- Professor in Marine Microbiology, University of East Anglia
The overarching aim of my research is to identify fundamental biological processes that govern the adaptation and evolution of marine microalgae (Phytoplankton) and their microbiomes (e.g. bacteria and viruses) in the oceans. To meet this aim, my team integrates approaches from cell biology, reverse genetics, physiology, multi-omics and ecology. We focus on marine algae and their microbiomes because they contribute ca. 50% of annual global carbon fixation and therefore significantly contribute to the habitability of our Earth. Thus, their adaptation and (co)evolution with associated microbes (e.g. bacteria and viruses) in the context of biotic and abiotic (e.g. temperature, nutrients) interactions in different marine systems (from tropics to the poles) and under conditions of climate change does not only shape the nature of marine food webs but also biogeochemical cycles they drive. This fundamental knowledge will help us to improve predictions on how algal microbiomes respond to global climate change.
My group mainly works in the fields of evolution, cell biology, reverse genetics and genomics (e.g., PACBIO and Oxford Nanopore sequencing; CRISPR/Cas) with marine algae and their microbiomes (e.g., prokaryotes, viruses) to understand their ecology, (co-)evolution and adaptation. This work leads to the identification of biological mechanisms that shape their evolution and are therefore responsible for their unique biology and adaptation to different environmental conditions in the oceans from the poles to the tropics and the surface to the deep sea.
Experience
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2025–presentAdjunct professor, Ocean University of China
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2014–presentChair professor, University of East Anglia
Professional Memberships
- Royal Society of Biology
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- Location: Norwich, UK
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