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Breeding for better rotations opens a new frontier in farming systems

Researchers at the University of Queensland have developed a new approach to breeding crops for farming systems, which could lead to more sustainable and efficient farming practices. By selecting crop varieties based on their legacy, or the impact they have on the soil and subsequent crops, farmers may be able to reduce fertiliser bill...

SourceUniversity of Queensland·JournalNature Genetics·TypeCommentary/editorial·DateSep 16, 2026

A tiny gene edit makes rice safer without reducing harvests

Researchers identified a precise gene edit that lowers cadmium in rice grains while maintaining yield and essential mineral nutrients. The OsNramp5 I441T mutation selectively limits cadmium translocation, reducing grain cadmium by 48% without compromising zinc or manganese uptake.

SourceOkayama University·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateJul 16, 2026

Reading the mud: Central Asia's rivers hold a hidden timeline of human pollution

Researchers from Beijing Normal University decode historical chemical footprint in Mongolia's Orkhon River Basin to track toxic emissions drivers. The study reveals a link between economic booms and traffic jams and chemical fallout, providing insights for rewriting water management policies across Central Asia.

SourceBiochar Editorial Office, Shenyang Agricultural University·JournalCarbon Research·TypeObservational study·DateMar 25, 2026

Protecting turfgrass from fungal foes

University of Delaware researchers have discovered a novel strain of Bacillus subtilis that helps plants resist soil-borne diseases and retain moisture. The microbe, UD1022, is effective in controlling dollar spot fungus but only when applied directly to leaves, not through soil treatment.

SourceUniversity of Delaware·JournalPlant Stress·DateFeb 13, 2026

A single gene underlies begomovirus resistance in eggplant

A study at Kindai University has identified a single gene in eggplant that provides resistance to begomovirus infection. This finding holds promise for developing naturally protected crop varieties, reducing the need for insecticides and promoting sustainable food production.

SourceKindai University·JournalTheoretical and Applied Genetics·TypeExperimental study·DateJan 9, 2026

An international team uncovers the comprehensive repertoire of genes and agricultural traits of eggplant

Researchers sequenced the genome of over 3,400 cultivated eggplant varieties and identified key agronomic traits associated with genes. The study revealed over 3,000 associations between traits and genes, providing a foundation for breeding tailor-made eggplant varieties adapted to local conditions.

Extra iron helps stressed out wheat grow up big and strong

Researchers have discovered that extended periods of high stress in wheat crops can lead to iron deficiency and stunted growth. By reducing iron deficiency with a synthetic organic molecule called PDMA, plants are able to improve photosynthesis and biomass under heat stress conditions.

SourceRIKEN·JournalNature Communications·DateOct 30, 2025

Straw-based biochar and smart irrigation help maize thrive with less water and fertilizer

Researchers found that straw-derived biochar enhances maize biomass by up to 30% and improves nitrogen use efficiency under limited-water conditions. Alternate partial root-zone drying irrigation also stimulates soil microbes to release nutrients, promoting deeper and more efficient root systems.

SourceBiochar Editorial Office, Shenyang Agricultural University·JournalBiochar·TypeExperimental study·DateOct 28, 2025

Aboveground rather than belowground productivity drives variability in miscanthus × giganteus net primary productivity

Researchers measured miscanthus × giganteus net primary productivity in both aboveground and belowground structures. They found that aboveground productivity varied among sites, fertilization rates, and calculation assumptions, with yields ranging from 15.4 to 36.4 Mg DM ha–1 year–1.

Early planting to avoid heat doesn’t match current spring wheat production

Researchers at Washington State University found that early planting to avoid heat damage may actually hinder spring wheat productivity due to other growth issues. The study used computer modeling to show that moving crop plantings earlier in the season can expose crops to elevated heat or cold stress in later growth stages.

SourceWashington State University·JournalCommunications Earth & Environment·TypeComputational simulation/modeling·DateOct 9, 2025

Review explores pathways, business models, and drivers for youth employment in Uganda’s agricultural sector

A review has identified six key employment pathways for youth in Africa's agricultural sector, including primary production, agri-service provision and green entrepreneurship. The review highlights the importance of scalable and sustainable business models that support young entrepreneurs, such as collective action and revenue-sharing ...

SourceCABI·JournalCABI Agriculture and Bioscience·TypeLiterature review·DateJul 7, 2025

Study develops optimal cover crop adoption thresholds

The study develops a stochastic dynamic programming model that accounts for cumulative effects of cover crops on soil fertility, uncertain future prices, and irreversibility of sunk machinery costs. The findings suggest a threshold level of soil fertility above which it is optimal to adopt cover crops, favoring no-till practices.

SourceNorth Carolina State University·JournalEuropean Review of Agricultural Economics·TypeMeta-analysis·DateJun 11, 2025

Drought-resilient plant holds promise for future food production, study finds

Researchers at Colorado State University have demonstrated the reversal of embolism in a type of wild grass, which can recover from extended drought within 24 hours. This finding has significant implications for improving agricultural productivity and food security, as it could potentially be bred into crops to make them more resilient...

SourceColorado State University·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateJun 5, 2025

A new algorithm uses satellite images to distinguish olive grove types without field visits

Researchers develop a method using convolutional networks to automatically identify traditional, intensive, and super-intensive olive grove types from Sentinel-2 satellite images. The algorithm achieved an accuracy of 80% and offers a more efficient and precise alternative to traditional methods.

SourceUniversity of Córdoba·JournalComputers and Electronics in Agriculture·TypeExperimental study·DateJun 5, 2025