Following the submission of application EFSA‐GMO‐RX‐010 under Regulation (EC) No 1829/2003 from Bayer, the Panel on Genetically Modified Organisms of the European Food Safety Authority (GMO Panel) was asked to deliver a scientific risk assessment on the d ...
The GMO Panel has previously assessed genetically modified (GM) soybean BPS‐CV127‐9. This soybean was found to be as safe and nutritious as its conventional counterpart and commercial soybean varieties with respect to potential effects on human and animal ...
The GMO Panel has previously assessed genetically modified (GM) carnation FLO‐40689‐6 and concluded that there is no scientific reason to consider that the import, distribution and retailing in the EU of carnation FLO‐40689‐6 cut flowers for ornamental us ...
Soybean MON 87751 was developed through Agrobacterium tumefaciens ‐mediated transformation to provide protection certain specific lepidopteran pests by the expression of the Cry1A.105 and Cry2Ab2 proteins derived from Bacillus thuringiensis. The molecular ...
Following the submission of application EFSA‐GMO‐RX‐008 under Regulation (EC) No 1829/2003 from Pioneer Hi‐Bred International, Inc. and Dow AgroSciences LLC, the Panel on Genetically Modified Organisms of the European Food Safety Authority was asked to de ...
The three‐event stack cotton GHB614 × T304‐40 × GHB119 was produced by conventional crossing to combine three single events, GHB614, T304‐40 and GHB119. The genetically modified organisms (GMO) Panel previously assessed the three single cotton events and ...
In this opinion, the GMO Panel assessed the four‐event stack maize Bt11 × MIR162 × 1507 × GA21 and three of its subcombinations, independently of their origin. The GMO Panel previously assessed the four single events and seven of their combinations and di ...
As part of the risk assessment (RA) requirements for genetically modified (GM) plants, according to Regulation (EU) No 503/2013 and the EFSA guidance on the RA of food and feed from GM plants (EFSA GMO Panel, 2011), applicants need to perform a molecular ...
Maize MON 87411 was developed to confer resistance to corn rootworms (Diabrotica spp.) by the expression of a modified version of the Bacillus thuringiensis cry3Bb1 gene and a DvSnf7 dsRNA expression cassette, and tolerance to glyphosate‐containing herb ...
Maize 4114 was developed through Agrobacterium tumefaciens ‐mediated transformation to provide protection against certain lepidopteran and coleopteran pests by expression of the Cry1F, Cry34Ab1 and Cry35Ab1 proteins derived from Bacillus thuringiensis, an ...