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Global rice paddy greenhouse gas emissions have doubled during the past six decades

Global rice paddy greenhouse gas emissions have doubled to approximately 1.1 billion tons of carbon dioxide annually since the 1960s, driven by area expansion and intensified residue incorporation. Practical farm changes such as optimizing water management and reducing excessive residue return can reduce emissions by about 10 percent w...

SourceBoston College·JournalNature Food·TypeMeta-analysis·DateMay 22, 2026

Moss-associated nitrogen fixation helps sustain plant growth in warming permafrost ecosystems

Climate warming significantly increases plant growth in permafrost regions by altering growing seasons and root penetration, but its impact depends on nitrogen supply. A new study reveals that moss-associated biological nitrogen fixation is a critical factor in sustaining plant growth under warming conditions.

SourceChinese Academy of Sciences Headquarters·JournalProceedings of the National Academy of Sciences·TypeRandomized controlled/clinical trial·DateMar 19, 2026

Gamma rays quickly toughen nitrogen‑fixing bacteria

Researchers at QST discovered that controlled gamma-ray mutagenesis can create heat-tolerant nitrogen-fixing bacteria in weeks, shortening development timelines. The method produces robust, climate-ready microbial products for agriculture, food processing, pharmaceuticals, and biofuel production.

SourceThe National Institutes for Quantum Science and Technology·JournalMutation Research/Fundamental and Molecular Mechanisms of Mutagenesis·TypeExperimental study·DateJan 12, 2026

Earth System Models underestimate natural terrestrial nitrogen fixation by up to 18%

A research team led by Professor Shushi Peng has estimated global biological nitrogen fixation for natural land ecosystems, revealing substantial biases in widely used Earth System Models. The team found that the models underestimate natural terrestrial nitrogen fixation by up to 18%, with a multi-model mean of ~67.7 Tg N yr-1.

SourceScience China Press·JournalNational Science Review·TypeComputational simulation/modeling·DateNov 11, 2025

New review unveils breakthroughs in soil nitrogen cycle research from microbial pathways to global sustainability

A comprehensive review synthesizes decade-long progress in quantifying nitrogen transformation processes, identifying novel microbial pathways, and developing sustainable management strategies. Key findings include advanced methodologies and novel microbial pathways that offer potential solutions to reduce nitrogen losses and nitrous o...

Study assesses the benefits of alfalfa-almond intercropping

New research reveals alfalfa-almond intercropping reduces winter soil nitrate leaching and field water loss via evaporation. The practice can capture and convert nitrogen losses into revenues for almond farmers during the non-productive winter season.

SourceWiley·JournalAgrosystems Geosciences & Environment·DateJan 8, 2025

Next generation biosensor reveals gibberellin’s critical role in legume nitrogen-fixation – paving the way for more productive legume crops and self-fertilizing cereals

Researchers at the University of Cambridge have discovered that the plant hormone gibberellin is essential for legume nitrogen-fixing root nodule formation and maturation. The study used a highly sensitive next-generation biosensor to visualize GA accumulation in specific zones of the root, revealing its critical role in nodulation.

SourceUniversity of Cambridge·JournalThe Plant Cell·TypeExperimental study·DateJul 23, 2024

Genetically engineering associations between plants and nitrogen-fixing microbes could lessen dependence on synthetic fertilizer

Engineering associations between plants and nitrogen-fixing microbes using genetic engineering could lessen dependence on synthetic fertilizer. This approach involves bi-directional signaling to release fixed nitrogen, promoting efficient communication between engineered plants and microbes.

SourceCell Press·JournalTrends in Microbiology·TypeLiterature review·DateSep 26, 2023

Rising temperatures alter ‘missing link’ of microbial processes, putting northern peatlands at risk

Climate change is expected to impact northern peatlands, a key carbon storage ecosystem. A recent study found that rising temperatures and increased carbon dioxide levels can disrupt the delicate balance between nitrogen fixation and methane oxidation, leading to unpredictable outcomes.

SourceGeorgia Institute of Technology·JournalGlobal Change Biology·TypeObservational study·DateApr 3, 2023

Mild ammonia synthesis

A team of researchers has discovered that reactive boron compounds can efficiently target and activate molecular nitrogen, converting it to ammonium chloride at room temperature without metals or hydrogen gas. This radical-based approach opens up possibilities for ammonia production without fossil-based raw materials.

SourceWiley·JournalAngewandte Chemie International Edition·TypeExperimental study·DateDec 14, 2022

Cereals take control of bacterial production of ammonia fertiliser

Researchers have made a breakthrough in controlling bacterial nitrogen fixation by cereals, enabling them to produce their own ammonia fertiliser. This development has the potential to reduce reliance on industrially produced ammonia-based fertilisers and mitigate environmental pollution and greenhouse gas emissions.

SourceUniversity of Oxford·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateApr 11, 2022

New species of marine plankton discovered, an overlooked source of nutrients in the oceans

Researchers have discovered two new and unusual species of diatoms that fix nitrogen, a critical process supporting productivity in nutrient-poor open ocean waters. These diatoms harbor symbiotic cyanobacteria that convert dissolved nitrogen gas into ammonia, enabling them to thrive in nutrient-poor conditions.

SourceUniversity of Hawaii at Manoa·JournalNature Communications·TypeExperimental study·DateFeb 10, 2022

Clover growth in Mars-like soils boosted by bacterial symbiosis

Researchers found that clover grown with symbiotic nitrogen-fixing bacteria in Martian regolith experienced significant 75% more root and shoot growth compared to uninoculated plants. However, the regolith showed no excess production of nitrogen compounds, suggesting a potential role for these microbes in terraforming Mars soils.

SourcePLOS·JournalPLOS ONE·TypeExperimental study·DateSep 29, 2021

Nitrogen inputs in the ancient ocean

Researchers have found that purple sulfur bacteria in a modern-day lake can fix nitrogen very efficiently, even at low molybdenum concentrations. This discovery provides the first indication that these bacteria may have played a significant role in nitrogen fixation in the Proterozoic ocean.

SourceMax-Planck-Gesellschaft·JournalNature Communications·DateAug 6, 2021