Sort by
Refine Your Search
-
approaches include, but are not limited to, monitoring microbial community dynamics upon perturbations using tools of molecular ecology, as well as tracking the composition and metabolic and physiological
-
of Molecular Biology and Genetics at Aarhus University seeking to understand RNAs role in the onset of Darwinian evolution. The lab takes inspiration from simple natural replicons for engineering RNA systems
-
: Required qualifications: Applicants must hold a PhD in Molecular Biology or similar. Experience with cloning techniques and gene expression and analysis in bacteria and/or yeast. Have strong cooperation and
-
operation of defined microbial communities, and modeling on metabolic interactions. Your qualifications You should have a PhD in microbiology, molecular biology, molecular genetics, or related field, and
-
: Required qualifications: Applicants must hold a PhD in Molecular Biology or similar. Experience with cloning techniques and gene expression and analysis in bacteria and/or yeast. Have strong cooperation and
-
19 Mar 2026 Job Information Organisation/Company Aarhus University Research Field Engineering Other Researcher Profile First Stage Researcher (R1) Recognised Researcher (R2) Positions PhD Positions
-
Applications are invited for a fix-termed 2-year postdoc position in the field of RNA design at the Department of Molecular Biology and Genetics, Aarhus University, Denmark. The position is part of
-
range from cell biological over biochemical to molecular biology and bioinformatics approaches. Collaborations with structural biologists are possible. Your profile Applicants should hold a PhD in
-
. • Quantitative analysis of aquaporin trafficking dynamics using advanced fluorescence microscopy and 3D image-based vesicle segmentation. • Molecular engineering of aquaporin constructs to dissect trafficking
-
dynamics information. As a postdoc, you will contribute to the development of single molecule fluorescence real-time imaging methodologies using both experimental approaches, involving model nucleic acids