crispr
CRISPR is a gene-editing technology derived from bacterial immune systems that enables scientists to precisely modify DNA sequences in living organisms. In plant research, CRISPR has become transformative for developing crops with enhanced traits including disease resistance, improved yields, and better nutritional profiles. This molecular tool significantly accelerates crop improvement by allowing researchers to make targeted genetic modifications more efficiently than conventional breeding approaches.
open_in_new WikipediaChloroplast Genome Editing Eliminates Gluten Immunogenicity in Trit...
It could mean that people with celiac disease — roughly 1 in 100 worldwide — may one day safely e...
CRISPR genome editing in plants without tissue culture.
It could dramatically speed up the development of crops that resist drought, pests, or disease — ...
Temperature regulation in plants: From molecular mechanisms to clim...
The wheat in your bread and the vegetables in your garden depend on precise temperature cues to k...
Targeted knockout of a host peroxisomal peptidase confers field res...
The corn in your grocery store and the staple food keeping millions of East African families fed ...
Editing strigolactone hormone receptor for robust antiviral silenci...
It points toward a new generation of disease-resistant rice that could protect harvests for billi...
The rust effector PstCFEM2 manipulates TaHA2- and TaCIPK9-mediated ...
Scientists discovered how a wheat-infecting rust fungus hijacks a plant protein to incr...
A distorter-restorer system drives quantitative reproductive isolat...
Disabling a single gene could allow breeders to cross wild rice relatives with cultivated rice, p...
Creating artificial miR2118a/b to boost yield and broad-spectrum re...
It points toward soybeans (and potentially other crops) that need fewer pesticides and fungicides...
PrimeRoot: a cutting-edge technology designed to achieve precise an...
It could lead to crops that are more nutritious, drought-resistant, or disease-proof — directly a...
Field Trials and Baking Studies of Ultra-Low Asparagine, Genome Edi...
Every time you toast bread or bake cookies, a potentially cancer-linked chemical called acrylamid...
Metabolomics-guided engineering of drought-resilient crops: Integra...
Fruits, vegetables, and grains you rely on are increasingly threatened by droughts made worse by ...
DNA repair under heat: DNA Polymerase λ modulates heat stress-induc...
As summers get hotter, the vegetables and flowers in your garden are quietly accumulating more ge...
Natural variation in the ORL4 promoter regulates rice leaf rolling ...
Rice varieties being developed through this research could increase yields on existing farmland —...
Harnessing endophytes and Multi-Omics for sustainable Colchicine bi...
Researchers demonstrate how beneficial microorganisms living inside Gloriosa superba pl...
A defense-inducible bidirectional promoter enables disease-resistan...
Tomatoes, peppers, and other crops engineered with this switch could resist devastating bacterial...
Genome editing generates high oleic soybean and eliminates beany flavors.
Soy-based foods like tofu, edamame, and soy milk could soon taste noticeably better and deliver h...
Virus-induced genome editing enables functional genomics across div...
Crops like tomatoes, wheat, and medicinal herbs that feed and heal you could be improved far fast...
First brassinosteroid-based dwarf mutant discovered and characteriz...
Compact dwarf grapevines could make growing wine grapes in a backyard, on a patio, or in a small ...
CRISPR-Mediated Enhancement of Photosynthetic Efficiency in Oryza sativa
More efficient rice plants could mean higher food production on the same farmland — helping feed ...
CRISPR Base Editing Creates Herbicide-Tolerant Rice Without Transge...
It could lead to herbicide-tolerant rice and other crops that regulators classify as non-GMO, pot...
Cell-specific transcriptomics and knockout reveal aquaporin functio...
Understanding exactly how corn and other grass crops regulate water loss through their leaves cou...
The emerging impact of CRISPR and gene editing on global crop improvement.
Food on your plate — from the wheat in your bread to the tomatoes in your salad — could soon be g...
Harnessing diverse tRNAs and AI-guided mining for compact and effic...
It could accelerate the development of crops that resist drought, pests, and disease — meaning mo...
Transgene-free genome editing in citrus and poplar meristem tissues...
It opens a path to developing disease-resistant citrus trees and faster-growing poplars without t...
CRISPR/Cas9-Mediated Editing in FAD2 Gene to Enhance Oil Quality in...
Cooking oil in your pantry likely came from soybeans that require industrial processing to stay s...
Enhancing tomato fruit sweetness by CRISPR/Cas9-mediated SlVIF gene...
It could lead to naturally sweeter tomatoes in grocery stores and home gardens — no artificial fl...
The plasma membrane ABC transporter Sl-ABCB5 mediates acylsugar sec...
It brings us closer to tomatoes and other garden crops that naturally fend off insects on their o...
Weaponizing nutrition: plants use a double strategy to fight herbiv...
Understanding how plants naturally defend themselves against insects could inspire new ways to pr...
Harnessing GhGRDP1 natural variation for enhanced cotton seed yield...
Cotton seeds are crushed into cottonseed oil used in cooking and food products worldwide, so bree...
Tandem MADS-Box Genes FUL2 and MADS1 Form a Regulatory Module to Re...
The tomatoes on your kitchen counter are quietly managing their own serotonin levels as they ripe...
Protoplast-Based Functional Genomics and Genome Editing: Progress, ...
It could lead to drought- and disease-resistant versions of the fruits, vegetables, and grains yo...
CRISPR/Cas Genome Editing and Its Applications in Cereal Crop Improvement.
Bread, rice, and corn on your plate could soon come from crops engineered to survive the hotter, ...
Field-deployable CRISPR-cas variants for rapid on-site detection of...
Faster disease detection means farmers and growers can catch outbreaks before they spread, protec...
Next-generation genome editing: no transgene, no tissue culture.
It could accelerate the development of crops that resist drought, disease, and pests — meaning mo...
Sea buckthorn for future foods: bioactive mechanisms, synthetic bio...
Sea buckthorn can be grown in your garden or on degraded land, and this research signals it could...
Aquaporins as Natural Stress Integrator: Coordinating Transport, Si...
Vegetables, grains, and fruits you eat are increasingly threatened by droughts and heat waves, an...
OsHMA7 mediates copper transport into the chloroplast to maintain p...
The rice on your plate depends on a tiny copper-moving protein inside each leaf cell — and unders...
Sweet Potato Gene Clusters Control Anthocyanin Biosynthesis and Lea...
Understanding exactly which genes control color and shape in sweet potato could help breeders dev...
Satellite DNA-targeted CRISPR/Cas9-mediated editing enables chromos...
Wheat feeds roughly 35% of the world's population, and the ability to surgically remove problem c...
Targeting a conserved functional motif in the PDS gene enables effi...
Bananas are one mutation away from a repeat extinction-level disease outbreak like the one that w...
Trans-grafting revolution: From molecular regulation mechanisms to ...
The tomatoes, apples, and cucumbers at your grocery store could soon be tougher against disease a...
A Modified Cas9 Scaffold Allows Extension of the Virus-Induced Gene...
Tomatoes, peppers, and potatoes you grow could soon be edited for disease resistance or better yi...
BnaA07.SUC2 regulated by BnaA05.MYC2 in jasmonate pathway promotes ...
Clubroot destroys canola and cabbage crops worldwide, and this discovery points to a specific gen...
Transposase-Assisted Donor Tethering Boosts Large-Fragment HDR in Plants.
Crops engineered to resist drought, disease, or pests with large genetic upgrades — things that h...
OsMYB306-OsRAV11 Regulates Resistance of Rice to Striped Stem Borer...
Rice you eat likely came from fields doused in pesticides to fight the striped stem borer — this ...
Rising Star: Rewriting the Code of Life for the Future of Food.
The wheat, rice, and vegetables heading to your plate could soon be redesigned to survive drought...
Duckweeds: from fundamental biology to a sustainable plant chassis ...
Those green specks covering your local pond could soon produce the vaccines and medicines your fa...
Synergizing Genome Editing and Artificial Intelligence for Predicti...
The tomatoes, wheat, and corn you eat could soon be engineered to survive droughts, pack more nut...
Plant microbiome regulation for sustainable agriculture.
Invisible world of microbes in your garden soil is one of the most powerful tools we have for gro...
Optimised Protocol for Efficient Generation, Confirmation, Transfor...
Faster, cheaper tools for studying grapevine genetics could accelerate the development of disease...
Soil In-situ Enrichment Coupled with RPA-CRISPR/Cas12b for Rapid an...
Strawberry wilt can wipe out entire crops silently through the soil, and this new tool lets farme...
Genome editing‑based strategies to combat geminiviruses: CRISPR/Cas...
Geminiviruses, spread by whiteflies, routinely wipe out tomato, pepper, and bean harvests — and C...
CRISPR/Cas9-mediated knockout of PsLykX gene of pea (Pisum sativum ...
Understanding exactly how pea plants partner with soil bacteria to 'fix' their own nitrogen could...
Recent Advances in the Detection of Plant Diseases Based on the CRI...
Faster, cheaper disease tests mean a farmer can confirm whether their wheat field has rust fungus...
Field-Compatible Detection of Spiroplasma citri Associated with Cit...
Researchers developed a portable CRISPR-based test that detects citrus stubborn disease...
The dehydrin protein COR15 enhances antiviral RNA silencing by prev...
Citrus tristeza virus has wiped out millions of citrus trees globally — understanding how plants ...
The SlWRKY75-SlASDAC Module Regulates Melatonin Levels to Modulate ...
Tomatoes grown with this melatonin-boosting gene edit produce more carotenoids (the pigments behi...
Multi-omics analysis of Raptor1A knockout reveals resistance to Tut...
Tomatoes in your garden could soon be bred to fight off one of their worst insect enemies on thei...
WRKY Transcription Factors: Integral Regulators of Defence Response...
Every ear of corn and tomato on your plate survived a constant barrage of fungal blights, bacteri...
Multiplex gene editing drives revolution in crop breeding: overlaid...
Vegetables, grains, and fruits you eat could soon be bred to withstand droughts, produce more foo...
GmMYB84, a transcription factor, confers cadmium tolerance in soybe...
Cadmium — a toxic heavy metal from industrial pollution and some phosphate fertilizers — silently...
Signal transduction and regulatory networks of the rice root system...
Rice feeds more than half the world's population, and as droughts become more frequent with clima...
Cis-regulatory architecture downstream of FLOWERING LOCUS T underli...
Understanding exactly how plants decide when to flower could help breeders develop crops that blo...
An improved Agrobacterium-mediated transformation method for genome...
Rice feeds more than half the world's population, and faster, more reliable gene-editing methods ...
Decoding MicroRNA Networks in Plant Vegetative and Reproductive Bra...
The tomatoes and grains at your grocery store could soon be bred to grow more efficiently by twea...
Precision editing to improve fruit traits: CRISPR/Cas into the picture.
Strawberries, bananas, and tomatoes at your grocery store could soon be bred to resist disease an...
BnaCIPK9 homoeologs mediate the dosage-dependent regulation of seed...
Higher-oil canola means more vegetable oil produced per acre, which could help keep cooking oil a...
Beyond CRISPR/Cas9: emerging genome editing technologies for next-g...
The wheat in your bread and the vegetables in your garden could soon be grown from varieties engi...
GmRPS5 Promoter-Driven CRISPR/LbCas12a Efficiently Generates Soybea...
Soybeans in your grocery store—from tofu to soybean oil to animal feed—could soon be nutritionall...
Optimization of Agrobacterium-mediated transformation of commercial...
The heirloom tomatoes you grow from saved seed or find at the farmers market have never had the b...
Plant Genetic Engineering: Technological Pathways, Application Scen...
The tomatoes, wheat, and rice that stock your grocery shelves could soon be engineered to survive...
Super-enhancer-mediated transcriptional regulation of gene clusters...
Understanding how plants switch on clusters of genes could let scientists engineer crops that pro...
CRISPR/Cas9-based knockout of BnaLYK compromises pattern-triggered ...
Canola oil in your kitchen comes from a crop routinely devastated by white mold fungus, which can...
Targeting redundant gene families: A multiplexed, tissue-specific C...
Understanding how plants take up nutrients from soil could lead to crops that need less fertilize...
Development and Application of Prime Editors for the Induction of S...
Soybeans are in roughly 70% of processed foods you eat, and these new precision editing tools cou...
Epitranscriptomic modulations optimize crop traits via messenger RN...
These discoveries could lead to crops that produce more food, taste better, or survive droughts a...
Plant Species Extinction and Opportunities for De-extinction.
Species that vanished from your region in the last few centuries — the wildflowers, native shrubs...
Understanding the control of perpetual flowering and continuous run...
If you grow strawberries and have ever wished your ever-bearing variety would also send out enoug...
Enhancing CRISPR-Cas12a base editing in plants with LbCas12a varian...
Better gene-editing tools bring us closer to crops that can survive drought, resist pests, or tol...
Research progress on nucleic acid amplification-based detection tec...
Bread, fruit, and vegetables on your table are under constant threat from fungal diseases, and be...
Crop biofortification for global food security: advances in genetic...
The rice, wheat, or corn in your pantry could soon be engineered to carry more iron, zinc, or vit...
PtrSHR1 coordinates vascular cambium proliferation and xylem lignin...
Trees in your local park, the wood in your furniture, and the paper in your books all depend on t...
The ELD4-OsPRR95 module represses OsMADS51 in regulating rice heading date.
Rice varieties grown in your region exist because their ancestors evolved to flower at exactly th...
Molecular basis of delayed leaf senescence induced by short-term tr...
The rice in your grocery store could be grown with less phosphorus fertilizer — and stay producti...
Tomato leaf curl Palampur virus: an emerging begomovirus threatenin...
Tomatoes and cucumbers from South Asian farms are increasingly being wiped out by a whitefly-carr...
NtMYB308 Negatively Regulates Anthocyanin and Lignin Biosynthesis a...
Tomatoes, peppers, and strawberries in your garden all use the same pigment-and-lignin defense sy...
Limitations of traditional mycotoxin control and biotechnological a...
Mold toxins quietly contaminate corn, peanuts, and grains in ways that ordinary cooking and stora...
First report of a simple method of CRISPR/Cas13a-based rapid detect...
GBNV can devastate tomato, peanut, and bean crops that many gardeners and farmers rely on, and a ...
Field-parallel six-sample microfluidic detection of plant viruses v...
Viral diseases can wipe out entire crops before farmers even know they're present, and catching t...
ORANGE: a tale of two pigments and two organelles.
When a tomato on your vine shifts from green to deep orange as it ripens, a single protein is cho...
Arabidopsis Group I Pumilio RNA-binding factors are vital for embry...
Cracking the molecular dial that lets plants choose between growing faster and surviving drought ...
Recent advances in generation of doubled haploid plants for genetic...
Faster, more precise plant breeding could soon bring you tomatoes, peppers, and potatoes that are...
Research progress on the regulatory mechanisms of the PSY promoter.
Every tomato, carrot, and marigold in your garden owes its color to a single genetic switch that ...
Development of tomatoes with high sugar and GABA accumulation and p...
Tomato plants that fruit without bees during summer heat waves could keep your garden productive ...
TaGα knockout in wheat causes early heading and short organ length,...
The wheat in your bread and pasta may soon be bred to flower earlier or produce more uniform grai...
Beyond survival: Can we engineer plants to thrive in and remediate ...
Food grown in soil near nuclear accident sites or uranium mines can carry radioactive particles i...
First Successful Targeted Mutagenesis Using CRISPR/Cas9 in Stably T...
Grain amaranth has fed people through droughts and poor soils for thousands of years, and this br...
A Truncated WRKY Protein Enhances Drought Resistance in Wild Tomato...
Wild tomatoes growing in arid hillsides already carry a built-in drought switch that breeders cou...
A synthetic guide RNA scaffold enhanced CRISPR/Cas9 editing efficie...
Tomatoes engineered to resist drought, rice bred to fight blight without pesticides, and vegetabl...
Transgene-free plant genome editing via viral delivery of miniature...
Crops edited this way leave no trace of foreign DNA — meaning a disease-resistant tomato or bligh...
Engineering plant architecture in the ornamental species Eustoma gr...
That lush, multi-stemmed bouquet flower you love at the farmers market — lisianthus — could soon ...
Tandemly duplicated TaERF109 genes confer drought tolerance and pos...
Wheat fields already face more frequent dry summers — this gene discovery opens a path to varieti...
Precision-engineered starch: Integrating metabolic engineering and ...
Staple crops like potatoes, corn, and rice are being quietly rewritten at the molecular level so ...
Genome Editing in Root and Tuber Crop Development in Sub-Saharan Africa.
Cassava and sweet potato feed hundreds of millions of people in Africa, and the same gene-editing...
Molecular Chaperone Networks in Plants: Maintaining Proteostasis an...
When a heat wave hits your garden mid-summer and your tomatoes drop their blossoms or your lettuc...
Enhanced editing of Bifidobacterium lactis using the endogenous Typ...
Better gene editing tools could lead to crops that are more resistant to drought, disease, or pes...
A rapid Agrobacterium rhizogenes-mediated transient expression for ...
Faster gene-editing validation means plant scientists can more quickly breed tomatoes and other c...
Two LEAFY homologues regulate floral patterning and development wit...
Understanding how kiwifruit flowers develop could help growers improve pollination success, fruit...
The rice DEAD-box RNA helicase OseIF4AIIa associates with the CCR4-...
Understanding how rice survives drought, cold snaps, and salty soils could help scientists breed ...
Multi-omics analysis of interspecies interactions in a soil Strepto...
Invisible bacterial communities in your garden soil are constantly signaling and competing with e...
Functional genomics in sugarcane breeding: key challenges and strategies.
Sugarcane supplies about 80% of the world's sugar and a growing share of renewable biofuel, so br...
NtMBD1 regulates shoot branching regulation and evolutionary differ...
Tobacco farmers lose yield to unruly side shoots they must manually remove, and the same branchin...
High-throughput design of defined microbial consortia for crop protection.
The garlic and greens you grow in raised beds could soon be inoculated with a precision-blended m...
Characteristics of the C4 bundle sheath emerge in C3 rice after edi...
Rice paddies feed half the world on shrinking water budgets — and this single gene edit quietly r...
Engineering herbicide-resistant sorghum with CRISPR/Cas9-mediated a...
Sorghum grows in the driest, hardest fields where other grains fail, and cleaner herbicide tolera...
An integrated framework to elucidate mechanisms underlying host-bra...
Tomatoes in your garden or at a local farm market face a stealthy underground threat — a parasiti...
Alternative splicing as a plant survival toolkit: molecular mechani...
Every tomato, wheat plant, and garden bean in your beds is already using this genetic remix trick...
Harnessing Genomics Approaches for Heat Stress Resilience in Wheat:...
Wheat fields across the Great Plains are already losing yield to spring heat waves that hit durin...
Editing strigolactone biosynthesis genes in tomato reveals novel ph...
If you've ever grown tomatoes near fields plagued by broomrape — a rootless parasite that latches...
Strain, procedures, and tools for reproducible genetic transformati...
Duckweed grows explosively fast on water surfaces you've seen in ponds and lakes, and now that sc...
Targeting cell death processes for insect pest control: a promising...
New insect pest control strategies targeting insects' own biology could mean fewer broad-spectrum...
Climate Warming and Plant Disease: Mechanistic Insights Into Pathog...
The tomatoes, squash, and herbs you're nursing through a hotter, wetter summer are facing a gaunt...
TKC-MC: An Effective Strategy for Generating Heritable Heterozygous...
Understanding which genes keep crops alive and healthy is a key step toward breeding rice and oth...
Systemic mobile RNAs: From molecular mechanisms to agricultural app...
The potato in your garden doesn't decide to form tubers by accident — a tiny RNA molecule travels...
Improving low-phosphate tolerance via tissue-specific CRISPR/Cas9 k...
Rice paddies worldwide are quietly starved of phosphorus — and the fertilizer fix is running out ...
A Conserved DT2-bZIP66-NF-YC4 Regulatory Module Confers Drought Tol...
Rice paddies already stressed by shifting monsoons could stay productive longer if breeders activ...
In perennial Arabis alpina, CONSTANS and FLOWERING LOCUS T have com...
Understanding how perennial plants decide when to flower — and why some branches bloom while othe...
Vacuum and Sonication Treatment Enable Efficient Transient Gene Exp...
Faster, cheaper ways to study plant genes mean researchers can more quickly develop crops that re...
Base editing in rice using nuclease-deactivated CRISPR/Cas-SF01.
Rice feeds more than half the world's population, and this more precise editing tool could accele...
A Key Role for S-Nitrosylation in Immune Regulation and Development...
Every tomato plant, rose bush, and oak tree in your garden inherited an ancient immune system tha...
Targeted multiplex gene knockouts in Lemna minor using CRISPR/Cas9.
Duckweed — the green film you see floating on ponds — could soon be engineered to grow the protei...
ZmDRL1 regulates maize leaf angle via phytohormone signaling.
The corn on the cob at your summer barbecue exists because breeders have spent decades coaxing ma...
Heterodimers of the MADS transcription factors GhAGL1 and GhAGL4 mo...
Every cotton T-shirt, towel, and pair of jeans depends on the length and abundance of fibers grow...
Gas5A, a putative glucanosyltransferase from Botrytis, functions as...
Gray mold (Botrytis) destroys strawberries, tomatoes, and roses in your garden — understanding ex...
Single-minded regulates larval energy homeostasis in the fall armyw...
Fall armyworms chew through corn, sorghum, and rice fields across six continents every season, an...
A pennycress transparent testa 8 knockout mutant has drastic change...
Breeding better pennycress could turn an overlooked winter weed into a widespread biofuel crop, p...
On-site, highly-sensitive and multi-signal detection of cucumber ba...
The cucumbers at your farmers market or in your garden are vulnerable to fast-spreading bacterial...
Sugarcane viral diseases: Epidemiology, detection, and advanced bre...
Sugarcane viruses quietly erode the sugar and ethanol in every stalk harvested, meaning the price...
Decoding heavy metal tolerance in rice: Nucleic acid-based technolo...
Rice paddies grown in soils with even trace heavy metal pollution quietly concentrate cadmium and...
CmBt and CmBr synergistically regulate cucurbitacin B biosynthesis ...
Melon breeders now have a precise genetic target to eliminate the mouth-puckering bitterness that...
Potential unlocked: an atlas of cloned wheat genes for genome engin...
The bread wheat in fields near you is quietly losing ground to new diseases and hotter, drier sum...
CRISPR/Cas9-mediated genome editing reveals the involvement of a po...
Gromwell's deep-red root dye has colored textiles and lip balms for centuries, and unlocking the ...
Development of fragrant broomcorn millet (Panicum miliaceum L.) via...
Broomcorn millet is one of the oldest drought-tolerant crops humans ever cultivated — and now gen...
Multiplex gene editing enables the multibiofortification of essenti...
Tomatoes you grow from seed today are one gene-editing generation away from delivering meaningful...
Mapping and Functional Characterization of Homologous Genes AhSUCA0...
The peanut butter on your toast and the boiled peanuts at the ballpark could soon be tastier, cre...
Biotechnological Improvement of Fiber Crops: Role of In Vitro Cultu...
Cotton in your jeans, linen on your table, and hemp in your bag could soon be grown with far less...
Phytohormones as key regulators of plant resilience under salinity ...
When you water your tomatoes with a dilute seaweed extract or notice your basil wilting on a heat...
Jasmonic acid crosstalk with secondary metabolites and plant growth...
Salt is quietly creeping into farmland worldwide — and the same chemical plants use to defend aga...
Genotype-specific optimization of in vitro regeneration and Agrobac...
Rice on your dinner plate — especially fragrant varieties like jasmine-style Indian rices — could...
Evaluation of computational tools for the prediction of CRISPR/SpCa...
Better gene-editing tools mean scientists can more quickly and precisely develop disease-resistan...
Negative Regulators of Rice Agronomic Traits: Functional Insights a...
Every bowl of rice you eat is shaped by thousands of years of breeding, but a new class of gene t...
Fine-tuning quantitative agronomic traits by manipulating gene copy...
Rice breeders now have a dial, not just an on/off switch — meaning the bowl of rice you eat could...
Advancement in bioremediation of heavy metals in sustainable way: A...
Leafy greens and root vegetables grown in contaminated urban or industrial soils can quietly accu...
PCdb: A comprehensive plant genome-editing database integrating sgR...
The rice, wheat, and vegetables you eat could be made more nutritious, drought-resilient, or dise...
The SlCBL-SlCML24 module mediates silicon-enhanced resistance to ba...
Sprinkling a silicon-rich soil amendment like diatomaceous earth around your tomato plants isn't ...
Multiplex Editing of BnBAK Genes Creates Compact, Semi-Dwarf Rapeseed.
If you've ever watched a field of flowering rapeseed flatten in a summer storm, this is the scien...
Glycolysis Dominates Over Photorespiration in Governing Oxalate Acc...
The tart bite of wood sorrel on a trail walk and the gritty feeling spinach leaves on your teeth ...
Bibliometric-Based Analysis of Global Trends and Collaborative Netw...
Crops shaped by the CRISPR tools this study tracks are already entering food systems worldwide — ...
Ultrasensitive, low-input detection of avocado sunblotch viroid via...
Avocado trees infected with Sunblotch Viroid can look perfectly healthy for years while quietly p...
Cytokinin histidine kinase receptors regulate multiple aspects of r...
Grasses from your backyard lawn to ornamental bamboo share the same hormonal wiring this study ju...
WOX5 expression stimulated by the transcription factor NF-YAc repro...
Every legume cover crop you turn under to rebuild your garden soil is running this exact genetic ...
Understanding Cell Wall Enzyme Function: From Classical Approaches ...
The same molecular machinery that lets a sunflower stalk stand six feet tall without snapping is ...
CRISPR/Cas9-mediated editing of the GhJAZ2 gene improves fiber leng...
Cotton clothes, towels, and bedding could become stronger, softer, or more sustainably produced a...
CRISPR-Mediated Intronic Knockin of Pre-amiRNA Enables Targeted Gen...
Breeding a crop — or even an ornamental — that resists a specific disease without carrying foreig...
The Role of Two Glycoalkaloid Metabolism Genes in α-Tomatine Biosyn...
The gray mold that collapses your tomato plants by August has evolved its own molecular toolkit t...
Development of a PCR-Cas12a-LFD visual detection system for highly ...
Faster, easier pathogen detection means farmers can catch crop-killing infections before they spr...
The AT-HOOK MOTIF CONTAINING NUCLEAR LOCALIZED gene promotes somati...
The towering tulip poplar lighting up eastern forests with orange-and-green blooms each spring co...
WUSCHEL in forest trees: evolutionary organizer, vascular architect...
Cuttings from your favorite ornamental tree sometimes refuse to root no matter what rooting hormo...
The ZmRACK1-ZmCDPK7-ZmAPX1 module regulates plant antiviral immunity.
Every corn plant in a field quietly runs a molecular immune system shaped by millions of years of...
Advances in multiplex precision genome editing in eukaryotic and pr...
The tomato on your windowsill, the wheat in your bread, and the soybeans in countless foods could...
Identification of a novel BBWV2 isolate and a sensitive and rapid R...
If you grow peppers, fava beans, or spinach and notice mysterious wilting or stunted plants, this...
Overcoming redundancy in the Arabidopsis TREHALOSE-6-PHOSPHATE PHOS...
When your tomatoes or fruit trees branch poorly or show yellowing leaves despite fertilizing, the...
Establishment of an RT-LAMP-CRISPR/Cas12a detection system for grap...
Grapevine fabavirus can silently devastate a vineyard season before most growers even know it's p...
Cyclophilin A-mediated cis/trans isomerization modulates RIN4 to co...
Every bag of dry lentils, every snap pea clinging to your trellis, every patch of clover feeding ...
Satellite DNA Editing Enables Meiosis-Independent Chromosome Engineering
Aspen groves — those quaking, golden-leafed giants that clone themselves across entire mountainsi...
Integrating microbial bioremediation, multi-omics, and emerging tec...
The soil in your vegetable garden or the park where your kids play may harbor invisible carcinoge...
TALEs, TALENs, and TALE Base Editors: From Plant Pathology to Biote...
Bacterial diseases that devastate rice, citrus, and pepper crops worldwide may soon be controllab...
Leveraging RNAi and CRISPR/Cas9-based strategies for target gene ch...
Western flower thrips can devastate a pepper, tomato, or flower garden almost invisibly, and they...
Resistance of Botrytis cinerea to anilinopyrimidine fungicides: A n...
Gray mold quietly destroys strawberry and tomato harvests — and the fungicide most growers spray ...
Fvchli deficiency impairs ABA-mediated stomatal closure and enhance...
Strawberry angular leaf spot — caused by the bacterium this study targets — is one of the most da...
Conserved C3H/APX bifunctionality coordinates lignin deposition and...
Poplar and other fast-growing trees used in bioenergy and timber production could be precisely en...
The phytochrome interacting factor 3 (PIF3) mediates low accumulate...
Rapeseed fields planted after the rice harvest in southern China — and eventually in colder north...
Cis-regulatory editing of SD1 promoter enhances TCP19-mediated repr...
Tall rice stalks snap in storms, flatten entire paddies overnight, and can wipe out a harvest tha...
Overexpression of the BAHD Acyltransferase-Like Protein gene OsDCR ...
Salt-damaged farmland is quietly swallowing rice paddies across South and Southeast Asia — the fi...
Optimized tRNA processing and TREX2-SpCas9 fusion enable high-effic...
Rice varieties that resist new blights, tolerate flooding, and need less fertilizer all at once h...
The SlASR4 Interaction with the Phloem Protein2 (SlPP2) regulating ...
Tomatoes are notoriously thirsty plants, and understanding how they can be bred to handle dry spe...
Application of digital PCR and CRISPR/Cas13a-based fluorescent assa...
Cotton fields in Texas are under threat from a spreading virus that's quietly cutting yields, and...
Prime editing: evolution of CRISPR-Cas system for a robust next-gen...
The wheat, rice, and corn being developed with this technology could one day yield reliable harve...
Agro-nanotechnology: A comprehensive overview of its role in ground...
Peanut butter on your shelf is one crop failure away from aflatoxin contamination — a potent carc...
Pan-genome analysis of the P-type ATPase gene family in Prunus mume...
Breeders working with ornamental plums and apricots now have a precise genetic dial for tuning fr...
The Transcription Factor OsWRKY30 Regulates Rice Resistance to Sout...
Rice paddies across Southeast Asia are losing entire harvests to a virus spread by planthoppers —...
Insights and applications for understanding the allergology, immuno...
Understanding exactly which plant proteins cause hay fever and food allergies could lead to bette...
Synergistic HMGN1 and VP64 Fusions Potentiate High-Precision and PA...
Rice breeders working to develop drought-tolerant or disease-resistant varieties just gained a to...
AtGATA5 contributes to ABA-mediated seed germination by promoting N...
Every seed you plant — from tomatoes to native prairie flowers — decides whether to sprout or sta...
The GATA5-GhFBA1_At-KNAT7 module regulates fruit branch angle and h...
Cotton fields packed tighter together can yield more fiber per acre without clearing new land — a...
Recent Advances in the Comprehension of Molecular and Genetic Mecha...
Every time you skip a synthetic fungicide on your tomatoes or squash, you're betting on something...
High-throughput Raman-activated cell sorting of microalgal genome-w...
Carotenoids are the same pigments that make your carrots orange, tomatoes red, and marigolds glow...
Reconfiguring biofortification strategies to transform food systems...
Seed banks hold thousands of forgotten vegetable and grain varieties that are far more nutritious...
Reconstruction of a Bis(bibenzyl) Biosynthetic Pathway through Anal...
Liverworts have quietly been making potent antimicrobial and anti-cancer compounds for millions o...
Advancing the frontier of plant-based therapeutics: critical innova...
Medicines and vaccines of tomorrow may be grown in fields rather than manufactured in expensive i...
Writing Big in Plant Genomes: Advances, Challenges and Strategies f...
Crops engineered with these tools could be tailored to resist drought, pests, or disease without ...
CRISPR/dCas9-Assisted On-Bead Multiplex Detection (BeadPlex2) for G...
Knowing exactly which genetic modifications are in your food—whether it's the corn in your tortil...
PlantRG: A Comprehensive and User-Friendly Database for Plant Resis...
Every tomato blight, rose black spot, and wheat rust that devastates a garden or farm is fought —...
Rice phosphate transporter reduces the low phosphate response throu...
Rice paddies worldwide get drenched in phosphate fertilizer partly because the plant panics and s...
Hormone-optimized hypocotyl-epicotyl-cotyledonary tri-complex expla...
Soybeans feed billions of people and fix nitrogen into soil — and this breakthrough means researc...
Targeted knockout of barley Ycf54 demonstrates its essential functi...
Every green leaf on every plant in your garden depends on a tightly choreographed chain of molecu...
Methylviologen resistance in loss-of-function mutants of the polyam...
Faster, cleaner gene-editing tools mean the rice on your plate could be bred to withstand drought...
A Comprehensive Review on Metabolomics-Guided Metabolite Production...
Many herbal remedies and plant-derived medicines are limited by slow-growing plants, climate, and...
GH3 phylogenetic subgroups define divergent routes of auxin inactiv...
Every time you pinch a stem tip to make a houseplant branch, or watch a cutting sprout roots in w...
Mammalian growth factors enhance regeneration in transgenic tomato lines.
Heirloom and heritage tomato varieties — the ones with the best flavor but the worst disease resi...
Pharmacological characterization and functional divergence of tyram...
Every cabbage, kale, and broccoli plant in your garden is a potential target for the diamondback ...
The cotton 1R-MYB transcription factor GhMYS1 promotes fiber cell e...
Cotton fibers are essentially single cells that must stretch to extraordinary lengths before they...
An F-box protein OsFKF1 interacts with either OsGI or Hd1 and media...
Rice paddies blanket more of Earth's farmed land than almost any other crop, and a single molecul...
Golden Promise-rapid, a fast-cycling and transformable barley genotype.
Faster barley research means the drought-tolerant, disease-resistant varieties destined for farme...
Engineering crop determinacy: CRISPR/Cas based advances in self-pru...
The bushy, vining tomato taking over your raised bed every August exists because of one ancient g...
Gene Editing of Nicotiana benthamiana Architecture for Space-Effici...
Vertical farms stacked in warehouses could soon grow the plant-based medicines your doctor prescr...
CRISPR/Cas9-mediated knockout of ZmHMA3 reveals its essential role ...
Corn fields on former industrial sites or heavily fertilized soils can quietly accumulate toxic z...
Overcoming breeding barriers with genome editing in autopolyploid crops.
The potato in your garden likely carries four copies of every gene — meaning breeders have to kno...
CRISPR/Cas9-mediated disruption of the gamma carbonic anhydrase 2 g...
Tomato seedlings on your windowsill are racing to germinate before their stored energy runs out —...
miR164c-CUC2 Module Modulates Salinity Stress Tolerance in Soybean ...
Soybean fields worldwide are slowly losing ground to creeping soil salinity, and this discovery h...
BSMV-mediated genome editing exhibits host-specific heritability: g...
Barley grown for craft brewing, heritage grain projects, or cool-climate farming could be adapted...
Role of the tomato MARS1/ROUGH gene encoding a LYSINE-SPECIFIC HIST...
Tomato breeders working to create cuttings that root faster — or backyard gardeners frustrated by...
Genetic and pharmacological inhibition of the Kir2A channel in diam...
Diamondback moths have evolved resistance to nearly every pesticide used against them on cabbage,...
A Hierarchical VvbHLH30-VvERF70-VvACS2 Module Orchestrates Ethylene...
Grapevines in your region face increasing frost-damage risk as unpredictable late freezes catch b...
WRKY30 negatively regulates lateral root development downstream of ...
Lateral roots are how plants mine deeper soil for water and nutrients, so understanding the molec...
Uncovering the Central Role of GhSPL13 in Vegetative Growth, Root A...
If you've ever watched a plant push out more roots after a dry spell, you're seeing a version of ...
A genome sequence and efficient CRISPR/Cas9 gene editing tools for ...
Those tiny pale stipples appearing on the undersides of your tomato leaves in July are spider mit...
FtsZ3 governs chloroplast division by regulating assembly and const...
Chloroplasts are what make plants green and allow them to capture sunlight for energy — understan...
Development of a Recombinase Polymerase Amplification-CRISPR/Cas12a...
Cacao trees can silently harbor a virus for entire growing seasons with zero visible symptoms, me...
Large-scale parallel characterization of RNA-guided nuclease activi...
Better gene-editing tools mean plant breeders can more safely engineer drought-resistant wheat, d...
Diverse novel RNA polymerase III promoters and dual-activity promot...
Every rice variety, wheat strain, and corn hybrid you've ever grown carries hidden genetic contro...
Cloning and functional verification of endogenous U6 promoters for ...
Kenaf grows faster than trees and can be harvested for natural fiber, paper, and even insulation ...
GhOFP1-GhTALE-GhXTHB transcriptional cascade regulates cotton stem ...
Every woody stem you've ever trained up a trellis or pruned back hard owes its girth to a thin ri...
Molecular biology of Pleurotus mushrooms: genomic resources, geneti...
Oyster mushrooms you can grow on cardboard in your kitchen closet are at the frontier of a geneti...
A genome-wide CRISPR screen reveals how diatoms thrive in dynamic light.
Every breath you take owes something to diatoms: these single-celled algae produce as much oxygen...
Degradation dynamics: an insight into microbial interactions with e...
Old military training grounds and quarry sites near your community may harbor explosive residues ...
Iterative Genome Engineering Platform Enables Efficient Sucrose Bio...
Sugar crops like sugarcane demand vast land and freshwater, but microbes that eat sunlight and CO...
Latent endogenous giant viruses drive active infection and inherita...
Seaweeds blanketing rocky shorelines and kelp forests are quietly harboring sleeping viruses that...
Enhancing CRISPR/Cas-Mediated Gene Knockout With Short Non-Homologo...
Algae engineered with sharper gene-editing tools could soon produce the sustainable biofuels and ...
The algal homolog of the plant CER1 and CER3 proteins is a bifuncti...
The silvery bloom on a blueberry and the water-sheeting surface of a nasturtium leaf are relics o...
Literature horizon scan for new scientific data on plants, microorg...
Crops and foods reaching your grocery store or farmers' market may increasingly be developed usin...
Target-to-signal conversion and spatial enrichment cascade boost CR...
A sensor this sensitive could one day let growers catch a soil-borne pathogen—like the water mold...
Conserved and Lineage-Specific Roles of KEA-Mediated Ion Homeostasi...
Every green leaf catching sunlight in your garden runs on chloroplasts that must maintain a preci...
Exponential signal amplification through coupled rolling circle tra...
Faster, field-deployable disease detection means a pathogen threatening your tomatoes, fruit tree...
10 years of CRISPR/CAS genomic engineering in Yarrowia lipolytica.
Yeast engineered to produce plant-identical oils and fatty acids could quietly replace palm and c...
Phage-plasmid-like elements are found throughout diverse environmen...
Soil microbes under your garden beds are constantly swapping genetic tools—including antibiotic r...
Biotechnology as a catalyst for a coherent and embedded EU regulati...
New gene-edited vegetables and biotech-bred disease-resistant cultivars are waiting in legal limb...
Exosome-like nanovesicles from acerola for CRISPR-Cas9 ribonucleopr...
The acerola cherry — a tropical fruit you might find at a Latin market or growing in a warm-clima...
Environmental antibiotics in wastewater disrupt zebrafish embryonic...
Same wastewater that irrigates community gardens, parks, and agricultural fields carries antibiot...
Conditional Expression of Cas9 and dCas9 in Lucilia cuprina Reveals...
Sheep blowflies destroy wool and kill sheep across Australia and beyond, driving up costs for far...
Polyvalent Guide RNAs Enhance the CRISPR-Mediated Suppression of a ...
Same polyvalent CRISPR strategy was first proven in plants, meaning advances in plant virus resea...
Genotoxicity profiling reveals distinct platform-and cell type-spec...
Gene editing tools developed in medical research — like the base editors here — are the same foun...
CRISPR-based gene editing for antimicrobial resistance control in h...
The same CRISPR toolkit now entering human clinical trials for drug-resistant infections is alrea...
PRMT1 drives cervical cancer progression by orchestrating cell grow...
Cancer research rarely crosses into the garden, but the molecular signaling pathways studied here...
Transforming Duchenne muscular dystrophy therapy: The multifaceted ...
Breakthroughs in using nano-scale vesicles to ferry gene-editing cargo into animal cells are resh...
Gene Therapy and Gene Editing in Type 1 Diabetes: CRISPR-Based β-Ce...
The same CRISPR scissors being refined in these diabetes trials are the exact tools crop scientis...
Transcriptomics Unveil Dsx1 as a Critical Regulator in Sexual Dimor...
CRISPR gene-editing tools validated here on crustaceans are the same tools plant breeders now use...
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