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Living Modified Organism (LMO)
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BCH-LMO-SCBD-299621-1   |   PDF   |   Print   |  
Decisions on the LMO Risk Assessments  
last updated: 25 Jun 2026
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.
Roundup Ready™ Liberty Link™ soybean
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GTS 40-3-2 x A5547-127
Yes
MON-Ø4Ø32-6 x ACSGMØØ6- 4
The soy (Glycine max) was produced through cross breeding of modified parental varieties GTS 40-3-2 and A5547-127. For tolerance to glyphosate, the soybean expresses the CP4 5-enolpyruvylshikimate-3-phosphate synthase (CP4 EPSPS) protein derived from Agrobacterium tumefaciens strain CP4. The CP4 EPSPS protein has reduced affinity for glyphosate and allows continued synthesis of aromatic amino acids through the shikimate pathway in the presence of the herbicide. For tolerance to glufosinate, the soybean expresses phosphinothricin N-acetyltransferase (PAT), encoded by the pat gene derived from Streptomyces viridochromogenes. The PAT enzyme inactivates glufosinate by acetylation, thereby preventing inhibition of glutamine synthetase and allowing normal plant growth following herbicide application.
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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.
  • BCH-LMO-SCBD-14796-15 Living Modified Organism MON-Ø4Ø32-6 - Roundup Ready™ soybean
    Monsanto | Resistance to herbicides (Glyphosate)
  • BCH-LMO-SCBD-14857-8 Living Modified Organism ACS-GMØØ6-4 - Liberty Link™ soybean
    Bayer CropScience | Resistance to herbicides (Glufosinate)
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Characteristics of the modification process
PV-GMGT04 and pB2/35SAcK
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  • Agrobacterium-mediated DNA transfer
  • Biolistic / Particle gun
  • Cross breeding
Some of these genetic elements may be present as fragments or truncated forms. Please see notes below, where applicable.
DNA insert from MON-Ø4Ø32-6

The transforming plasmid PV-GMGT04 contained a transfer DNA (T-DNA) region comprising an expression cassette encoding the glyphosate tolerance protein CP4 5-enolpyruvylshikimate-3-phosphate synthase (CP4 EPSPS), derived from Agrobacterium tumefaciens strain CP4. Transformation of soybean was achieved through particle bombardment.
-Transcription of the cp4 epspscoding sequence is directed by an enhanced 35S promoter from Cauliflower mosaic virus. The coding region includes the chloroplast transit peptide CTP4 derived from Petunia hybrida, which directs the expressed protein to the chloroplast. Transcription is terminated by the nopaline synthase (NOS) terminator from Agrobacterium tumefaciens. Expression of this cassette results in production of the CP4 EPSPS protein, which has reduced affinity for glyphosate and allows continued synthesis of aromatic amino acids through the shikimate pathway in the presence of the herbicide.

Note:
Molecular characterization demonstrated that a single functional copy of the intended transformation cassette containing the cp4 epsps coding sequence was integrated into the soybean genome. Analysis indicated that no vector backbone DNA was integrated.

DNA insert from ACS-GMØØ6-4

The transforming plasmid pB2/35SAcK (also designated pWRG5143) contained an expression cassette encoding phosphinothricin N-acetyltransferase (PAT), derived from Streptomyces viridochromogenes. Transformation of soybean was achieved through particle bombardment.
-Transcription of the pat coding sequence is directed by the 35S promoter from Cauliflower mosaic virus. Transcription is terminated by the 35S terminator from Cauliflower mosaic virus. Expression of this cassette results in production of the PAT protein, which inactivates glufosinate through acetylation, thereby preventing inhibition of glutamine synthetase and allowing normal plant growth following herbicide application.

Note:
Molecular characterization demonstrated that a single copy of the pat expression cassette was integrated into the soybean genome. Partial fragments of the bla gene were also detected flanking the pat cassette; however, these fragments are not expressed in the host organism.

For additional information on the molecular characterization of these inserts, kindly refer to the parental LMO records.

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LMO characteristics
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  • Feed
  • Food
Detection method(s)
The presence of each individual event can be detected by PCR using oligonucleotide sequences specific to each event. In this case, the method is based on detecting the simultaneous presence of each individual event from DNA extracted from a single biological sample.
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Additional Information
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