We have built a dedicated ancient DNA clean laboratory and established a contamination-free sampling workflow. We organized a 12-day, project-dedicated Arctic Ocean cruise with the Norwegian sea ice going vessel RV Kronprins Håkon during which we sampled sea ice, the water column and bottom sediments at 50+ stations. In addition, we participated in (inter)national research cruises to Svalbard, the Fram Strait, NE Greenland and the Arctic Ocean to collect sediment records from key locations in sea ice free, seasonal and permanent sea ice environments.
We explored sedimentary ancient DNA as a new tool for sea ice reconstructions following different approaches. In a first approach, we built the first comprehensive Arctic sedimentary ancient DNA (sedaDNA) database (metabarcodes) through the collection of Arctic sea floor sediment samples from different sea ice environments. Comparing that dataset with modern sea ice observations, as well as other sea ice proxies (palynology, biomarkers), allows a qualitative assessment of how sedaDNA metabarcoding signatures document the different sea ice environments and marine biodiversity. In a next step, the relationships between DNA metabarcodes and the modern environment, can be applied to the geological record to estimate past sea ice cover either directly or via a transfer function.
We also explored the sedaDNA (metabarcode) database for sea ice bioindicators, that could eventually be developed into proxies. The genetic signature of several organisms were identified as potential markers for sea ice free, seasonal or permanent sea ice conditions. For a selection of key taxa, i.e. sea ice dinoflagellates and diatoms, we developed a genetic fingerprinting tool (ddPCR assay) and tested it on our sedaDNA database and on Arctic sediment records dating back several thousands of years.
We analyzed several short (multicore) and longer (gravity core) sediment records that cover different time intervals over the last ca. 150,000 years in the Greenland Sea, Labrador Sea, Fram Strait and Arctic Ocean. We described the lithology, measured geophysical parameters, established age models and analysed palynology, biomarkers and sedaDNA with the aim to reconstruct oceanography, sea ice conditions and marine biodiversity. Generally, we observed that DNA stored in sea floor sediments reveals information on ecosystems and biodiversity beyond what is known from the “traditional fossil record, sedaDNA can be used to extract climate information from sediments dating back to >150,000 years, and substantial marine biodiversity shifts occurred in relation to climate shifts and changes in sea ice cover.
Finally, we contributed to studies, position and review papers that highlighted the importance of sedimentary ancient DNA as a tool for past environmental studies as well as methodological studies.
All our published scientific work and data is available in open access. Future publications and data will also be accessible in open access. Our results have been disseminated at (inter-)national conference, workshops, seminars. Team members have been key in the organization of the International Conference on Paleoceanography in Bergen, Norway (2022) and the ECOP/ISOP meeting in Vienna, Austria (2023). Several team members were involved in public outreach related to STEM and specifically the AGENSI project: talks at Pint of Science Festival, outreach to school kids during the OneOcean expedition, Passion For Ocean Summer school and FIRST Lego League, podcasts and the AGENSI website (www.agensi.eu).