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Modified Organism
Oilseed rape modified for an altered fatty acid metabolism in the seeds
Record information and status
Record ID
110918
Status
Published
Date of creation
2016-09-12 10:36 UTC (german_bch@bvl.bund.de)
Date of publication
2016-09-20 16:26 UTC (dina.abdelhakim@cbd.int)

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Living Modified Organism identity
The image below identifies the LMO through its unique identifier, trade name and a link to this page of the BCH. Click on it to download a larger image on your computer. For help on how to use it go to the LMO quick-links page.

LMO name
Oilseed rape modified for an altered fatty acid metabolism in the seeds
Transformation event
independent transgenic lines transformed with pNKAT55
Developer(s)
DSV
Deutsche Saatveredelung AG (DSV)
Weissenburger Straße 5
59557 Lippstadt
Lippstadt
Germany, 59557
Phone:+49 2941 2960
Fax:+49 2941 296100
Email:info@dsv-saaten.de
Url:https://www.dsv-saaten.de/
Description
In the genetically modified oilseed rape ß-ketoacyl synthase, which catalyses the elongation of oleic acid (C18:1) to ecrucic acid (C22:1), is seed-specifically expressed along with lysophosphatidic acid acyltransferase, which specifically catalyses the linkage of erucic acid to the sn-2 position of lysophosphatidic acid.

As a result of the genetic modification it is expected that the synthesis of erucic acid in combination with the presence of lysophosphatidic acid acyltransferase will lead to enhancement of the production of trierucin in the seeds.
Recipient Organism or Parental Organisms
The term Recipient organism refers to an organism (either already modified or non-modified) that was subjected to genetic modification, whereas Parental organisms refers to those that were involved in cross breeding or cell fusion.
Brassica napus - Turnip, Rapeseed, Canola Plant, Oilseed Rape, Rape, BRANA
Related LMOs
Brassica napus modified for altered fatty acid metabolism
BAZ Changes in quality and/or metabolite content - Lipid and fatty acids Resistance to antibiotics - Kanamycin
Oilseed rape modified for an altered fatty acid metabolism in the seeds
DSV Changes in quality and/or metabolite content - Lipid and fatty acids Resistance to antibiotics - Kanamycin
Oilseed rape modified for an altered fatty acid metabolism in the seeds
DSV Changes in quality and/or metabolite content - Lipid and fatty acids Resistance to antibiotics - Kanamycin
Oilseed rape modified for an altered fatty acid metabolism in the seeds
DSV Changes in quality and/or metabolite content - Lipid and fatty acids Resistance to antibiotics - Kanamycin
Oilseed rape modified for an altered fatty acid metabolism in the seeds
DSV Changes in quality and/or metabolite content - Lipid and fatty acids Resistance to antibiotics - Kanamycin
Oilseed rape modified for an altered fatty acid metabolism in the seeds
DSV Changes in quality and/or metabolite content - Lipid and fatty acids Resistance to antibiotics - Kanamycin
Oilseed rape modified for an altered fatty acid metabolism in the seeds
DSV Changes in quality and/or metabolite content - Lipid and fatty acids Resistance to antibiotics - Kanamycin
Oilseed rape modified for an altered fatty acid metabolism in the seeds
DSV Changes in quality and/or metabolite content - Lipid and fatty acids Resistance to antibiotics - Kanamycin
Characteristics of the transformation process
Vector
pNKAT55
Techniques used for the modification
  • Agrobacterium-mediated DNA transfer
Genetic elements construct
 
Napin gene promoter
0.00 Kb
 
 
1-acyl-sn-glycerol-3-phosphate acyltransferase coding sequence
0.00 Kb
 
 
Napin gene terminator
0.00 Kb
 
 
Napin gene promoter
0.00 Kb
 
 
Beta-ketoacyl-CoA synthase gene
0.00 Kb
 
 
CaMV 35S promoter
0.00 Kb
 
 
Neomycin Phosphotransferase II
0.00 Kb
 
 
CaMV 35S promoter
0.00 Kb
 
Further details
LMO characteristics
Modified traits
Common use(s)
  • Research
Additional Information
Other relevant website address or attached documents

Records referencing this document (9)
IDDescription
9record(s) found
Country's Decision or any other Communication1 record
Modified Organism7 records
Risk Assessment1 record