A stalk of deep-sea coral

Scientists explore a seafloor area newly exposed by iceberg A-84; discover vibrant communities of ancient sponges and corals.听

An international team of scientists have uncovered a thriving underwater ecosystem off the coast of Antarctica that had never before been accessible to humans.

探花直播team, including researchers from the 探花直播 of Cambridge, were working in the Bellingshausen Sea off the coast of Antarctica when a massive iceberg from the George VI Ice Shelf in January of this year.

探花直播team, on board Schmidt Ocean Institute鈥檚 R/V Falkor (too), changed their plans and reached the newly exposed seafloor 12 days later, becoming the first to investigate the area.

Their expedition was the first detailed study of the geology, physical oceanography, and biology beneath such a large area once covered by a floating ice shelf. 探花直播A-84 iceberg was approximately 510 square kilometres (209 square miles) in size, and revealed an equivalent area of seafloor when it broke away from the ice shelf.

"We seized upon the moment, changed our expedition plan, and went for it so we could look at what was happening in the depths below," said expedition co-chief scientist Dr Patricia Esquete from the 探花直播 of Aveiro, Portugal. "We didn't expect to find such a beautiful, thriving ecosystem. Based on the size of the animals, the communities we observed have been there for decades, maybe even hundreds of years.鈥

Using Schmidt Ocean Institute鈥檚 remotely operated vehicle, ROV SuBastian, the team observed the deep seafloor for eight days and found flourishing ecosystems at depths as great as 1300 meters.

Their observations include large corals and sponges supporting an , including icefish, giant sea spiders, and octopus. 探花直播discovery offers new insights into how ecosystems function beneath floating sections of the Antarctic ice sheet.

Little is known about what lies beneath Antarctica鈥檚 floating ice shelves. In 2021, British Antarctic Survey researchers first reported signs of bottom-dwelling life beneath the Filchner-Ronne ice shelf in the Southern Weddell Sea. 探花直播current expedition was the first to use an ROV to explore this remote environment.

探花直播team was surprised by the significant biomass and biodiversity of the ecosystems and suspect they have discovered several new species.

Deep-sea ecosystems typically rely on nutrients from the surface slowly raining down to the seafloor. For听centuries, the ecosystems under the ice shelf have been covered by ice almost 150 metres thick, completely cutting them off from surface nutrients. " 探花直播fact that we found long-living species suggests that the lateral transport, which mostly consists of glacial meltwater from the ice shelf, could be the source of the nutrients to sustain the life we found," said team member Dr Laura Cimoli, from Cambridge鈥檚 Department of Applied Mathematics and Theoretical Physics.

探花直播newly exposed Antarctic seafloor also allowed the team, with scientists from Portugal, the United Kingdom, Chile, Germany, Norway, New Zealand, and the United States, to gather critical data on the past behaviour of the larger Antarctic ice sheet. 探花直播ice sheet has been shrinking and losing mass over the last few decades due to climate change.

鈥 探花直播ice loss from the Antarctic Ice Sheet is a major contributor to sea level rise worldwide,鈥 said expedition co-chief scientist Sasha Montelli of 探花直播 College London (UCL). 鈥淥ur work is critical for providing longer-term context of these recent changes, improving our ability to make projections of future change 鈥 projections that can inform actionable policies. We will undoubtedly make new discoveries as we continue to analyse this data.鈥

鈥淲e were thrilled by the opportunity to explore the newly exposed seafloor,鈥 said team member Dr Svetlana Radionovskaya from Cambridge鈥檚 Department of Earth Sciences. 鈥 探花直播research will provide key insights into ice sheet dynamics, oceanography and sub-ice shelf ecosystems. At a time when the West Antarctic Ice Sheet is melting at an alarming rate, understanding these dynamics and their impacts is crucial.鈥

探花直播oceanography team, led by Cimoli听in collaboration with the 探花直播 of East Anglia and the British Antarctic Survey, used autonomous underwater vehicles to characterise the ocean circulation of the region and study the impacts of glacial meltwater on the physical and chemical seawater properties. "Antarctica and the Southern Ocean are a nexus point for ocean circulation, so changes that happen around Antarctica can affect global ocean circulation and global climate," said Cimoli.

探花直播researchers are also investigating how the iceberg calving event has contributed to mix the upper ocean, not just in the recently exposed area, but also further downstream as the iceberg floats away. As the giant iceberg drifts, it can generate turbulence that mixes water properties and could potentially mix the deep nutrient-rich water with the surface waters, fuelling biological productivity.听

探花直播expedition was part of , a global cooperative focused on deep-sea biological research and endorsed by the Intergovernmental Oceanographic Commission of UNESCO (IOC/UNESCO) as an Ocean Decade Action.

鈥 探花直播science team was originally in this remote region to study the seafloor and ecosystem at the interface between ice and sea,鈥 said Schmidt Ocean Institute Executive Director, Dr Jyotika Virmani. 鈥淏eing right there when this iceberg calved from the ice shelf presented a rare scientific opportunity. Serendipitous moments are part of the excitement of research at sea 鈥 they offer the chance to be the first to witness the untouched beauty of our world.鈥澨

Svetlana Radionovskaya is a Junior Research Fellow at Queens鈥 College, Cambridge.听Laura Cimoli is a Research Fellow at the Institute of Computing for Climate Science, Department of Applied Mathematics and Theoretical Physics at the 探花直播 of Cambridge.

Adapted from a by the Schmidt Ocean Institute.

Inset image:听Dr Cimoli (right) and Dr Meyer (UEA, left) prepare an underwater glider for deployment. Credit:听Alex Ingle/Schmidt Ocean Institute.



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