Researchers mapped the Challenger Deep using the EM124 multibeam echosounder, finding a preferred estimate of 10,927 m, which highlights the importance of sound-speed models, vessel speed, and survey conditions. The study's dataset is publicly available, allowing for further validation and comparison with other observations.
A recent study published in PLOS One reveals that the ocean's depths, including the Mar Del Plata Submarine Canyon, have accumulated human trash, including plastic and fishing gear. The research found 29 identifiable manmade objects, including plastic bags and food wrappers, which were funneled into the canyon by currents and geography.
Scientists have created the first global atlas of single-cell microbes living in the aphotic ocean, revealing unexpected functions and capabilities among deep-sea microorganisms. The new database, GORG-Dark, contains over 9,600 genomes from individual microbial cells collected across a broad range of depths and locations.
Researchers found that a deep-sea protein, PoXeR, adapts to extreme pressure by forming a trimeric structure, which provides structural stability. The protein's ability to withstand pressure could lead to the development of light-responsive protein materials and improve understanding of how life adapts to deep-sea conditions.
Scientists have discovered 10 new species of branching marine worms, shedding light on their evolution and diversity. The study, published in the Zoological Journal of the Linnean Society, used DNA sequencing and anatomical analyses to solve a long-standing puzzle and provide new insights into the evolution of complex body forms.
New research reveals that shipwrecks from WWI and WWII are leaking toxic chemicals into the North Sea, polluting the local ecosystem. The wrecks, including the German submarine UC-30, contain explosives that are harming starfish, mussels, and other marine life.
Scientists used chemical clues in microscopic fossils to find evidence that ocean acidification caused one of the largest extinction events in planktic foraminifera history. The study suggests that volcanic eruptions and rising CO2 levels led to a decrease in shell-building ability, ultimately contributing to the extinction.
The University of Alicante is part of the international team producing the World Ocean Assessment, the most ambitious report on the current state of seas and oceans. The assessment highlights the urgent need to protect marine ecosystems, which are essential for human well-being and face unprecedented challenges from climate change, pol...
The 'Hess Evolution' expedition aims to uncover the origin and age of Hess Rise, a vast volcanic plateau. Researchers will analyze rock samples collected from depths of up to 6,000 meters to determine if they reveal systematic age patterns across the plateau.
Researchers propose a thermochemical mantle plume formation process for the Ontong Java Plateau, contradicting previous hypotheses. The model explains spatial variations in crustal thickness and lava composition across the plateau.
Scientists found that meltwater destabilized methane hydrates beneath northwest Greenland, releasing large stores of methane. This process may have contributed to past climate events and could influence future climate change as polar ice sheets continue to retreat.
A new study reveals that subsidence is a major driver of coastal flooding along Java Island, with rates of up to 15 centimeters per year. Groundwater withdrawal and agricultural water use are identified as key culprits, highlighting the need for active monitoring and mitigation.
A new study published in Biodiversity Data Journal reveals a profound look at life up to nearly 10 kilometers below the ocean's surface in the Japan, Ryukyu, and Izu-Ogasawara trenches. The research catalogs at least 108 distinct organism groups, including a baffling unidentified animal that has left global taxonomic experts stumped.
A new study provides a solutions-focused pathway to implementing the High Seas Treaty, highlighting the need for enhanced data resources and sharing. The researchers identify major scientific and technical developments that can help address challenges in biodiversity monitoring and connectivity between areas.
The Ocean Discovery League has announced a global strategy to visually explore 10,000 strategically selected locations across the deep seafloor. By achieving this ambitious goal, scientists will unlock new discoveries about biodiversity, ecosystem function, and environmental change.
Researchers at Kobe University have discovered a region beneath the Kikai caldera in Japan that is filled with magma, which they believe is newly injected magma. This finding allows them to propose a general model for how magma reservoirs under caldera volcanoes refill, potentially improving our ability to predict future giant eruptions.
Researchers have announced the discovery of 24 new deep-sea amphipod species from the Clarion-Clipperton Zone in the central Pacific Ocean. The discoveries, part of an open-access special issue, provide fundamental knowledge of species and their distributions.
Researchers found a surprising correlation between West Antarctic Ice Sheet retreat and marine algae growth over the past 500,000 years. The study suggests that global warming may lead to reduced CO2 uptake if the ice sheet continues to shrink.
A team of scientists discovered the King's Trough Complex, a colossal submarine canyon off Portugal's coast, formed by tectonic processes and hot mantle material. The structure extends over 500 kilometers, with Peake Deep as one of the deepest points in the Atlantic Ocean.
A microscopic nematode genus, Halalaimus, has been discovered in both the Aleutian Trench and the South Sandwich Trench, two isolated deep-sea environments. The three identical genera found in these trenches have adapted to different habitats, highlighting the meiofauna paradox.
A new study published in Nature Geoscience shows the key role of Antarctic Bottom Water in the transition from the last Ice Age. The expansion of AABW played a central role in releasing carbon dioxide into the atmosphere, which helped reduce atmospheric CO2 concentrations.
Researchers analyzed sediment cores from three sites in the Arctic, finding that year-round ice coverage corresponded with less cosmic dust. This study suggests that tracking cosmic dust can help predict changes to sea ice coverage and understand warming trends.
A new species of sea anemone has been discovered building shell-like homes for hermit crabs. The anemone secretes a carcinoecium that expands and reinforces the crab's shell, forming a mutualistic relationship between the two species.
A study published in Nature Geoscience found that North American ice sheets caused over 30 feet of global sea-level rise between 8,000 and 9,000 years ago. This discovery challenges decades of research and has significant implications for understanding climate change.
A study in Communications Earth & Environment found that WWII munitions in the Baltic Sea support a higher abundance of marine life than surrounding sediment. The hard metal casings on the munitions provide a suitable surface for organisms to inhabit, outweighing the disadvantages of chemical exposure.
A new study found that land and ocean weathering processes are linked, influencing the amount of carbon stored or released into the atmosphere. The research proposes a continuum approach to studying weathering reactions on both land and in the ocean.
The MiningImpact project is investigating the environmental impacts of deep-sea mining on ocean ecosystems. Scientists are studying biodiversity, genetic connectivity, and ecosystem health to develop indicators and threshold values for harm.
The expedition aims to assess the storage potential of rocks and lay the foundation for their geophysical monitoring. Globally, basalt deposits beneath the ocean theoretically have a storage capacity of 40,000 gigatons.
A new study tracks the evolution of marine sediment layers across hundreds of millions of years, revealing insights into bioturbation's impact on ocean habitability and ecology. Bioturbation played a critical role in shaping seafloor ecosystems and regulating nutrient cycling.
The University of Tokyo researchers developed an unmanned aerial vehicle (UAV) that can withstand ocean currents and wind, enabling the acquisition of reliable seafloor measurements. The system achieved a horizontal root mean square error of approximately 1–2 cm, comparable to existing vessel-based systems.
Researchers used benthic foraminifera to study the link between Atlantic Meridional Overturning Circulation (AMOC) strength and oxygen content in the eastern tropical North Atlantic. The study found that weaker AMOCs are associated with more oxygen in the oxygen-minimum zone, which has implications for marine ecosystems.
Researchers will study how ocean currents and nutrients from land influence the health and productivity of MCEs, which support diverse marine life and important fisheries. The project aims to fill critical knowledge gaps and provide science-based solutions for environmental protection and sustainable growth in the gulf region.
A new autonomous underwater vehicle (AUV) imaged a previously unexplored portion of the seafloor in ultra-deep waters near the Mariana Trench. The OECI partnered with Orpheus Ocean and federal agencies to advance understanding of critical minerals.
A USC-developed shipboard system using limestone and seawater can remove up to half of carbon dioxide emitted from shipping vessels, cutting maritime CO2 emissions by 50%. The process mimics a natural chemical reaction in the ocean, where CO2 is absorbed into water pumped onboard and then neutralized through a bed of limestone.
A new study reveals that global marine biodiversity data is heavily biased towards shallow waters and vertebrates, with vast areas of the deep sea and invertebrates poorly represented. The findings highlight the need for prioritized sampling to fill these gaps and support sustainable ocean management.
International collaborations leveraging MBARI’s expertise and advanced technology better understand polar environments, including the Arctic seafloor and Southern Ocean. Researchers study seafloor processes, carbon and climate, and biodiversity in these regions.
A recent study has gathered the first video evidence of anchoring and chain damage in Antarctic waters, highlighting a critically understudied conservation issue. The research found that anchor impacts can cause localized destruction to seafloor habitats, leading to the loss of slow-growing, sessile species.
The ECORD event will explore the importance of scientific ocean drilling in understanding Earth's systems and addressing environmental challenges. Key findings include the establishment of the new International Ocean Drilling Programme (IODP3) and its potential impact on global scientific cooperation.
The University of Oldenburg has secured funding for three research clusters: Hearing4all, Ocean Floor, and NaviSense. These clusters aim to improve hearing loss prediction, diagnosis, and treatment, as well as animal navigation research. The funding enables the continuation of high-quality research with social relevance.
A groundbreaking expedition aims to validate hypotheses about the origin of freshened groundwater in offshore aquifers. Researchers will collect sediment and water samples from beneath the ocean on the New England Shelf, shedding light on the dynamics of these systems and their influence on nutrient and element cycling.
A groundbreaking study estimates that only a minuscule fraction of the deep seafloor has been imaged, with less than 0.001% of the ocean floor having visual records. This limited exploration is largely due to high costs and geographical bias in ocean exploration efforts.
A new study finds that ocean-based carbon dioxide removal (CDR) and storage in German waters is feasible but with limitations, such as local marine conditions and required materials, energy, and infrastructure. Only five methods were shortlisted for implementation in German North Sea and Baltic waters.
Research shows fish species like Atlantic cod and hagfish contribute significantly to seabed ecosystem health. Bioturbation impacts on organic carbon storage and greenhouse gas absorption are crucial for understanding ocean's role in climate change.
A study found that sediment resuspension triggered by trawling and natural processes releases significant amounts of CO2 into the atmosphere through pyrite oxidation. The research reveals that protecting sensitive seafloor areas with fine-grained sediments is crucial to maintain the region's carbon sink capacity.
A study found that microorganisms using the reductive tricarboxylic acid cycle dominate in shallow-water hydrothermal systems. This energy-efficient process enables them to transfer carbon into organic molecules, allowing them to survive in harsh conditions.
A team of scientists from the Woods Hole Oceanographic Institution has made a groundbreaking discovery at the Gofar fault in the eastern Pacific Ocean. They found extremely conductive blobs beneath the seafloor on one side of the fault, which could indicate brine accumulations and magma activity.
The deep sea accounts for 90% of ocean volume and hosts diverse ecosystems. However, human activities like mining and climate change threaten these areas. Scientists emphasize the need for major investment in deep-sea research to address knowledge gaps and inform sustainable management strategies.
Researchers say the amount of carbon released by seabed fishing worldwide is uncertain and must be urgently investigated. The Convex Seascape Survey found that vessel and gear sizes vary greatly from country to country, leading to large inaccuracies in global estimates.
The art installation, comprising three metal cubes, was deployed near the Mariana Trench off Japan's coast as part of a seismic sensor system. The cubes feature designs that resonate with communities worldwide and embody nine existential elements common to all humanity.
Eliza Michalopoulou is leading a research project to improve ocean floor mapping using sound waves, aiming to understand the seabed's properties and characteristics. The goal is to enhance anti-submarine warfare strategies and contribute to global efforts like Seabed 2030 and Ocean Decade.
Researchers confirm presence of potentially toxic Ostreopsis ovata algae in La Concha Bay, highlighting importance of substrate type and need for further study. Continued monitoring is advised to determine level of concentration and control situation.
Researchers discovered that sulfur bacteria from the Desulfobacteraceae family work together like a team to break down diverse organic compounds. By analyzing six strains, they found similar molecular strategies and a highly energy-efficient central metabolism pathway, enabling them to thrive in oxygen-free environments.
A recent study published in Nature Communications provides detailed data on the far-field spatial footprint of mining-induced plume dispersion and redeposition beyond the mining area. The research found that sediment concentrations were up to 10,000 times higher near the mining site and returned to normal levels after 14 hours.
Researchers on the SONNE310 expedition investigate canyons on active and passive continental slopes in the southwest Pacific. The study aims to identify factors that determine landslide frequency, size, and location, enhancing global risk assessment and protecting coastal areas.
The regulation of ocean-floor mining may hold key lessons for the management of space debris and mining on the Moon. International discussions on space traffic management and active debris control could help prevent space debris from orbiting the Moon and Mars. Effective regulations are crucial to ensuring sustainable space activities.
A research team from the University of Göttingen investigated the influence of the Zagros Mountains on Earth's surface bending. They found that the Neotethys oceanic plate is breaking off horizontally, creating a depression in the region.
Borealis Mud Volcano provides a hard substrate for various species like anemones and octocoral colonies, sustaining local fish populations. The volcano's carbonates also offer shelter and feeding opportunities.
A Tel Aviv University study finds that microplastic particles are excreted in the feces of marine animals, making them undetectable as plastic. This process can lead to increased carbon and nitrogen levels on the seafloor, promoting algal blooms and disrupting the marine food web.
Researchers propose using Exo-AUVs to detect life on Icy Worlds like Europa by identifying micro-zones with high biological potential. The strategy guides the Exo-AUV to collect diverse robust biosignatures and potentially detect extant life in various dimensions.
An international team of scientists mapped four unnamed underwater canyons and explored nearly 20 methane seep ecosystems off the Chilean coast. The expedition uncovered a dazzling array of creatures, including commercially valuable fish and potentially new species, in surprisingly diverse ecosystems.