A new study found that sediment plumes from deep-sea mining can cause significant stress in midwater jellyfish, leading to excess mucus production and energetic costly responses. The researchers also discovered that the stress response is more severe than expected even for a four-degree rise in sea temperature.
A new study has found that non-native species tend to mirror Earth's biodiversity patterns, with around 37,000 invasive species described worldwide. The researchers discovered that certain groups of species, such as mammals and plants, are disproportionately prone to establishing in new areas.
Researchers found a cooling of about 1°C in the southern Caribbean during the Little Ice Age, coinciding with droughts and lower rainfall in the Yucatan Peninsula. The study suggests that salt movement from the Caribbean to high northern latitudes plays a crucial role in regulating global climate.
GEOMAR researchers used 3D seismics to recreate the 1650 Kolumbo volcano eruption, finding that a landslide followed by an explosion created the devastating tsunami. The study provides valuable insights for monitoring submarine volcanic activity and potentially developing early warning systems.
A study reveals that variable C:N:P ratios of phytoplankton are essential for regulating dissolved oceanic nutrient ratios, while also influencing atmospheric CO2 levels on geological time scales. The findings challenge the commonly hypothesized strong link between phytoplankton and seawater nutrient ratios.
Research investigates impact of storm fronts, tropical storms, and cyclones on ocean circulation, finding changes in atmospheric synoptic variability (ASV) slow down ocean circulation and decrease primary productivity. ASV variations also affect mixing of ocean's layers and strength of oceanic circulation systems.
The expedition aims to study the geological system and evolution of hydrothermal ecosystems in the Red Sea. The team will use modern seafloor observation systems and instruments like the ROV Kiel 6000 to locate and map hydrothermal habitats.
Scientists have developed a new method to study phytoplankton nutrient limitations using satellite remote sensing technologies, providing insights into the global ocean's carbon cycle. The research found that phytoplankton were limited by either iron or nitrogen, leading to distinct fluorescence signals detected by satellites.
A recent study by GEOMAR researchers found that fluctuations in the Labrador Sea can significantly influence the strength of sinking processes east of Greenland. This phenomenon affects the Atlantic Meridional Overturning Circulation (AMOC), a crucial climate system that brings warm water from the Gulf of Mexico to Europe.
Researchers found that hydrothermal vents were active at shallow depths, releasing larger quantities of methane and carbon dioxide into the atmosphere. This discovery has significant implications for understanding past climate warming events.
New research reveals that the Amazon estuary receives significant dissolved neodymium and hafnium from the Rio Pará River, contrary to previous assumptions about suspended solid sources. The findings indicate a revised estimate of global riverine neodymium flux, with concentrations up to three times higher than previously thought.
An international team reconstructed eelgrass colonisation history, tracing Pacific to Atlantic migrations around 243,000 years ago. Genetic diversity in Atlantic populations is lower due to past ice ages, raising concerns about adapting to a changing climate.
Researchers reconstructed the seafloor morphology around Santorini to better understand volcanic tsunamis. The study revealed undulating bedforms formed by pyroclastic flows and instabilities of the volcanic flanks, indicating that slope instabilities can contribute to tsunami generation.
A study by GEOMAR has accurately determined the volume of magma from the Minoan eruption, providing a benchmark for measuring other eruptions. The analysis combines geophysical and geological methods to estimate magma volumes and deposition sizes.
Researchers from GEOMAR discover a second major landslide on the Norwegian shelf, 12,000 years earlier than previously thought. The Nyegga landslide, named after its discovery site, has been found to be responsible for about one-third of the material displaced during the Storegga event.
Researchers developed the first model for the western Baltic Sea, which includes top predators, fish species, and their interactions. Ecosystem-based management increases catches of cod and herring while improving food web resilience to climate change, and potential carbon sequestration is more than three times greater.
Diatoms, responsible for 40% of ocean plant biomass production, are declining due to ocean acidification. This decline can lead to nutrient scarcity in surface waters and disrupt marine food webs. Global simulations predict a loss of up to 27% silica in surface waters by 2200.
A vision for a net-zero Germany in 2050 emphasizes the need for rapid adaptation of the energy system to renewables, as well as technological measures for active CO2 removal and natural sink enhancement. Implementing these measures requires legal, political, economic, and social frameworks.
Researchers at GEOMAR found that seagrass meadows absorb vibrios, reducing their presence by up to 63% compared to non-vegetated areas. This discovery highlights the importance of protecting and restoring these ecosystems to maintain healthy water quality.
A new model has been developed to study phytoplankton growth in the ocean, providing insights into the basis of the marine ecosystem. The model suggests that cumulative cellular costs determine how environmental conditions affect phytoplankton growth rates, with potential implications for predicting fish stocks and global climate change.
A team of scientists from GEOMAR and the University of Malta discovered a groundwater reservoir off the coast of Malta using innovative methods. The research found evidence of an isolated freshwater body in limestone formations three kilometers from the coast, which could represent a new source of drinking water for the islands.
A recent study by GEOMAR scientists has provided a comprehensive understanding of the northern Chilean subduction zone, shedding light on the relationship between earthquakes and tsunamis. The data set, obtained through a unique deployment of ocean-bottom seismometers, revealed that aftershocks were located both beneath and above the p...
A new study has found that probiotic bacteria can help corals resist heat stress, potentially protecting these vital ecosystems from extinction. By modifying the coral's microbiome, scientists have shown improved resistance to bleaching in experiments.
Researchers found pyrosomes form dense blooms that impact food web dynamics and contribute to organic carbon movement. They also provide habitat for other animals, including jellyfish and amphipods.
The Red Sea is now considered a mature ocean basin, approximately 13 million years old, with features similar to those of the young southern Atlantic Ocean. The study uses gravity and earthquake data to develop a new tectonic model, revealing hidden structures such as rift axes and transform faults.
A new study suggests that microplastic ingestion by zooplankton can significantly affect the marine ecosystem's nutrient cycling and oxygen levels. Even low concentrations of microplastics can lead to a strong impact on ecosystems.
The Equatorial Undercurrent has strengthened by over 20% since 2008, leading to increased oxygen concentrations and a habitat expansion for tropical pelagic fish. The strengthening of the current is mainly caused by strengthening trade winds in the western tropical North Atlantic.
A new study reveals that ocean oxygen depletion will continue for centuries if all CO2 emissions were stopped immediately, more than quadrupling the current loss. The long-term decrease in oxygen primarily affects deeper layers, leading to major shifts in marine ecosystems and potentially changing habitats.
The 'MiningImpact' project monitors the first in-situ test of a prototype collector vehicle, assessing environmental impacts of deep-sea mining on ecosystems. The study aims to inform improved standards for mining codes, focusing on ecosystem health and biodiversity loss.
A global study has revealed that aquatic invasive species have caused significant economic losses, with an estimated $345 billion in damages since the 1970s. The study found that the largest costs were reported in North America and Asia, mainly due to damage to infrastructures, fisheries, and healthcare systems.
Researchers investigated methane hydrate deposit in deep-sea fan of Danube in western Black Sea, finding dynamic situation related to Black Sea development since last ice age. The study suggests gas hydrates decompose due to salinity, pressure, and temperature changes, with implications for climate change
A new study published in Nature reveals that transform faults are actively involved in shaping the ocean floors, contradicting a previous assumption. The research found that these faults cause extension of the seafloor and magmatism at their outer corners.
Researchers from GEOMAR have found that manganese, not iron, is the limiting factor for phytoplankton growth in some areas of the Southern Ocean. This finding has significant implications for understanding past changes and future climate change.
Researchers from GEOMAR and Kiel University discovered a deep-sea red yeast with anticancer and antibacterial effects, producing glycolipids with potential applications in medicine and biotechnology. The study found synergistic effects of certain compounds, opening doors to new pharmaceutical development and biotechnological applications.
Researchers identified the movement of the Intertropical Convergence Zone as a key factor limiting predictability of Atlantic Niño. The ITCZ's seasonal migration affects sea surface temperature interaction with atmosphere, hindering large climate changes.
New study shows ocean acidification influences carbon content of sinking particles, affecting biological pump. The results, published in Nature Climate Change, indicate highly variable responses to CO2, with bacterial and animal plankton playing a key role.
A new study reconstructs the Permian-Triassic boundary event, revealing that massive volcanic activities in Siberia triggered the extinction of 95% of ocean life. The team used fossil brachiopod shells to analyze isotopes and simulate Earth's processes, concluding that warming and acidification led to catastrophic consequences.
Researchers from GEOMAR found that short wind turns with strong cooling effect can explain the lower sea surface temperatures in tropical North Atlantic during summer months. Inertial waves, caused by brief variations in near-surface winds, trigger mixing between warm and cold waters.
A new study published by GEOMAR scientists reveals that thousands of tons of methane are leaking from old drill holes on the North Sea floor every year. The research used combined investigations and seismic data to estimate that up to 3700 tonnes of methane could be emitted annually from this area alone.
A study by GEOMAR Helmholtz Centre for Ocean Research Kiel predicts North Atlantic surface temperature variations several years into the future using wind field analysis. The researchers suggest a mechanism where winds cause changes in ocean circulation, resulting in anomalous heat accumulation and warming of the eastern North Atlantic.
The GEOMAR research group has successfully discovered a marine alga from the Kiel Fjord that inhibits pathogenic bacteria and kills melanoma-type skin cancer cells with low cytotoxicity. The researchers used bioinformatics methods and machine learning tools to accelerate the discovery process, reducing it from 3-4 years to months.
The new FOCI system allows for high-resolution ocean and climate modelling over centuries to millennia, enabling researchers to study natural climate fluctuations and anthropogenic climate change. With its modular design, FOCI can be configured to investigate various research questions and improve the accuracy of model simulations.
A study published in Scientific Reports reveals that plastic objects found in the deep sea, such as a plastic bag and curd box, show no signs of degradation after 25 years. The findings indicate that microbial communities on plastic surfaces differ from those in surrounding sediments, suggesting a potential impact on marine ecosystems.
A team of scientists discovered that genetic alterations in the immune system of pipefishes and seahorses allow them to tolerate paternal genetic information and develop their offspring. The study found that genes involved in female mammalian pregnancy are also activated in male pregnancy, suggesting similar molecular mechanisms.
Scientists have developed new methods to analyze individual proteins in marine protists, enabling studies on how these tiny organisms respond to environmental changes. The research sheds light on seasonal fluctuations and climate change impacts, providing insights into global cycles driven by phytoplankton.
A study on three-spined stickleback fish found that epigenetic modifications affect adaptation to salinity changes, but inducible markers improve response to environmental change. The research suggests organisms will eventually reach their limits to respond to climate change despite epigenetic modes of adaptation.
Researchers found that Antarctic Bottom Water, a deep-water mass in the Southern Hemisphere, was disrupted from spreading northwards into the South Atlantic and Indian Oceans during peak ice ages. The study suggests that weaker circulation in the Southern Ocean during cold periods may have interrupted this process.
Gelatinous zooplankton contributes significantly to marine carbon cycle, binding large amounts of carbon transported into deep ocean. This contribution is quantified for the first time globally using over 90,000 observations.
Researchers at GEOMAR Helmholtz Centre for Ocean Research Kiel identify Volcano F as the origin of a large pumice raft drifting towards Australia. The team used satellite images and seismic data to confirm the connection between the volcano and the floating rocks.
The EuroSea project is an international consortium of 55 partners aiming to improve ocean observation in Europe and beyond. The project focuses on combining existing capacities, filling gaps, and making data available to users more easily.