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ETH Zurich invites applications for a postdoctoral researcher to investigate the evolution of early prokaryotic life in geodynamic and climatic contexts. The project combines biology, geodynamics, climate and planetary habitability, with modelling and data analysis across disciplines.
The position is initially for 12 months and extendable up to 24 months, with scientific independence and opportunities for collaboration and career development within NCCR Genesis and ETH Zurich's biology and earth
Organisation/Company ETH Zürich Research Field Astronomy > Other Biological sciences > Biology Biological sciences > Other Environmental science > Earth science Physics > Other Researcher Profile Recognised Researcher (R2) Application Deadline 26 Nov 2026 - 22:59 (UTC) Country Switzerland Type of Contract Temporary Job Status Full-time Is the job funded through the EU Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No
Postdoc in modelling of early prokaryote evolution and interaction with earth geodynamics
The National Centre of Competence in Research NCCR Genesis is a research infrastructure project funded by SNSF focusing on exploring the emergence of life in the Universe. This interdisciplinary research infrastructure brings together physicists, earth and planetary scientists, chemists and biologists to understand the conditions and the mechanisms that enable life to emerge. Developing reliable methods to detect reliable traces of life (biosignatures), whether through remote sensing or direct onsite measurements, requires significant innovation. These challenges demand close collaboration across physics, biology, chemistry and the earth sciences. NCCR Genesis does not aim to provide answers in all fields, but to drive innovative research and achieve decisive progress.
Details on NCCR Genesis are available on the website.
NCCR Genesis is deeply committed to equality, diversity and inclusion. Our aim is to cultivate a respectful and fair work culture with equal access to professional development and support for all. We strongly encourage applications from under-represented groups. In the context of this project, we are looking for a 2-years fully funded postdoctoral candidate.
Project background
How did the earliest forms of life evolve, and how did their evolution interact with the changing physical and chemical environment of the early Earth? This project investigates the co-evolution of life and the Earth system over geological timescales, with a particular focus on the major transitions in energy metabolism of early prokaryotic life. The emergence and succession of different energy metabolisms was likely allowed by changing earth surface conditions. It is unclear which metabolic strategies were most likely to have emerged first, and how shifting environmental conditions may have determined major metabolic transitions in Earth’s history. The project will couple models of prokaryotic evolution and energy metabolism with existing and newly developed geodynamic simulations of the early Earth. These simulations will explore how mantle dynamics, lithospheric rheology, surface relief, weathering, CO₂ fluxes, palaeogeography, atmosphere, and climate evolved as the Earth cooled.
Beyond environmental triggers, the project aims to investigate the environmental transformation caused by these innovations. The evolution of organisms capable of autotrophic carbon fixation, for example, may have altered carbon and nutrient cycling, atmospheric composition, oxygen availability, and ultimately the conditions under which subsequent forms of life could evolve. Further attention will be given to how different geodynamic regimes may create environmental conditions that promote, delay, or prevent major evolutionary transitions. The project will explore a range of planetary and geodynamic scenarios, including early Earth conditions, or stagnant-lid. The resulting changes in tectonics, topography, surface processes, atmospheric composition, climate, and habitability will be linked to evolutionary models to determine when metabolic transitions are likely to occur. The project will contribute to understanding how planets and life co-evolve and how biological activity can fundamentally reshape planetary conditions.
As a postdoctoral researcher, you will develop and implement an interdisciplinary research programme investigating the evolution of early prokaryotic life in its geodynamic and climatic context. You will work at the interface of evolutionary biology, molecular evolution, geodynamics, Earth-system science, and planetary habitability.
Your main responsibilities will include:
The position offers scientific independence, while providing the opportunity to collaborate closely with researchers working on evolutionary biology, geodynamics, climate, and planetary science. The position is initially for 12 months and extendable based on progress and evaluation of performance for up to a maximum of 24 months.
Profile
We are looking for a highly motivated postdoctoral researcher with a strong interest in the evolution of early life and the interactions between biological and planetary processes. The ideal candidate will have experience in quantitative or computational research and be enthusiastic about working across disciplinary boundaries.
Essential qualifications and attributesExperience in one or more of the following areas would be particularly advantageous:
Candidates with a strong background in either computational biological evolution or geodynamics/Earth-system modelling are encouraged to apply, provided they have a strong interest in developing expertise across the other discipline.
We offer
At ETH Zurich, you will join a vibrant and highly interdisciplinary scientific community and have access to:
Read more about working at ETH and our benefits for employees.
Working, teaching and research at ETH Zurich We value diversity and sustainabilityIn line with our values , ETH Zurich encourages an inclusive culture. We promote equality of opportunity, value diversity and nurture a working and learning environment in which the rights and dignity of all our staff and students are respected. Visit our Equal Opportunities and Diversity website to find out how we ensure a fair and open environment that allows everyone to grow and flourish. Sustainability is a core value for us – we are consistently working towards a climate-neutral future .Curious? So are we.
In line with our values , ETH Zurich encourages an inclusive culture. We promote equality of opportunity, value diversity and nurture a working and learning environment in which the rights and dignity of all our staff and students are respected. Visit our Equal Opportunities and Diversity website to find out how we ensure a fair and open environment that allows everyone to grow and flourish.
About ETH ZürichETH Zurich is one of the world’s leading universities specialising in science and technology. We are renowned for our excellent education, cutting-edge fundamental research and direct transfer of new knowledge into society. Over 30,000 people from more than 120 countries find our university to be a place that promotes independent thinking and an environment that inspires excellence. Located in the heart of Europe, yet forging connections all over the world, we work together to develop solutions for the global challenges of today and tomorrow.
Questions regarding the position should be directed to Prof. Loïc Pellissier (loic.pellissier@usys.ethz.ch).