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DTU – Technical University of Denmark invites applications for a postdoctoral position in BRIGHT's Mission 2 microbial food programme. You will lead experiments on fungal heterogeneity, develop imaging workflows for solid-state fermentation samples, and engineer filamentous fungi, with focus on data visualization and cross-disciplinary collaboration.
The ideal candidate will have hands-on confocal microscopy experience with fungi, skills in genetic engineering, image analysis, and a strong
This position is a part of BRIGHT's mission- oriented Microbial Food research programme ("referred to as Mission 2"), which aims to build an AI-powered framework for the rational design of microbial foods that meet four targets: consumer acceptance, health, sustainability and scalability. The first phase focuses on two fungal chassis, Aspergillus and Yarrowia, characterizing more than 500 prototypes through multi-omics, sensory analysis, life-cycle assessment and safety testing. Predictive models for flavor, texture, nutrition and process scale-up are trained iteratively through active learning. The scientific scope spans strain engineering, adaptive laboratory evolution, solid- and liquid-state fermentation, sensory and consumer research, and pre-clinical and clinical evaluation of safety, bioavailability and cardiometabolic health, in collaboration with national and international partners.
Filamentous fungi growing in solid-state fermentation systems represent a largely untapped resource for sustainable innovation in food, textiles, and biomaterials. Yet, these systems remain poorly understood at the level of structure and function. In liquid cultures, we are beginning to recognize that fungal colonies are not uniform entities, but highly organized systems with spatially distributed “labour,” leading to functional heterogeneity. Whether similar principles govern growth and differentiation in solid-state fermentation, where gradients, surfaces, and microenvironments are far more complex, remains largely unknown, but may be key to understanding variability in flavour, texture, and performance of fermented products.
As a postdoc, you will take a leading role in driving the scientific progress of the project. You will be responsible for planning, designing, and executing experiments, coordinating activities with collaborators within the group as well as external partners, and ensuring the timely progression of the research.
We are looking for a highly motivated and ambitious candidate who thrives in a dynamic research environment and is excited by the opportunity to contribute to both microscopy method development and fundamental mycology as the basis for future innovation.
This position is particularly suited for candidates who aspire to become independent scientists and are eager to develop a broad and modern research toolkit spanning mycology, genetic engineering and advanced imaging.
As a formal qualification, you must hold a PhD degree (or equivalent).
DTU is a leading technical university globally recognized for the excellence of its research, education, innovation and scientific advice. We offer a rewarding and challenging job in an international environment. We strive for academic excellence in an environment characterized by collegial respect and academic freedom tempered by responsibility.
The appointment will be based on the collective agreement with the Danish Confederation of Professional Associations. In addition, supplements can be negotiated in accordance with DTU’s salary structure for scientific staff: www.inside.dtu.dk/en/human-resources/during-employment/salary/salary-structures. The period of employment is 2 years. Start date 01-01-2027 or according to mutual agreement.
Further information please contact group leader and senior researcher Leonie Johanna Jahn at lejj@dtu.dk
You can read more about career paths at DTU here.
Further information: DTU – For the benefit of society since 1829. DTU is one of Europe's leading elite technical universities. Through research and education at an international top level, we create solutions to the major societal challenges of our time and help secure Europe's global leadership in sustainable technological development. Since Hans Christian Ørsted founded DTU almost 200 years ago, our mission has remained the same: We develop and create value through the natural and technical sciences for the benefit of society. DTU has 13,800 students, 1,600 PhD students, and 6,500 employees. We work in an international environment and have an inclusive, stimulating, and informal work culture. DTU has campuses in all parts of Denmark and in Greenland and collaborates with the best universities around the world.
The Fermentation Cultures group investigates fermented foods as complex microbial ecosystems and as a foundation for developing sustainable foods for the green transition. By combining traditional fermentation practices with ecological and evolutionary perspectives, we draw on both traditional and scientific knowledge to create novel fermented foods and food processes. Our research explores how microbial diversity, genetics, and ecological interactions shape the flavour, texture, functionality, and stability of fermented foods, while also examining the origins of fermentation microorganisms and their co-evolution with human societies and food cultures. Using fermented foods as model systems, we address fundamental questions about microbial ecology, evolution, and host–microbe interactions, including how microbes interact with one another and communicate with humans through the production and perception of flavour.
BRIGHT – The Novo Nordisk Foundation Biotechnology Research Institute for the Green Transition. The Novo Nordisk Foundation Biotechnology Research Institute for the Green Transition (BRIGHT) is a major initiative based at DTU that aims to accelerate the development of biosolutions and strengthen the bio-based economy. BRIGHT serves as a hub for academic and industrial partners working together to unlock the potential of bioproduction. BRIGHT focuses on three main areas: Sustainable materials (Developing bio-based alternatives to fossil-derived materials), Microbial foods (Innovating food production through microbial technologies), and Microorganisms for net-zero agriculture (Creating solutions to reduce greenhouse gas emissions in agriculture). The goal is to develop and scale innovative biosolutions within these areas, ultimately creating sustainable and competitive alternatives to fossil-based products and processes that can make significant contributions to reducing global greenhouse gas emissions.
BRIGHT Mission 2 aims to build an AI-powered framework for the rational design of microbial foods that meet four targets: consumer acceptance, health, sustainability and scalability. The first phase focuses on two fungal chassis, Aspergillus and Yarrowia, characterizing more than 500 prototypes through multi-omics, sensory analysis, life-cycle assessment and safety testing. Predictive models for flavor, texture, nutrition, and process scale-up are trained iteratively through active learning. The scientific scope spans strain engineering, adaptive laboratory evolution, solid- and liquid-state fermentation, sensory and consumer research, and pre-clinical and clinical evaluation of safety, bioavailability and cardiometabolic health, in collaboration with national and international partners.