KTH Royal Institute of Technology in Stockholm has grown to become one of Europe’s leading technical and engineering universities, as well as a key centre of intellectual talent and innovation. We are Sweden’s largest technical research and learning institution and home to students, researchers and faculty from around the world. Our research and education covers a wide area including natural sciences and all branches of engineering, as well as architecture, industrial management, urban planning, history and philosophy.
This project will create new metabolic pathways for production of biochemicals, and to test these pathways in a non-photosynthetic, CO2-fixing bacteria. In one part of the project, mutagenesis “libraries” of the host strain will be created and screened in high-throughput, using state-of-the-art techniques. Systems biology analysis of selected strains, such as proteomics and metabolomics, will be used to identify flux bottlenecks in conversion of CO2 to biochemical. This project has a large experimental component. Metabolic modeling will be done with computational biologists in the group. The project is part of an international collaboration between groups in metabolic engineering, metabolic modeling, and enzymologists at KTH, EPFL, and Greifswald. The applicant will therefore work closely with experts in these areas.
Work is in the research group of Paul Hudson in the school of Chemistry, Biotechnology, and Health at KTH. Our group is located at Science for Life Laboratory. The group works on systems biology and metabolic engineering of autotrophic bacteria. See also https://www.kth.se/profile/huds
Other qualifications (meriting)
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|Otsikko||Postdoc in genetic engineering of autotrophic bacteria|
|Employer||KTH Royal Institute of Technology|
|Job location||Valhallavägen 79, 100 44 Stockholm|
|Julkaistu||toukokuuta 17, 2019|
|Viimeinen hakupäivä||kesäkuuta 30, 2019|
|Tieteenalat||Bioteknologia,   Fysiologia,   Kemian tekniikka,   Biokemia,   Molekyylibiologia,   Mikrobiologia  |