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Forest biomass becomes surprise carbon hero—if industry can cut costs and scale up

A data-rich review suggests that forest biological resources can offset up to 750 gigatonnes of CO₂ by mid-century if processing efficiency rises and green premiums fall. Engineered beams, biochar, and bioethanol can store carbon for decades, offering a 74% lifecycle GHG cut versus gasoline.

SourceJournal of Bioresources and Bioproducts·JournalJournal of Bioresources and Bioproducts·TypeLiterature review·DateJan 9, 2026

From straw to soil harmony: International team reveals how biochar supercharges carbon-smart farming

A new international study discovers that combining biochar with straw can reduce carbon emissions, boost soil health, and encourage microbes to work together. The research bridges Moscow and Guangzhou, delivering one of the clearest pictures yet of how organic amendments shape the hidden world beneath our feet.

SourceBiochar Editorial Office, Shenyang Agricultural University·JournalCarbon Research·TypeExperimental study·DateDec 19, 2025

Life on lava: How microbes colonize new habitats

Research reveals that single-celled organisms are among the first to colonize newly formed lava environments, thriving in scarce water and nutrient conditions. As diversity stabilizes over time, rainwater plays a critical role in shaping microbial communities, suggesting an unexpected link between weather phenomena and life on Earth.

SourceUniversity of Arizona·JournalCommunications Biology·TypeExperimental study·DateDec 18, 2025

Emerging pollutants threaten efficiency of wastewater treatment: New review highlights urgent research needs

The study highlights how emerging pollutants such as pharmaceuticals, microplastics, and industrial chemicals interfere with biological phosphorus removal processes in wastewater treatment plants. The review emphasizes the need for updated strategies and experimental designs to address these new contaminants.

Grassland degradation reshapes relationship between biodiversity and ecosystem multifunctionality

A new study reveals that grassland degradation increases soil microbial diversity while reducing plant richness, leading to a decline in ecosystem functioning and multifunctionality. The research highlights the critical importance of conserving soil microbial communities for sustainable restoration of degraded grasslands.

SourceChinese Academy of Sciences Headquarters·JournalNature Plants·TypeMeta-analysis·DateNov 11, 2025

How climate-damaging nitrous oxide forms in the ocean

Research reveals that microorganisms in ocean hypoxic zones convert nitrate into nitrous oxide to generate energy, producing this climate-damaging gas. The study's findings suggest that organic material in these zones increases the oxygen tolerance of bacteria, allowing for more regions of nitrous oxide production.

SourceUniversity of Basel·JournalNature Communications·DateOct 30, 2025

Plastic in the soil, but not as we know it: Biodegradable microplastics rewire carbon storage in farm fields

A two-year field study reveals that biodegradable microplastics, often considered eco-friendly, are reshaping farmfield soils in unexpected ways. Bioplastics PLA reduced stable carbon compounds by 32% while boosting microbial necromass and fungal-dominated soil ecosystems.

SourceBiochar Editorial Office, Shenyang Agricultural University·JournalCarbon Research·TypeExperimental study·DateOct 6, 2025

The salmon superfood you’ve never heard of

Researchers at Northern Arizona University have discovered a partnership between algae and bacteria that creates a clean-nitrogen machine, turning atmospheric nitrogen into food for river ecosystems. This discovery boosts populations of aquatic insects, which young salmon rely on for growth and survival.

SourceNorthern Arizona University·JournalProceedings of the National Academy of Sciences·DateSep 8, 2025

New Reichman University study: bacteria survive dust storms and introduce new genetic traits into our air

A new study reveals bacteria can survive inside dust particles transported through desert storms, carrying new genes that may affect human health. The research team identified a beneficial bacterium from the Bacillus subtilis family, which could enhance applications in agriculture, construction, and medicine.

SourceReichman University·JournalCommunications Earth & Environment·TypeExperimental study·DateAug 28, 2025

What gut bacteria like

Researchers have discovered that gut bacteria can recognize diverse chemical signals, including those from nutrients, DNA, and other metabolites. This allows them to detect and respond to nutritional values, suggesting that finding sources of nutrients is a primary function of motility in these bacteria.

SourceMax-Planck-Gesellschaft·JournalProceedings of the National Academy of Sciences·DateAug 27, 2025

Scientists reveal how microbes collaborate to consume potent greenhouse gas

Researchers discovered a unique partnership between two microbes that work together as a living electrical network to consume methane, a potent greenhouse gas. The finding sheds light on how microorganisms naturally reduce methane emissions and could lead to innovative strategies to control methane release in various environments.

SourceUniversity of Southern California·JournalScience Advances·TypeExperimental study·DateAug 22, 2025

Researchers identify increased microbial carbon use efficiency upon abrupt permafrost thaw

Research finds that microbial carbon use efficiency rises following abrupt permafrost thaw, driven by shifts in community composition and nutrient availability. This increase may promote the incorporation of microbial-derived compounds into soil, fostering stable carbon formation.

SourceChinese Academy of Sciences Headquarters·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateAug 20, 2025

Reduced genome – flexible performance: How symbiotic bacteria with minimal genetic information provide optimal support to their hosts

Researchers found that symbionts of reed beetles regulate gene expression according to the beetle's life stage, diet, and environmental conditions. The study shows that these bacteria can maintain a regulated metabolism with a minimal set of genes, suggesting a flexible and adaptable approach to support their hosts.

SourceMax Planck Institute for Chemical Ecology·JournalEMBO Reports·TypeExperimental study·DateAug 14, 2025

Kunming-Montreal Global Biodiversity Framework advances protection of marine biodiversity

The Kunming-Montreal Global Biodiversity Framework sets robust targets for protecting marine biodiversity, addressing its complexity and variability. By focusing on key indicators such as species distribution, genetic diversity, and ecosystem structure, policymakers can track changes and implement effective conservation measures.

SourceUniversity of Oldenburg·JournalFrontiers in Ecology and the Environment·TypeLiterature review·DateAug 11, 2025