Add BrightSurf on Google Email

Billions of invasive round goby are in the Great Lakes. UTSC researchers want to stop them from spreading inland

UTSC researchers suggest governments should rethink round goby management as the invasive species spreads inland, threatening native biodiversity. The team proposes a combination of trapping, electrofishing, physical barriers, and rapid-response programs to reduce local populations and eliminate them.

SourceUniversity of Toronto·JournalJournal of Great Lakes Research·DateAug 17, 2026

Beyond the dust: Families describe daily health challenges near the Salton Sea

Research examines air quality and respiratory health among children in communities surrounding the Salton Sea, finding that outdoor dust events significantly affect indoor air quality. Families describe daily challenges of protecting children from dust and pollution, which can impact school attendance and overall quality of life.

SourceUniversity of California - Riverside·JournalBMC Environmental Science·TypeSurvey·DateJul 1, 2026

How soil microbes adapt to life in lakes

Researchers found two strategies used by bacteria to colonize new habitats: acquiring new traits and reducing genome size. This study sheds light on the evolutionary biology of soil microbes, revealing unexpected results about their adaptation to freshwater environments.

SourceUniversity of Zurich·JournalNature Communications·TypeExperimental study·DateApr 14, 2026

Can unpaved roads and watersheds co-exist? Researchers wade into the question

Researchers found that sediment loading to streams is significant under current conditions and that individual road crossings have a minimal impact. The study highlights the importance of considering the entire watershed when managing unpaved roads and pastures for maximum water quality effects.

SourceUniversity of Arkansas System Division of Agriculture·JournalJournal of Environmental Quality·TypeObservational study·DateApr 3, 2026

Thin ice may have protected lake water on frozen Mars

A team of researchers from Rice University discovered that lakes on ancient Mars could persist under thin seasonal ice for at least decades, contradicting earlier climate models. The study suggests that surface features shaped by sustained liquid water coexist with the idea that early Mars was too cold to support such conditions.

SourceRice University·JournalAGU Advances·DateJan 5, 2026

Reintroducing native African catfish into Lake Victoria reduced snail hosts and lowered schistosomiasis infection intensity in primary-school-aged children

Reintroducing native African catfish into Lake Victoria significantly reduced the number of snail hosts and lowered the intensity of schistosomiasis infections among primary school-age children. This biocontrol method provides an effective way to combat this parasitic disease in the region.

SourcePLOS·JournalPLOS Neglected Tropical Diseases·TypeExperimental study·DateSep 5, 2025

Unprecedented warming threatens earth’s lakes and their ecosystems

A recent study predicts that lakes worldwide will experience unprecedented surface and subsurface warming, leading to severe disruptions in ecosystems. Tropical lakes are expected to be the first to emerge from natural temperature bounds, while high-latitude lakes may shield their subsurface layers from surface warming.

SourceInstitute for Basic Science·JournalNature Geoscience·TypeComputational simulation/modeling·DateJul 12, 2024

Cloudy waters causes African fish to develop bigger eyes

Researchers found that young African fish raised in cloudy water developed larger eye structures than those raised in clear water. As the fish age, they lose this ability to adapt. The study also showed that older fish have bigger brains and optic lobes, suggesting different sensory demands at various stages of life.

SourceOhio State University·JournalJournal of Experimental Biology·TypeExperimental study·DateMay 20, 2024

Numerical models for a better understanding of long-term effects on lake ecosystems

Numerical models help assess ecological impacts of climate change on lakes by simulating changes in phytoplankton composition and community stability. The study found that warming increased seasonal variability in phytoplankton, leading to reduced overall evenness and increased species loss over time.

SourceHun-Ren Ökológiai Kutatóközpont·JournalLimnology and Oceanography·TypeComputational simulation/modeling·DateMar 19, 2024

Microalgae with unusual cell biology

Researchers studied Prorocentrum cordatum to understand its molecular processes, revealing a unique photosynthetic machinery that may help it adapt to changing light conditions. The findings could lead to improved understanding of harmful algal blooms and their role in climate change.

SourceUniversity of Oldenburg·JournalPLANT PHYSIOLOGY·TypeImaging analysis·DateMar 5, 2024

Wildfires also impact aquatic ecosystems

Research from the University of California San Diego finds that wildfires transform lakes and aquatic ecosystems, storing more carbon and emitting less CO2. The study suggests a shift in the role of aquatic systems in the global carbon cycle, with potential consequences for aquatic health and fisheries.

SourceUniversity of California - San Diego·JournalGlobal Change Biology·TypeExperimental study·DateDec 12, 2023

Road salt pollution in many US lakes could stabilize at or below thresholds set by the EPA

A new study suggests that with careful management, road salt concentrations in US lakes may stabilize below EPA-set thresholds to protect aquatic life. Reducing road salt application rates could yield additional environmental and economic benefits without threatening road safety.

SourceCary Institute of Ecosystem Studies·JournalLimnology and Oceanography Letters·TypeComputational simulation/modeling·DateJul 25, 2023

Eating viruses can power growth, reproduction of microorganism

A team of researchers at the University of Nebraska-Lincoln has discovered that certain microorganisms, such as Halteria, can eat high numbers of chloroviruses, which are known to infect green algae. This finding suggests that virovory, a virus-only diet, can support physiological growth and even population growth in an organism.

SourceUniversity of Nebraska-Lincoln·JournalProceedings of the National Academy of Sciences·DateDec 26, 2022

Climate change could make High Arctic fertile ground for emerging pandemics: uOttawa study

A novel genetic analysis by University of Ottawa researchers reveals that climate change could lead to an increased risk of viral spillover in the High Arctic. This increased risk may result in new viruses infecting previously uninfected hosts, potentially leading to emerging pandemics.

SourceUniversity of Ottawa·JournalProceedings of the Royal Society B Biological Sciences·TypeComputational simulation/modeling·DateOct 19, 2022

Climate change is making lakes less blue

A new study finds that climate change may decrease the percentage of blue lakes worldwide, leading to shifts in lake water color and ecosystem health. The research uses satellite images to determine a global inventory of lake colors, finding that green-brown lakes are more widespread than previously thought.

SourceAmerican Geophysical Union·JournalGeophysical Research Letters·DateSep 22, 2022

Same same but different

Researchers at Kyoto University have developed a new method to detect intraspecies genomic diversity, or microdiversity, of uncultivated bacteria. This approach allows for a more comprehensive understanding of microbial ecology and evolution, as previously overlooked variations are now being studied.

SourceKyoto University·JournalmSystems·TypeExperimental study·DateSep 21, 2022

Large-scale study of Brazilian wetlands ramps up evidence that biodiversity loss undermines ecosystem functioning

A new study analyzing 72 lakes in four large Neotropical wetlands of Brazil reveals that human impacts on biodiversity compromise wetland multifunctionality. Strong associations between aquatic organism diversity and wetland functioning were found, highlighting the crucial role of species richness in driving ecosystem health.

SourceQueen Mary University of London·JournalNature Ecology & Evolution·TypeData/statistical analysis·DateAug 4, 2022

Metal mayhem: New research finds toxic metals absorbed by Great Salt Lake plants and insects

Great Salt Lake wetland plants can accumulate hazardous metal pollution, which can be passed up the food chain to herbivorous insects. This study found high concentrations of lead, mercury, and other metals in plant tissues, threatening terrestrial ecosystems.

SourceS.J. & Jessie E. Quinney College of Natural Resources, Utah State University·JournalEcotoxicology·TypeExperimental study·DateJun 1, 2022