Loading...
This record has been deleted. Since it is linked to a published record, it is available here for reference purposes only.
Click here to view the deleted recordThis document has been updated. This is not the latest published version. Click here to view the latest version of the record.
Risk Assessment generated by a regulatory process
(RA)
last updated: 29 Jan 2026
Bt11 x MIR162
EN
04 Dec 2022
-
Competent National Authority:Food and Drug Administration ()Tiwanon Rd., Muang DistrictNonthaburi,
11000, ThailandPhone: +66 2 590 7175,Fax: +66 2 591 8460,Email: food@fda.moph.go.th,Website: http://www.fda.moph.go.th,
-
- Organization: National Center for Genetic Engineering and Biotechnology, National Science and Technology Development Agency (NSTDA) | BCH-CON-TH-244493-1Organization:National Center for Genetic Engineering and Biotechnology, National Science and Technology Development Agency (NSTDA)Government agency (National/Federal)113 Thailand Science Park, Phahonyothin Rd., Klong 1, Klong LuangPathumthani,
12120, ThailandPhone: +66 2564 6700 ext 3372,Fax: +66 2564 6703,Email: biosafety@biotec.or.th,Website: http://biotec.or.th,
-
SYN-BTØ11-1 × SYN-IR162-4 - Insect Resistant Maize| Syngenta Seeds GmbH | Resistance to diseases and pests (Insects, Lepidoptera (butterflies and moths)), Resistance to herbicides (Glufosinate), Selectable marker genes and reporter genes
- https://food.fda.moph.go.th/bch/corn29-24 [ English ]
The stacked event Bt11 × MIR162 maize obtained from conventional breeding of the genetically modified maize events Bt11 and MIR162 to express Bt-toxin (Cry1Ab protein) which provide protection to European corn borer (ECB) and enzyme phosphinothricin N-acetyl transferase (PAT) which confers tolerance to glufosinate-ammonium herbicide and Vip3Aa20 protein which provide protection to certain lepidopteran pests PAT protein used as a selectable marker enabling identification of transformed plant cells as well as a source of resistance to the herbicide known as glufosinate ammonium. According to the existing scientific data and information available during the safety assessment, it is concluded that the stacked event Bt11 × MIR162 × MIR604 × GA21 maize is expected to be as safe as the single events that has previously been assessed by the food biosafety subcommittee and technical biosafety committee of the National Center for Genetic Engineering and Biotechnology (BIOTEC).
Yes
Yes
Yes
EN
| Record type | Field | Record(s) | |
|---|---|---|---|
| Country's Decision or any other Communication | Risk assessment | 1 | |