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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

Wild yeast discovery enables non-GM brewing of ornithine-enriched craft beer

Researchers at Nara Institute of Science and Technology developed a practical, non-genetically modified brewing yeast that produces over nine times higher intracellular ornithine levels than the original yeast. The improved yeast retained normal brewing performance, making it suitable for value-added fermentation.

SourceNara Institute of Science and Technology·JournalJournal of Industrial Microbiology & Biotechnology·TypeExperimental study·DateJul 2, 2026

A fresh approach to peppermint

Researchers at UC Davis have found over 250 new genetically distinct variants of peppermint through gamma radiation-induced mutations. These variants can be used to identify key genes for breeding or selecting new varieties with improved disease resistance.

SourceUniversity of California - Davis·JournalProceedings of the National Academy of Sciences·TypeExperimental study·DateMay 14, 2026

Identification of a key gene that enables tomato seed germination under high-temperature conditions

Tomatoes have difficulty germinating under prolonged heat stress, but two mutant lines with the loss-of-function mutation in SlIAA9 showed little decline in germination and normal seedling development. The mutants exhibited elevated expression of antioxidant enzymes and heat shock proteins, leading to enhanced resilience to heat stress.

SourceUniversity of Tsukuba·JournalPlant Physiology and Biochemistry·DateApr 28, 2026

Integration of two genes: A valuable strategy for developing virus-resistant tomatoes

Researchers discovered a combination of Ty-1/Ty-3 and Ty-6 resistance genes in tomato plants provides highly robust protection against begomoviruses. Integration of fewer resistance genes than expected can enhance resistance, offering a promising approach for improving tomato varieties while balancing productivity and fruit quality.

SourceKindai University·JournalEuphytica·TypeExperimental study·DateApr 14, 2026

Study finds gene responsible for wheat variety with three ovaries

Researchers at the University of Adelaide discovered a gene responsible for a rare form of wheat that grows three ovaries per flower. The study found that a complex genome rearrangement was associated with the activation of a normally dormant WUSCHEL-D1 gene, leading to increased grain production and improved breeding technologies.

SourceUniversity of Adelaide·JournalProceedings of the National Academy of Sciences·DateOct 23, 2025

Genomic techniques can streamline breeding for grain quality

Researchers developed a strategy to predict multiple traits at once based on the whole genome, increasing predictive ability by 2-10 times. This method, called multi-trait genomic selection (MT-GS), combines genetic markers with known trait links for more accurate predictions, making it a promising tool for efficient and cost-effective...

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

Corpse flowers are threatened by spotty recordkeeping

A study by Northwestern University scientists found that incomplete historical records have led to low genetic diversity and population decline among corpse flowers. The lack of standardized data makes it challenging for conservationists to make informed decisions about breeding, resulting in a high percentage of cloned plants.

SourceNorthwestern University·JournalAnnals of Botany·DateApr 3, 2025

Traditional breeding falls short in boosting soybean photosynthesis

A team from the University of Illinois found that traditional breeding methods are unlikely to improve soybean light-harvesting efficiency. Gene editing is likely needed to unlock soybean potential. The researchers gathered detailed measurements throughout an entire growing season to understand photoprotection relaxation in soybeans.

Biomedicine shows the way to future food crops

University of Queensland researchers have successfully introduced genetic material into plants via their roots using nanoparticle technology, enabling rapid crop improvement. This innovative approach could lead to the development of new crop varieties with improved yield and quality without traditional breeding methods.

SourceUniversity of Queensland·JournalNature Plants·TypeExperimental study·DateFeb 18, 2025

High-yield rice breed emits up to 70% less methane

Scientists have identified chemical compounds released by rice roots that determine how much methane the plants emit. A new strain of rice was bred using traditional breeding methods, resulting in yields of 8.96 tons/hectare while emitting up to 70% less methane.

SourceCell Press·JournalMolecular Plant·TypeExperimental study·DateFeb 3, 2025

GenEditScan: novel k-mer analysis tool based on next-generation sequencing for foreign DNA detection in genome-edited products

GenEditScan is a novel k-mer analysis tool that efficiently detects foreign DNA sequences in genome-edited crops. It has been designed to be user-friendly and accurate, with a correction function to reduce false positives, enabling reliable testing of genome-edited products.

SourceNational Agriculture and Food Research Organization·TypeData/statistical analysis·DateJan 22, 2025

Unlocking the genetic mysteries of modern roses

Researchers have decoded the genetic makeup of 'Samantha' rose variety to create a powerful resource for future comparative genomic studies. The study found that human selection has significantly influenced the genetic diversity of modern roses, but preserving genetic traits is essential for their health and adaptability.

SourceBoyce Thompson Institute·JournalNature Plants·TypeExperimental study·DateOct 14, 2024

Genomic treasure trove: Vernicia montana's DNA unearths new breeding horizons

A pioneering study decodes the chromosome-level genome of Vernicia montana, providing insights into its evolution and setting the stage for advanced molecular breeding and sex identification methods. The research identifies a reliable molecular marker for sex determination, streamlining the selection process for high-yielding female tr...

Illinois scientists to revamp corn breeding with focus on climate resilience

Researchers are working on a new approach to breeding corn that incorporates genomic selection and gene expression analysis to improve climate resilience. They aim to develop high-accuracy prediction models that can identify suitable genotypes for specific locations and future climates, reducing the need for trial-and-error approaches.

Transformative approach in cassava breeding: Inbred-parent-based hybrids promise enhanced efficiency and resilience

Researchers propose a transformative approach to cassava breeding, leveraging self-compatibility, flower-inducing technology, and genomics advancements. This innovative strategy aims to purge deleterious mutations, utilize heterosis, and create heterotic pools, enhancing adaptability and resilience in cassava production.

SourceMaximum Academic Press·JournalTropical Plants·TypeExperimental study·DateJul 28, 2024

Genome study informs restoration of American chestnut tree

A genome study has identified regional adaptations in American chestnut trees, informing restoration efforts and climate resilience. The research provides guidance for conserving genetic diversity across the Appalachian region, with a focus on preserving the most genetically diverse southern population.

SourceVirginia Tech·JournalProceedings of the National Academy of Sciences·DateJul 22, 2024

Groundcherry gets genetic upgrades: Turning a garden curiosity into an agricultural powerhouse

Researchers have used CRISPR/Cas9 gene editing to improve groundcherry's growth habit and fruit characteristics. This breakthrough could lead to increased crop yields and reduce the need for pesticides. The study also highlights the potential of groundcherry as a model species for studying plant biology.

SourceBoyce Thompson Institute·JournalPlants People Planet·TypeExperimental study·DateJul 18, 2024

Finding hidden genetic treasure: Study uncovers untapped diversity in historic wheat collection

A decade-long study has discovered a vast untapped genetic potential in modern wheat varieties, revealing that at least 60% of the genetic diversity found in a historic collection is unused. This discovery provides an unprecedented opportunity to improve modern wheat and sustainably feed a growing global population. The study used a cr...

SourceJohn Innes Centre·JournalNature·TypeExperimental study·DateJun 17, 2024

Sweetpotato’s sweet revenge

Researchers have identified 31 effector genes from the fungus Ceratocystis fimbriata, which causes devastating black rot in sweetpotatoes. This breakthrough provides a new approach to developing disease-resistant crops using effector-assisted breeding.

SourceAmerican Phytopathological Society·JournalMolecular Plant-Microbe Interactions·DateJun 12, 2024