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of stress; biotechnology and metabolic engineering; growth and development of plants; the regulation of gene expression; population genetics, genome analysis and the development of breeding systems. Species
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are also studied. Our main areas or research are: the interaction between plants and microorganisms, and other forms of stress; biotechnology and metabolic engineering; growth and development of plants
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particular strengths in nutritional and computational metabolomics, dietary biomarkers, micronutrient metal nutrition, nutritional immunology, marine food science, plant based foods, food biotechnology and
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School of Engineering Sciences in Chemistry, Biotechnology and Health at KTH Job description Quantitative analysis of lipid nanoparticles (LNPs) using Cryo EM is challenging due to heterogenous
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metabolomics, dietary biomarkers, micronutrient metal nutrition, nutritional immunology, marine food science, plant based foods, food biotechnology and nutrition as well as food by-product biorefining and
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with microorganisms and other environmental stresses, plant growth and development, biotechnology and metabolic engineering, regulation of gene expression, population genetics, genome analysis, and the
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, biotechnology, chemical engineering, or another relevant field. You should have a strong research background in electrochemistry, electrocatalysis, biocatalysis, bio-electrocatalysis, materials chemistry, or a
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field deemed equivalent by the employer, together with a Bachelor's or Master's degree in materials science, biotechnology, textile technology, human–machine interaction, or another field deemed
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. This project is funded by the Novo Nordisk Foundation (Emerging Investigator 2026 in Plant Science, Agriculture and Food Biotechnology). The project investigates how plants sense and interpret the physical and
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KTH Royal Institute of Technology, School of Engineering Sciences in Chemistry, Biotechnology and Health Job description Tissue organization is achieved by the genome encoding both cell type