Cargando…

Risk assessment of a new bioinformatics evaluation of the insertion sites of genetically modified soybean event 40‐3‐2

Genetically modified (GM) soybean 40‐3‐2 expresses a 5‐enolpyruvylshikimate‐3‐phosphate synthase protein from Agrobacterium sp. strain CP4 (CP4 EPSPS), which confers tolerance to glyphosate. This event was previously assessed by the GMO Panel as a single event and as part of a two‐event stack and wa...

Descripción completa

Detalles Bibliográficos
Autores principales: Mullins, Ewen, Bresson, Jean‐Louis, Dalmay, Tamas, Dewhurst, Ian Crawford, Epstein, Michelle M, Firbank, Leslie George, Guerche, Philippe, Hejatko, Jan, Moreno, Francisco Javier, Naegeli, Hanspeter, Nogué, Fabien, Rostoks, Nils, Sánchez Serrano, Jose Juan, Savoini, Giovanni, Veromann, Eve, Veronesi, Fabio, Goumperis, Tilemachos, Raffaello, Tommaso
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9305392/
https://www.ncbi.nlm.nih.gov/pubmed/35898294
http://dx.doi.org/10.2903/j.efsa.2022.7412
_version_ 1784752314197737472
author Mullins, Ewen
Bresson, Jean‐Louis
Dalmay, Tamas
Dewhurst, Ian Crawford
Epstein, Michelle M
Firbank, Leslie George
Guerche, Philippe
Hejatko, Jan
Moreno, Francisco Javier
Naegeli, Hanspeter
Nogué, Fabien
Rostoks, Nils
Sánchez Serrano, Jose Juan
Savoini, Giovanni
Veromann, Eve
Veronesi, Fabio
Goumperis, Tilemachos
Raffaello, Tommaso
author_facet Mullins, Ewen
Bresson, Jean‐Louis
Dalmay, Tamas
Dewhurst, Ian Crawford
Epstein, Michelle M
Firbank, Leslie George
Guerche, Philippe
Hejatko, Jan
Moreno, Francisco Javier
Naegeli, Hanspeter
Nogué, Fabien
Rostoks, Nils
Sánchez Serrano, Jose Juan
Savoini, Giovanni
Veromann, Eve
Veronesi, Fabio
Goumperis, Tilemachos
Raffaello, Tommaso
collection PubMed
description Genetically modified (GM) soybean 40‐3‐2 expresses a 5‐enolpyruvylshikimate‐3‐phosphate synthase protein from Agrobacterium sp. strain CP4 (CP4 EPSPS), which confers tolerance to glyphosate. This event was previously assessed by the GMO Panel as a single event and as part of a two‐event stack and was found to be as safe as its conventional counterparts and other appropriate comparators with respect to potential effects on human and animal health and the environment. On September 2021, the European Commission requested EFSA to evaluate a new bioinformatics study which revealed predicted genomic deletions at the insertion sites using the available soybean reference genome. Considering the variability of the soybean genome, with a number of structural variants such as presence/absence variants and copy number variants including genic regions, as well as the fact that a number of genes are present only in particular varieties, the GMO Panel concludes that comparing only to the reference genome does not allow to conclude that the transformation event resulted in gene loss. In support of this, the transcriptomic analysis did not show major differences in gene expression when comparing the soybean 40‐3‐2 with the most closely related conventional variety, indicating that the genetic redundancy may compensate for the potential gene loss. Moreover, the composition, phenotypic and agronomic analyses already assessed by the GMO Panel in previous opinions did not show differences between soybean 40‐3‐2 and its comparators suggesting that the potential gene loss may not have a significant phenotypic effect in soybean 40‐3‐2. For these reasons, the EFSA GMO Panel concludes that the new information provided by the applicant on soybean 40‐3‐2 does not alter EFSA's previous conclusions.
format Online
Article
Text
id pubmed-9305392
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-93053922022-07-26 Risk assessment of a new bioinformatics evaluation of the insertion sites of genetically modified soybean event 40‐3‐2 Mullins, Ewen Bresson, Jean‐Louis Dalmay, Tamas Dewhurst, Ian Crawford Epstein, Michelle M Firbank, Leslie George Guerche, Philippe Hejatko, Jan Moreno, Francisco Javier Naegeli, Hanspeter Nogué, Fabien Rostoks, Nils Sánchez Serrano, Jose Juan Savoini, Giovanni Veromann, Eve Veronesi, Fabio Goumperis, Tilemachos Raffaello, Tommaso EFSA J Statement Genetically modified (GM) soybean 40‐3‐2 expresses a 5‐enolpyruvylshikimate‐3‐phosphate synthase protein from Agrobacterium sp. strain CP4 (CP4 EPSPS), which confers tolerance to glyphosate. This event was previously assessed by the GMO Panel as a single event and as part of a two‐event stack and was found to be as safe as its conventional counterparts and other appropriate comparators with respect to potential effects on human and animal health and the environment. On September 2021, the European Commission requested EFSA to evaluate a new bioinformatics study which revealed predicted genomic deletions at the insertion sites using the available soybean reference genome. Considering the variability of the soybean genome, with a number of structural variants such as presence/absence variants and copy number variants including genic regions, as well as the fact that a number of genes are present only in particular varieties, the GMO Panel concludes that comparing only to the reference genome does not allow to conclude that the transformation event resulted in gene loss. In support of this, the transcriptomic analysis did not show major differences in gene expression when comparing the soybean 40‐3‐2 with the most closely related conventional variety, indicating that the genetic redundancy may compensate for the potential gene loss. Moreover, the composition, phenotypic and agronomic analyses already assessed by the GMO Panel in previous opinions did not show differences between soybean 40‐3‐2 and its comparators suggesting that the potential gene loss may not have a significant phenotypic effect in soybean 40‐3‐2. For these reasons, the EFSA GMO Panel concludes that the new information provided by the applicant on soybean 40‐3‐2 does not alter EFSA's previous conclusions. John Wiley and Sons Inc. 2022-07-22 /pmc/articles/PMC9305392/ /pubmed/35898294 http://dx.doi.org/10.2903/j.efsa.2022.7412 Text en © 2022 Wiley‐VCH Verlag GmbH & Co. KgaA on behalf of the European Food Safety Authority. https://creativecommons.org/licenses/by-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nd/4.0/ (https://creativecommons.org/licenses/by-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited and no modifications or adaptations are made.
spellingShingle Statement
Mullins, Ewen
Bresson, Jean‐Louis
Dalmay, Tamas
Dewhurst, Ian Crawford
Epstein, Michelle M
Firbank, Leslie George
Guerche, Philippe
Hejatko, Jan
Moreno, Francisco Javier
Naegeli, Hanspeter
Nogué, Fabien
Rostoks, Nils
Sánchez Serrano, Jose Juan
Savoini, Giovanni
Veromann, Eve
Veronesi, Fabio
Goumperis, Tilemachos
Raffaello, Tommaso
Risk assessment of a new bioinformatics evaluation of the insertion sites of genetically modified soybean event 40‐3‐2
title Risk assessment of a new bioinformatics evaluation of the insertion sites of genetically modified soybean event 40‐3‐2
title_full Risk assessment of a new bioinformatics evaluation of the insertion sites of genetically modified soybean event 40‐3‐2
title_fullStr Risk assessment of a new bioinformatics evaluation of the insertion sites of genetically modified soybean event 40‐3‐2
title_full_unstemmed Risk assessment of a new bioinformatics evaluation of the insertion sites of genetically modified soybean event 40‐3‐2
title_short Risk assessment of a new bioinformatics evaluation of the insertion sites of genetically modified soybean event 40‐3‐2
title_sort risk assessment of a new bioinformatics evaluation of the insertion sites of genetically modified soybean event 40‐3‐2
topic Statement
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9305392/
https://www.ncbi.nlm.nih.gov/pubmed/35898294
http://dx.doi.org/10.2903/j.efsa.2022.7412
work_keys_str_mv AT riskassessmentofanewbioinformaticsevaluationoftheinsertionsitesofgeneticallymodifiedsoybeanevent4032
AT mullinsewen riskassessmentofanewbioinformaticsevaluationoftheinsertionsitesofgeneticallymodifiedsoybeanevent4032
AT bressonjeanlouis riskassessmentofanewbioinformaticsevaluationoftheinsertionsitesofgeneticallymodifiedsoybeanevent4032
AT dalmaytamas riskassessmentofanewbioinformaticsevaluationoftheinsertionsitesofgeneticallymodifiedsoybeanevent4032
AT dewhurstiancrawford riskassessmentofanewbioinformaticsevaluationoftheinsertionsitesofgeneticallymodifiedsoybeanevent4032
AT epsteinmichellem riskassessmentofanewbioinformaticsevaluationoftheinsertionsitesofgeneticallymodifiedsoybeanevent4032
AT firbanklesliegeorge riskassessmentofanewbioinformaticsevaluationoftheinsertionsitesofgeneticallymodifiedsoybeanevent4032
AT guerchephilippe riskassessmentofanewbioinformaticsevaluationoftheinsertionsitesofgeneticallymodifiedsoybeanevent4032
AT hejatkojan riskassessmentofanewbioinformaticsevaluationoftheinsertionsitesofgeneticallymodifiedsoybeanevent4032
AT morenofranciscojavier riskassessmentofanewbioinformaticsevaluationoftheinsertionsitesofgeneticallymodifiedsoybeanevent4032
AT naegelihanspeter riskassessmentofanewbioinformaticsevaluationoftheinsertionsitesofgeneticallymodifiedsoybeanevent4032
AT noguefabien riskassessmentofanewbioinformaticsevaluationoftheinsertionsitesofgeneticallymodifiedsoybeanevent4032
AT rostoksnils riskassessmentofanewbioinformaticsevaluationoftheinsertionsitesofgeneticallymodifiedsoybeanevent4032
AT sanchezserranojosejuan riskassessmentofanewbioinformaticsevaluationoftheinsertionsitesofgeneticallymodifiedsoybeanevent4032
AT savoinigiovanni riskassessmentofanewbioinformaticsevaluationoftheinsertionsitesofgeneticallymodifiedsoybeanevent4032
AT veromanneve riskassessmentofanewbioinformaticsevaluationoftheinsertionsitesofgeneticallymodifiedsoybeanevent4032
AT veronesifabio riskassessmentofanewbioinformaticsevaluationoftheinsertionsitesofgeneticallymodifiedsoybeanevent4032
AT goumperistilemachos riskassessmentofanewbioinformaticsevaluationoftheinsertionsitesofgeneticallymodifiedsoybeanevent4032
AT raffaellotommaso riskassessmentofanewbioinformaticsevaluationoftheinsertionsitesofgeneticallymodifiedsoybeanevent4032