innovative mouse genetic strains, identifying embryonic defects and the underlying molecular
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. The project can be historically orientated or focus on contemporary conditions. Work duties You will work on your proposed project primarily in collaboration with colleagues in the Church and Mission Studies
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special conditions earlier doctoral degrees can be considered. Special conditions include leave due to illness, parental leave, clinical service, positions within trade unions or other similar circumstances
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laboratory rearing conditions shape virus transmission https://www.umu.se/en/ucmr/ec-postdoc-programme/viromevector-competence-shifts-how-mosquito-laboratory-rearing-conditions-shape-virus-transmission/ 8
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modeling. Experience in cell culture, molecular cloning, and bioinformatics analyses is required. Proficiency in statistics and programming are highly meriting, especially in gene regulatory networks
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under defined pathological conditions is highly desirable. Proven expertise in preparing sequencing libraries for whole genome sequencing is considered a strong merit. Additional qualifications include
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Communication, (UKK) Position description The purpose of the position is to give the employee an early opportunity to develop his or her independence as a researcher and to create the conditions for further
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transcriptomics and genomics datasets. The goal is to identify molecular and spatial signatures of disease progression both in human samples and in experimental models of diabetes. Qualifications: PhD in
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and in vivo model systems, applying multiple omics methods. You will be working with clinical samples, method development and several molecular biology techniques, especially PCR and sequencing as