Abstract Maize 5307 was developed by Agrobacterium tumefaciens‐mediated transformation to express two proteins: eCry3.1Ab, conferring resistance to certain coleopteran pests, and phosphomannose isomerase (PMI), used as selection marker. The molecular characterisation showed relevant similarities between the amino acid sequence of PMI and a known allergen, and between the amino acid sequence of eCry3.1Ab and a potential toxin. Some agronomic and phenotypic differences between maize 5307 and its conventional counterpart were observed (higher ‘heat units to 50 % pollen shed’, grain moisture, plant height, grain yield); however, the EFSA GMO Panel considered that these do not give rise to food/feed or environmental safety concerns. No differenc...
In this opinion, the EFSA Panelon Genetically Modified Organisms (GMO Panel) assessed the three-even...
In this opinion, the EFSA GMO Panel assesses the five-event stack maize and 20 of its subcombination...
The EFSA GMO Panel previously assessed the four single events combined to produce a four-event stack...
Maize 5307 was developed by Agrobacterium tumefaciens-mediated transformation to express two protein...
Maize MON 87427 was developed by Agrobacterium tumefaciens-mediated transformation to express the CP...
Maize MON 87427 was developed by Agrobacterium tumefaciens-mediated transformation to express the CP...
Maize DAS-40278-9 was developed by direct Whiskers-mediated transformation to express the aryloxyalk...
Maize 4114 was developed through Agrobacterium tumefaciens-mediated transformation to provide protec...
Maize DAS-40278-9 was developed by direct Whiskers-mediated transformation to express the aryloxyalk...
aize 4114 was developed through Agrobacterium tumefaciens-mediated transformation to provide protect...
Maize MON 87411 was developed to confer resistance to corn rootworms (Diabrotica spp.) by the expres...
Abstract The scope of application EFSA‐GMO‐DE‐2016‐133 is for food and feed uses, import and process...
In this opinion, the EFSA Panelon Genetically Modified Organisms (GMO Panel) assessed the three-even...
In this opinion, the EFSA GMO Panel assesses the five-event stack maize and 20 of its subcombination...
The EFSA GMO Panel previously assessed the four single events combined to produce a four-event stack...
Maize 5307 was developed by Agrobacterium tumefaciens-mediated transformation to express two protein...
Maize MON 87427 was developed by Agrobacterium tumefaciens-mediated transformation to express the CP...
Maize MON 87427 was developed by Agrobacterium tumefaciens-mediated transformation to express the CP...
Maize DAS-40278-9 was developed by direct Whiskers-mediated transformation to express the aryloxyalk...
Maize 4114 was developed through Agrobacterium tumefaciens-mediated transformation to provide protec...
Maize DAS-40278-9 was developed by direct Whiskers-mediated transformation to express the aryloxyalk...
aize 4114 was developed through Agrobacterium tumefaciens-mediated transformation to provide protect...
Maize MON 87411 was developed to confer resistance to corn rootworms (Diabrotica spp.) by the expres...
Abstract The scope of application EFSA‐GMO‐DE‐2016‐133 is for food and feed uses, import and process...
In this opinion, the EFSA Panelon Genetically Modified Organisms (GMO Panel) assessed the three-even...
In this opinion, the EFSA GMO Panel assesses the five-event stack maize and 20 of its subcombination...
The EFSA GMO Panel previously assessed the four single events combined to produce a four-event stack...