The Cluster of Excellence ‘Microbes for Climate (M4C)’ deciphers the fundamental molecular mechanisms of microbial contributions to the carbon cycle and uses synthetic biology to develop more efficient ways to sustainably convert CO2. This knowledge will be generated in a scale-bridging approach (from the atomic structure of enzymes to the systems level of the cell) through highly interdisciplinary and integrative studies. Within M4C, Marburg University, the Max Planck Institute for Terrestrial Microbiology in Marburg, the University of Münster and the University of Giessen join forces.
The following qualification positions are to be filled:
Remuneration and pension scheme is according to the currently applicable collective agreements of the host institution (TV-H, TV-L, TVöD-Bund or comparable). For detailed information on the projects and the respective host institution as well as relevant documents to be submitted together with your application, see: Career in M4C
The projects starting from January 2027 are embedded in three research foci:
Research Focus 1
Microbes as Drivers of Climate Change: Evolution of the Biological Carbon Cycle - Combining molecular evolutionary and biochemical approaches, we will generate an integrative, comprehensive understanding of how microbes evolved the ability to capture CO2 billions of years ago, initiating and shaping the development of the biological carbon cycle.
Research Focus 2
Microbes as Responders to Climate Change - We elucidate the integration of CO2-converting molecular machines into the cellular context in space and time, how stress factors influence these processes, and how the cellular network enables their robust functioning.
Research Focus 3
Microbes providing Solutions to Climate Change: Developing a future Carbon Cycle with Synthetic Microbiology - To overcome the limitations of naturally evolved CO2/CH4-converting processes, we will leverage the methods of synthetic biology and break new ground: We will develop and test “new-to-nature” solutions that open radically novel, more efficient biological paths for CO2/CH4-conversions that nature has not explored so far.
Within the scope of the assigned tasks, the opportunity for independent scientific work is offered, which serves one's own scientific qualification. The limitation is in accordance with § 2, 1 WissZeitVG.
Profile:
Selected applicants will be invited for an interview between mid-September to October 2026.
Deadline: 20 August 2026