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A shotgun metagenomics approach to detect and characterize unauthorized genetically modified microorganisms in microbial fermentation products

The presence of a genetically modified microorganism (GMM) or its DNA, often harboring antimicrobial resistance (AMR) genes, in microbial fermentation products on the market is prohibited by European regulations. GMMs are currently screened for through qPCR assays targeting AMR genes and vectors, an...

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Autores principales: Buytaers, Florence E., Fraiture, Marie-Alice, Berbers, Bas, Vandermassen, Els, Hoffman, Stefan, Papazova, Nina, Vanneste, Kevin, Marchal, Kathleen, Roosens, Nancy H.C., De Keersmaecker, Sigrid C.J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8991599/
https://www.ncbi.nlm.nih.gov/pubmed/35415629
http://dx.doi.org/10.1016/j.fochms.2021.100023
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author Buytaers, Florence E.
Fraiture, Marie-Alice
Berbers, Bas
Vandermassen, Els
Hoffman, Stefan
Papazova, Nina
Vanneste, Kevin
Marchal, Kathleen
Roosens, Nancy H.C.
De Keersmaecker, Sigrid C.J.
author_facet Buytaers, Florence E.
Fraiture, Marie-Alice
Berbers, Bas
Vandermassen, Els
Hoffman, Stefan
Papazova, Nina
Vanneste, Kevin
Marchal, Kathleen
Roosens, Nancy H.C.
De Keersmaecker, Sigrid C.J.
author_sort Buytaers, Florence E.
collection PubMed
description The presence of a genetically modified microorganism (GMM) or its DNA, often harboring antimicrobial resistance (AMR) genes, in microbial fermentation products on the market is prohibited by European regulations. GMMs are currently screened for through qPCR assays targeting AMR genes and vectors, and then confirmed by targeting known specific GM constructs/events. However, when the GMM was not previously characterized and an isolate cannot be obtained, its presence cannot be proven. We present a metagenomics approach capable of delivering the proof of presence of a GMM in a microbial fermentation product, with characterization based on the detection of AMR genes and vectors, species and unnatural associations in the GMM genome. In our proof-of-concept study, this approach was performed on a case with a previously isolated and sequenced GMM, an unresolved case for which no isolate was obtained, and a non-GMM-contaminated sample, all representative for the possible scenarios to occur in routine setting. Both short and long read sequencing were used. This workflow paves the way for a strategy to detect and characterize unknown GMMs by enforcement laboratories.
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spelling pubmed-89915992022-04-11 A shotgun metagenomics approach to detect and characterize unauthorized genetically modified microorganisms in microbial fermentation products Buytaers, Florence E. Fraiture, Marie-Alice Berbers, Bas Vandermassen, Els Hoffman, Stefan Papazova, Nina Vanneste, Kevin Marchal, Kathleen Roosens, Nancy H.C. De Keersmaecker, Sigrid C.J. Food Chem (Oxf) Research Article The presence of a genetically modified microorganism (GMM) or its DNA, often harboring antimicrobial resistance (AMR) genes, in microbial fermentation products on the market is prohibited by European regulations. GMMs are currently screened for through qPCR assays targeting AMR genes and vectors, and then confirmed by targeting known specific GM constructs/events. However, when the GMM was not previously characterized and an isolate cannot be obtained, its presence cannot be proven. We present a metagenomics approach capable of delivering the proof of presence of a GMM in a microbial fermentation product, with characterization based on the detection of AMR genes and vectors, species and unnatural associations in the GMM genome. In our proof-of-concept study, this approach was performed on a case with a previously isolated and sequenced GMM, an unresolved case for which no isolate was obtained, and a non-GMM-contaminated sample, all representative for the possible scenarios to occur in routine setting. Both short and long read sequencing were used. This workflow paves the way for a strategy to detect and characterize unknown GMMs by enforcement laboratories. Elsevier 2021-04-21 /pmc/articles/PMC8991599/ /pubmed/35415629 http://dx.doi.org/10.1016/j.fochms.2021.100023 Text en © 2021 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Buytaers, Florence E.
Fraiture, Marie-Alice
Berbers, Bas
Vandermassen, Els
Hoffman, Stefan
Papazova, Nina
Vanneste, Kevin
Marchal, Kathleen
Roosens, Nancy H.C.
De Keersmaecker, Sigrid C.J.
A shotgun metagenomics approach to detect and characterize unauthorized genetically modified microorganisms in microbial fermentation products
title A shotgun metagenomics approach to detect and characterize unauthorized genetically modified microorganisms in microbial fermentation products
title_full A shotgun metagenomics approach to detect and characterize unauthorized genetically modified microorganisms in microbial fermentation products
title_fullStr A shotgun metagenomics approach to detect and characterize unauthorized genetically modified microorganisms in microbial fermentation products
title_full_unstemmed A shotgun metagenomics approach to detect and characterize unauthorized genetically modified microorganisms in microbial fermentation products
title_short A shotgun metagenomics approach to detect and characterize unauthorized genetically modified microorganisms in microbial fermentation products
title_sort shotgun metagenomics approach to detect and characterize unauthorized genetically modified microorganisms in microbial fermentation products
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8991599/
https://www.ncbi.nlm.nih.gov/pubmed/35415629
http://dx.doi.org/10.1016/j.fochms.2021.100023
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