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Video and audio monitoring of the Arctic seafloor captures rarely seen phenomena: fish swimming backwards, narwhal calls nearby, and a beautiful array of deep-sea dwellers and tide-driven "marine snow”

Researchers used seafloor video and audio monitoring to capture rare phenomena in a Greenlandic glacial fjord, including fish swimming backwards and making sudden appearances of deep-sea dwellers. The study also revealed the presence of narwhals near the surface, providing new insights into the Arctic ecosystem.

SourcePLOS·JournalPLOS One·DateMay 6, 2026

“Not just hot water”: marine heatwaves can create toxic relationship between seagrasses and microbes

Researchers found a diverse bacterial ecosystem in seagrass habitats that was disrupted by increased water temperature, leading to reduced seagrass biomass and tolerance to climate change. The study highlights the importance of considering microbial communities in understanding marine plant responses to environmental stress.

SourceUniversity of Sydney·JournalNew Phytologist·DateMay 6, 2026

Tire and rubber chemicals leave decades-long contamination record in Lake sediments

Researchers discovered high concentrations of tire- and rubber-related chemicals in Lake Sihwa sediments, with patterns reflecting changes in industrial activity and pollution control measures. The study provides a baseline for sediment concentrations, enabling understanding of future trends and potential risks to aquatic organisms.

SourceKeAi Communications Co., Ltd.·JournalEnvironmental Chemistry and Ecotoxicology·TypeObservational study·DateApr 24, 2026

New study unveils rich biodiversity in Japan's deepest ocean trenches, featuring record-breaking discoveries and an unidentified "mystery" species

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.

SourcePensoft Publishers·JournalBiodiversity Data Journal·DateApr 7, 2026

How can science support and enable the High Seas Treaty?

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.

SourceUniversity of Plymouth·Journalnpj Ocean Sustainability·TypeCommentary/editorial·DateApr 2, 2026

The ‘thermal hustle’: FIU researchers track how great hammerhead sharks outsmart ocean temperature swings

Researchers tracked movement, acceleration, depth, and water temperature for nine hammerheads in Florida and the Bahamas waters. They found great hammerheads can effectively hunt fast-moving prey like blacktip sharks in winter and tarpon in summer, suggesting they may tolerate changing climates better than other species.

SourceFlorida International University·JournalJournal of Experimental Biology·TypeObservational study·DateMar 31, 2026

100 million years ago, an ‘evolutionary fuse’ was lit in the deep ocean, sparking squid diversification

A new study from Okinawa Institute of Science and Technology (OIST) identifies the 'long fuse' that led to the diversification of modern squid and cuttlefish. The research suggests that these animals originated in the deep ocean around 100 million years ago, sparking rapid evolution after a mass extinction event.

SourceOkinawa Institute of Science and Technology (OIST) Graduate University·JournalNature Ecology & Evolution·TypeExperimental study·DateMar 30, 2026

When algae stop growing, bacteria start swarming

A new study published in mBio describes the unique relationship between diatoms and a newly identified species of marine bacteria. When diatom growth ceases, the bacteria become aggressive, releasing compounds that damage the algae and then feeding on them. In nutrient-rich environments, the bacteria can overcome the diatom's defenses.

SourceUniversity of Washington·JournalmBio·DateMar 27, 2026

Beyond climate resilience: the science of thriving in a chaotic world

A study from Michigan State University reveals that extreme weather can actually strengthen certain ecosystems, leading to increased productivity and resilience. The researchers found that phytoplankton species, which are crucial for removing carbon dioxide from the air, thrive when temperature fluctuations increase.

SourceMichigan State University·JournalThe American Naturalist·TypeComputational simulation/modeling·DateMar 23, 2026

How an alga makes the most of dim light

Researchers discovered a freshwater alga that captures far-red light for photosynthesis by rearranging ordinary chlorophyll. This unique strategy allows the alga to thrive in shaded forests and murky waters, making it resilient in tough environments. The findings have practical implications for sustainable bioenergy production and may ...

SourceOsaka Metropolitan University·JournalJournal of the American Chemical Society·TypeExperimental study·DateMar 13, 2026

Mangrove forests are short of breath

Researchers at the University of Gothenburg measured carbon dioxide and oxygen levels in 23 mangrove areas, revealing global patterns in environmental stress. The study found that extreme conditions, including low oxygen and high carbon dioxide levels, are becoming more frequent and severe, posing a threat to sensitive fish species.

SourceUniversity of Gothenburg·JournalGeophysical Research Letters·TypeObservational study·DateMar 11, 2026

Genetic mapping of Baltic Sea herring important for sustainable fishing

A new study by Stockholm University researchers reveals distinct populations of Baltic Sea herring with varying levels of genetic adaptation to local conditions. The findings highlight the importance of genetic diversity in managing herring populations and suggest that current fishing practices may be detrimental to local populations.

SourceStockholm University·JournalProceedings of the National Academy of Sciences·TypeObservational study·DateMar 9, 2026

Risk of whale entanglement in fishing gear tied to size of cool-water habitat

Research finds that humpback whales face a higher risk of getting entangled in fishing equipment during years with lower availability of cool-water habitat. The Habitat Compression Index can predict ocean conditions up to a year in advance, suggesting its potential as an early warning system for fishery management decisions.

SourcePLOS·JournalPLOS Climate·TypeObservational study·DateFeb 25, 2026

Scientists prove shellfish can be farmed far from shore

Researchers successfully farmed Atlantic surfclams offshore in the open ocean, finding faster growth and higher survival rates than those farmed near shore. The study opens new doors for offshore aquaculture in New Jersey, promising a sustainable way to grow more seafood while supporting local jobs.

SourceRutgers University·JournalNorth American Journal of Aquaculture·TypeObservational study·DateFeb 18, 2026

Releasing pollack at depth could benefit their long-term survival, study suggests

A new study suggests that releasing pollack closer to their natural catch depths can significantly improve their chances of survival. The research found that releasing fish at these depths can increase survival rates from 56% to over 80%. This could have a positive impact on the long-term sustainability of recreational pollack fisheries.

SourceUniversity of Plymouth·JournalFisheries Management and Ecology·TypeExperimental study·DateFeb 12, 2026

Acoustics : a neglected driver of evolution in fishes

Researchers uncover novel mechanism of sound production in boxfishes, highlighting evolutionary transition from mute to vocal species. A comparative anatomical analysis reveals absence of sound mechanism in related Aracanidae family, supporting importance of acoustic communication in fish evolution.

SourceUniversity of Liège·JournalBiological Journal of the Linnean Society·DateFeb 10, 2026

Tooling up to diagnose ocean health

A field-deployable CRISPR-based biosensing platform has been developed for rapid, on-site monitoring of marine species and ecosystems, offering a sustainable solution for tracking ocean health. The technology has the potential to detect critical species, predict outbreaks, and support early warning systems for ecosystem disruptions.

SourceWyss Institute for Biologically Inspired Engineering at Harvard·JournalNature Sustainability·TypeExperimental study·DateFeb 5, 2026