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This is the title in the page builder element "Plant cells"
This is the subtitle in the page builder element "Plant Cells". Below this, the element "White space" is used, option 'large white space' (100 px)
This is the title in the page builder element "Page header"
This is the subtitle in the page builder element "Page header".
This is page builder element Heading, size and color of characters, left/center alignment can be chosen
![Colored chromosomes, seen through a microscope](https://www.keygene.com/wp-content/uploads/2023/07/chromosomes-seen-through-microscope-shutterstock_759402886-lr-scaled.jpg)
This is the page builder element “Text area (50% wide)”. Left of this element, you see the page builder element “Image / Video (50% wide)”. Here’s some text, to show what it looks like.
KeyGene is the go-to research company for the development and application of breakthrough technology innovation. We do this for and with our shareholders and other partners, for crop improvement in for instance vegetables, fruits, ornamentals, and industrial field crops.
This is the page builder element “Textbox centered (for news items)”. Below is some text, to show what it looks like.
You can also include images in this element, by using the “Add media” option
KeyGene is the go-to research company for the development and application of breakthrough technology innovation. We do this for and with our shareholders and other partners, for crop improvement in for instance vegetables, fruits, ornamentals, and industrial field crops.
Below this element, the page builder element “News and events” is used. With this, you can add a maximum of five news items and or events to a page. Make sure to remove the event when the event has passed.
On the first row, a maximum of two news items /events are presented, on the second line, the maximum is three news items / events.
This is the page builder element "Featured Keygene's impacts". 3 relevant cases can be shown, tittle can be changed, choose to (not) include button 'More examples'
![Graph showing the telomere-to-telomere sequenced chromosomes of tomato](https://www.keygene.com/wp-content/uploads/2023/06/graph_jt-293x300-1.jpg)
Telomere-to-telomere crop genomes using only one DNA sequencing platform
Collaboration between KeyGene scientists and the Telomere to Telomere consortium (studying the human genome) has resulted in telomere-to-telomere crop genomes of tomato and maize, using one sequencing technology.
Page builder element "Featured Licensing". Choose max 3 technologies, and choose to include button "All licensing technologies"
Page builder element 'Featured Innovations" (name will change in 'Featured technology innovation'
New possibilities for crop improvement that start from individual plant cells and/or tissues.
Cell and Tissue Technology
Page builder element 'Featured crop improvements' (name will change in 'Featured field of crop improvement'
Use data science and advanced DNA, RNA & trait technologies to better understand genetic and phenotypic variation as the basic source for crop improvement.
Reveal and understand genetic variation
Page builder element 'Featured news'
Page builder element 'Featured careers'
Our vacancies
![](https://www.keygene.com/wp-content/uploads/2023/07/chromosomes-seen-through-microscope-shutterstock_759402886-lr-scaled.jpg)
Page builder element "Form with a background image".
Page builder element 'Big image'
![Colored chromosomes, seen through a microscope](https://www.keygene.com/wp-content/uploads/2023/07/chromosomes-seen-through-microscope-shutterstock_759402886-lr-scaled.jpg)
Page builder element 'Full width image'
![Colored chromosomes, seen through a microscope](https://www.keygene.com/wp-content/uploads/2023/07/chromosomes-seen-through-microscope-shutterstock_759402886-lr-scaled.jpg)
![Colored chromosomes, seen through a microscope](https://www.keygene.com/wp-content/uploads/2023/07/chromosomes-seen-through-microscope-shutterstock_759402886-lr-scaled.jpg)
This is the page builder element “Text with optional small image” with an image in this case, “boxed”. You can also add images within this text, by using ‘Add media’
This element is used on many pages, as an introduction!
This is the page builder element “Text with optional small image” without (!) an image in this case, “Boxed”
You can also add images within this text, by using ‘Add media’
KeyGene is the go-to research company for the development and application of breakthrough technology innovation. We do this for and with our shareholders and other partners, for crop improvement in for instance vegetables, fruits, ornamentals, and industrial field crops.
![Colored chromosomes, seen through a microscope](https://www.keygene.com/wp-content/uploads/2023/07/chromosomes-seen-through-microscope-shutterstock_759402886-lr-scaled.jpg)
This is the page builder element “Text with optional small image” with an image in this case, “Full width”. You can also add images within this text, by using ‘Add media’
KeyGene is the go-to research company for the development and application of breakthrough technology innovation. We do this for and with our shareholders and other partners, for crop improvement in for instance vegetables, fruits, ornamentals, and industrial field crops.
This is the page builder element “Text with optional small image” without an image in this case, “Full width”. You can also add images within this text, by using ‘Add media’
KeyGene is the go-to research company for the development and application of breakthrough technology innovation. We do this for and with our shareholders and other partners, for crop improvement in for instance vegetables, fruits, ornamentals, and industrial field crops.
Page builder element 'Centered image on page"
![Colored chromosomes, seen through a microscope](https://www.keygene.com/wp-content/uploads/2023/07/chromosomes-seen-through-microscope-shutterstock_759402886-lr-scaled.jpg)
This is a Heading H1, 'Left'
This is a heading H2, 'Center'
This is a header H3 'Left'
Page builder element 'Tiles widget'
Tilers can be used for a list of partners
Or for a list of speakers during an event
Or a list of technologies
In rows of three, so this is the second row.
Page builder element 'All news items'
![Artist's impression of two hands holding a seedling and a DNA strain in the back](https://www.keygene.com/wp-content/uploads/2018/10/low-res-shutterstock_468170795-150x150-1.jpg)
31 October 2018
KeyGene® SNPSelect: selection technology broadens possibilities in plant & animal breeding
![Celebrating the inauguration of KeyGene's office in India](https://www.keygene.com/wp-content/uploads/2018/10/img_20180903_145231-low-300x225-1.jpg)
26 October 2018
KeyGene India Inauguration and symposium on New Breeding Technologies in Agriculture – a summary
![Portrait of Gregor Mendel, father of genetic research](https://www.keygene.com/wp-content/uploads/2023/01/663px-gregor_mendel_2.jpg)
5 October 2018
KeyGene paper in Genetics: Mendel was actually looking for innovative crops
![Visitors in KeyGene's research greenhouse in Wageningen, the Netherlands](https://www.keygene.com/wp-content/uploads/2018/09/kg-events-16-1.jpg)
28 September 2018
Looking back on inspiring events at opening of our Crop Innovation Center
![Sugar cane chops](https://www.keygene.com/wp-content/uploads/2018/08/low-res-sugar-cane-shutterstock_311289653-150x150-1.jpg)
16 August 2018
First reference genome sequence of highly complex sugarcane
![Palm of two hands gently holding a seedling standing in a bit of soil](https://www.keygene.com/wp-content/uploads/2018/08/hands-plant.jpg)
13 August 2018
NuGEN and KeyGene announce settlement in declaratory judgment lawsuit
Page builder element 'All licensing items'
![Anther with ripened pollen grains](https://www.keygene.com/wp-content/uploads/2024/03/p235-pollen-viability-picture.jpg)
Pollen viability
Improve fertility and viability in interspecific hyrbids, using compounds that inhibit the MRN-ATM pathway.
![Microscopy pictures of egg cells in apomictic plants](https://www.keygene.com/wp-content/uploads/2024/03/p230-parpromotor-picture.png)
Parthenogenesis promotor
Promoter sequences that convert a sexual allele into a parthenogenesis allele, which is capable of inducing parthenogenesis.
![Picture from the 2S1 hybrid grafting research](https://www.keygene.com/wp-content/uploads/2024/03/p228-coreg-picture.png)
Coregeneration of recalcitrant plants
Regenerate recalcitrant plant cells into regenerative shoots by establishing contact to regenerative plant cells.
![Artist's impression of chromosomes](https://www.keygene.com/wp-content/uploads/2023/02/chromosomes-shutterstock_621958646-lr-1024x724.jpg)
Msi2 gene for DH induction
Mutant Musashi RNA-binding protein 2 (Msi2) proteins, nucleic acid sequences, and plants for haploid inducer lines.
![Colored chromosomes, seen through a microscope](https://www.keygene.com/wp-content/uploads/2023/07/chromosomes-seen-through-microscope-shutterstock_759402886-lr-1024x778.jpg)
CENPC Gene for DH induction
Mutant Centromere Protein C proteins, nucleic acid sequences, and plants for haploid inducer lines.
![Hands holding a tablet creating a augmented reality image of machine learning on top of the view of a lettuce crop in a greenhouse](https://www.keygene.com/wp-content/uploads/2024/03/data-science-shutterstock-lr-1417315073-1024x444.jpg)
AI assisted efficient plant selection
Plant selection based on genotypical and/or phenotypical data sets and deep learning.
![DNA sequencing platform of Oxford Nanopore Technologies](https://www.keygene.com/wp-content/uploads/2023/02/ont-p24-tower.jpg)
Target enrichment through selective sequencing
A combination of TarSeq and subsequent selective sequencing, a highly effective method for target sequence enrichment.
![Artist impression of a combination of data science (zeros and ones) and a DNA strain / helix](https://www.keygene.com/wp-content/uploads/2018/02/dna-technique-2-1024x389.jpg)
Covalently closing DNA strands by TelN for NGS library preparation
TelN adapters / primers for NGS library preparation for amplification free enrichment of target sequences.
![Cracks in dry soil](https://www.keygene.com/wp-content/uploads/2023/07/drought-lr-shutterstock_77506255-1024x657.jpg)
Improving drought resistance: pectinesterase
For plants with increased drought resistance by impairing the expression of functional pectinesterase.
![Picture representing KeyGene's technology innovation in semi solid state for nucleic acid handling](https://www.keygene.com/wp-content/uploads/2024/03/p221-semi-solid-state-high-res-1024x696.png)
Semi-solid state for nucleic acid handling
For methods and kits for HMW nucleic acid library preparation, effectively reducing shear stress.
![Image of an enriched DNA sequencing experiment](https://www.keygene.com/wp-content/uploads/2023/10/tarseq_example_including_grna_and_target_region-square.jpg)
Targeted Sequence Addition
Versatile method for the labelling of a target nucleic acid fragment for targeted sequence library preparation
![](https://www.keygene.com/wp-content/uploads/2023/01/event-2.png)
Shoot regeneration by CHK genes
Method to increase shoot regeneration by overexpressing genes for histidine kinases
![Regenerating tomato callus in a petri dish](https://www.keygene.com/wp-content/uploads/2023/07/regenerating-tomato-callus-for-poster-1024x768.jpg)
Dual guide for CRISPR editing of plant cells
Effective genome editing CRISPR system nuclease guided by non-covalently linked, crRNA and tracrRNA
![Protoplasts seen through a microscope](https://www.keygene.com/wp-content/uploads/2023/03/protoplasten-vergroot-1024x656.jpg)
Genes for hormone free regeneration
Transient expression of 2 genes circumvents the need for cytokinin and auxin
![A pile of chicory tap roots, freshly harvested, square picture](https://www.keygene.com/wp-content/uploads/2023/07/chicory-shutterstock_738779494-lr-scaled-e1693225164676-1024x1024.jpg)
Germacrene A Synthase mutants
Decreased sesquiterpene lactones and increased levels of squalene & phenolic compounds
![Purple protoplasts (plant cells without a cell wall) on a black background (thanks to fluorescence )](https://www.keygene.com/wp-content/uploads/2022/11/protoplasten-vergroot-purple-chloroplasts-1024x656.jpg)
Mad7 for genome editing in plant cells
Highly effective Type V CRISPR system for plant cell genome editing
![Picture of KeyGene's technology innovation 'Genome editing for altered protein function'](https://www.keygene.com/wp-content/uploads/2023/07/genome-editing-creating-indel-square.png)
Genome editing for altered protein function
Editing of a coding sequence by two site-specific nucleases that causes a frameshift
![Artist's impression of a Crispr CAS action in DNA, showing the DNA to be cut, the guide RNA that brings the cutting protein to the right place, and the cutting protein](https://www.keygene.com/wp-content/uploads/2023/07/dna-replication-lr-shutterstock_1103833505-1024x768.jpg)
Genome editing by programmed deaminases
Genome editing using cysteine or adenine deaminase fused to a site-specific nuclease e.g. a CAS
![Artist impression of a guided protein cutting a double DNA strain / helix](https://www.keygene.com/wp-content/uploads/2023/03/crispr-dna-editing-lr-shutterstock_1202782540-1024x577.jpg)
Glycerol-free transfection of CRISPR complex
Glycerol free genome editing of protoplasts using CRISPR-CAS protein and in vitro transcribed gRNA
![Colored chromosomes, seen through a microscope](https://www.keygene.com/wp-content/uploads/2023/07/chromosomes-seen-through-microscope-shutterstock_759402886-lr-1024x778.jpg)
Targeted translocation
Translocation between 2 homologous/homeologous chromosomes via double-strand break and rejoining
![Artist's impression of poly ethylene glycol (PEG) molecules](https://www.keygene.com/wp-content/uploads/2023/07/peg-poly-ethylene-glycol-shutterstock_2202150177-lr-1024x683.jpg)
Oligonucleotide-delivery to protoplasts
Method to effectively deliver mutagenic nucleobases to plant protoplasts using polyethylene glycol
![Very low number of seedlings of a standard hybridisation in producting seeds for root stocks (left) and a very high number of seedlings after using a motherplant with the skin of another plant](https://www.keygene.com/wp-content/uploads/2023/07/p168_sumo.png)
Improved seed germination
Seeds with improved germination quality, by pollination of graft hybrid mother plants.
![Experiment in the research on 2S1 hybrid grafting](https://www.keygene.com/wp-content/uploads/2023/07/p186-graft-e1689078679630.png)
2S1 Graft hybrid technology
Plants with improved epidermis-based complex traits, e.g. biotic stress resistance
![Representation of a virtual greenhouse](https://www.keygene.com/wp-content/uploads/2023/07/automatoes11-1024x641.png)
Virtual reality greenhouse
3D visualization of individual plants and association with plant characteristic data
![Farmer in Asia, planting rice in dry soil](https://www.keygene.com/wp-content/uploads/2023/07/drought-rice-shutterstock_207178483-lr-1024x683.jpg)
Improving Drought Resistance in Plants: UPL3
Plants with increased drought resistance by impairing the expression of functional UPL3
![Dry soil showing cracks in the top layer and a dead tree](https://www.keygene.com/wp-content/uploads/2023/07/drought-lr-pixabay-279862-1024x698.jpg)
Improving drought resistance in plants: UPL4
Plants with increased drought resistance by impairing the expression of functional UPL4
![Small tube (eb) with visible DNA](https://www.keygene.com/wp-content/uploads/2021/04/dna-precipitate-shutterstock_33038305-1024x683-1.jpg)
Accurately amplifying mixtures of probes
Production of oligonucleotides, in particular targeting oligonucleotides or nucleic acid probes.
![Image illustrating KeyGene's technology innovation called SNP Select](https://www.keygene.com/wp-content/uploads/2023/07/snpselect-2-1024x767.png)
SNPSelect
Genotyping, based upon locus & allele identifiers; a way to amplify and process DNA into probes
![Artist's impression of chromosomes](https://www.keygene.com/wp-content/uploads/2023/02/chromosomes-shutterstock_621958646-lr-1024x724.jpg)
Directed genomic selection
Genomic selection using genome-wide complementarity, taking into account recombination probabilities
![Login screen of CroPedia](https://www.keygene.com/wp-content/uploads/2023/06/croppedia-screen-square.jpg)
CropPedia data visualisation & management
Interactive genomics data management and visualization system
![Hand holding a small tube in a laboratory](https://www.keygene.com/wp-content/uploads/2023/04/gloved-hand-with-small-tube-shutterstock_2402754441-lr-1024x768.jpg)
Combinatorial barcodes
At least two nucleotide sequence barcodes, for identifying sample origin in NGS.
![Artist's impression of a DNA helix](https://www.keygene.com/wp-content/uploads/2017/10/dark-green-dna-175x124.jpg)
KeyPoint® Breeding
Multiplex detection of variation of genes / loci of interest, based on high throughput sequencing.
Page builder element 'All impacts'
KeyGene's impact
![Hand holding rice ears in the research greenhouse of KeyGene, picture made by Johana Acevedo](https://www.keygene.com/wp-content/uploads/2023/07/rice-johanna-20190228_135048_lr-1024x768.jpg)
Hybrid rice for farmers in India
Experts from KeyGene and Bioseed, DCM Shriram in India, developed rice lines that can be used to breed hybrid varieties that meet the demands of Indian rice farmers.
![Microscopy picture by Kitty Vijverberg of a dandelion egg cell](https://www.keygene.com/wp-content/uploads/2023/07/paardenbloem-eicel-kitty-vijverberg-cropped-1024x542.jpg)
Genetics unraveled crucial to making crop plants produce clonal seeds through apomixis
Thanks to over 15 years of fundamental research at KeyGene, breakthroughs were achieved in understanding and using genes crucial to develop crop plants that produce 'clonal' seeds through apomixis.
![Chicory tap roots in a box in the field](https://www.keygene.com/wp-content/uploads/2021/08/sensus-chicory-okt17-hr08-lr2-1024x683-1.jpg)
Genome editing successfully used to induce chicory plants to accumulate important medical compound
KeyGene, Wageningen University & Research, and Leibniz Institute of Plant Biochemistry in Germany, have induced desired variation in chicory for plants that accumulate costunolide, an anti cancer plant metabolite.
![Graph showing the telomere-to-telomere sequenced chromosomes of tomato](https://www.keygene.com/wp-content/uploads/2023/06/graph_jt-293x300-1.jpg)
Telomere-to-telomere crop genomes using only one DNA sequencing platform
Collaboration between KeyGene scientists and the Telomere to Telomere consortium (studying the human genome) has resulted in telomere-to-telomere crop genomes of tomato and maize, using one sequencing technology.
![Breeding scheme, showing the complexity of making an effective breeding program](https://www.keygene.com/wp-content/uploads/2023/03/scheme1.jpg)
KeyGene’s breeding optimizer integrated in PhenomeOne software package for breeders
Based upon KeyGene’s breeding optimizing algorithm, Phenome Networks offers a new decision support tool to optimize breeding strategies for any crop, within their PhenomeOne software.
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![](https://www.keygene.com/wp-content/uploads/2023/07/hand-and-germinating-seedling-shutterstock_766675285-lr-scaled.jpg)
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Contact usPage builder element 'Locations'
Our locations
This is how and where you can find and meet KeyGene's team
Wageningen, NL
KeyGene HQ
Visit
Agro Business Park 90
6708 PW Wageningen
The Netherlands
P.O. Box 216
6700 AE, Wageningen
The Netherlands
![](https://www.keygene.com/wp-content/uploads/2023/06/keygene-building-editted.jpg)
![](https://www.keygene.com/wp-content/uploads/2023/06/keygene-usa-2023-5-scaled.jpg)
Hyderabad, IN
Visit
The Executive Centre (TEC), Level 1, Building-Orwell 2 Salarpuria
Sattva Knowledge City, Plot No.2, Inorbit Mall Road
Telangana, India, Hitech City, Hyderabad 500 081
India
![](https://www.keygene.com/wp-content/uploads/2023/06/hyderabad_salarpuria_knowledge_city.jpg)
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