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Open field trial of genetically modified parthenocarpic tomato: seedlessness and fruit quality

BACKGROUND: Parthenocarpic tomato lines transgenic for the DefH9-RI-iaaM gene have been cultivated under open field conditions to address some aspects of the equivalence of genetically modified (GM) fruit in comparison to controls (non-GM). RESULTS: Under open field cultivation conditions, two tomat...

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Autores principales: Rotino, Giuseppe Leonardo, Acciarri, Nazareno, Sabatini, Emidio, Mennella, Giuseppe, Lo Scalzo, Roberto, Maestrelli, Andrea, Molesini, Barbara, Pandolfini, Tiziana, Scalzo, Jessica, Mezzetti, Bruno, Spena, Angelo
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1361772/
https://www.ncbi.nlm.nih.gov/pubmed/16371162
http://dx.doi.org/10.1186/1472-6750-5-32
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author Rotino, Giuseppe Leonardo
Acciarri, Nazareno
Sabatini, Emidio
Mennella, Giuseppe
Lo Scalzo, Roberto
Maestrelli, Andrea
Molesini, Barbara
Pandolfini, Tiziana
Scalzo, Jessica
Mezzetti, Bruno
Spena, Angelo
author_facet Rotino, Giuseppe Leonardo
Acciarri, Nazareno
Sabatini, Emidio
Mennella, Giuseppe
Lo Scalzo, Roberto
Maestrelli, Andrea
Molesini, Barbara
Pandolfini, Tiziana
Scalzo, Jessica
Mezzetti, Bruno
Spena, Angelo
author_sort Rotino, Giuseppe Leonardo
collection PubMed
description BACKGROUND: Parthenocarpic tomato lines transgenic for the DefH9-RI-iaaM gene have been cultivated under open field conditions to address some aspects of the equivalence of genetically modified (GM) fruit in comparison to controls (non-GM). RESULTS: Under open field cultivation conditions, two tomato lines (UC 82) transgenic for the DefH9-RI-iaaM gene produced parthenocarpic fruits. DefH9-RI-iaaM fruits were either seedless or contained very few seeds. GM fruit quality, with the exception of a higher β-carotene level, did not show any difference, neither technological (colour, firmness, dry matter, °Brix, pH) nor chemical (titratable acidity, organic acids, lycopene, tomatine, total polyphenols and antioxidant capacity – TEAC), when compared to that of fruits from control line. Highly significant differences in quality traits exist between the tomato F1 commercial hybrid Allflesh and the three UC 82 genotypes tested, regardless of whether or not they are GM. Total yield per plant did not differ between GM and parental line UC 82. Fruit number was increased in GM lines, and GM fruit weight was decreased. CONCLUSION: The use in the diet of fruits from a new line or variety introduces much greater changes than the consumption of GM fruits in comparison to its genetic background. Parthenocarpic fruits, produced under open field conditions, contained 10-fold less seeds than control fruits. Thus parthenocarpy caused by DefH9-RI-iaaM gene represents also a tool for mitigating GM seeds dispersal in the environment.
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spelling pubmed-13617722006-02-09 Open field trial of genetically modified parthenocarpic tomato: seedlessness and fruit quality Rotino, Giuseppe Leonardo Acciarri, Nazareno Sabatini, Emidio Mennella, Giuseppe Lo Scalzo, Roberto Maestrelli, Andrea Molesini, Barbara Pandolfini, Tiziana Scalzo, Jessica Mezzetti, Bruno Spena, Angelo BMC Biotechnol Research Article BACKGROUND: Parthenocarpic tomato lines transgenic for the DefH9-RI-iaaM gene have been cultivated under open field conditions to address some aspects of the equivalence of genetically modified (GM) fruit in comparison to controls (non-GM). RESULTS: Under open field cultivation conditions, two tomato lines (UC 82) transgenic for the DefH9-RI-iaaM gene produced parthenocarpic fruits. DefH9-RI-iaaM fruits were either seedless or contained very few seeds. GM fruit quality, with the exception of a higher β-carotene level, did not show any difference, neither technological (colour, firmness, dry matter, °Brix, pH) nor chemical (titratable acidity, organic acids, lycopene, tomatine, total polyphenols and antioxidant capacity – TEAC), when compared to that of fruits from control line. Highly significant differences in quality traits exist between the tomato F1 commercial hybrid Allflesh and the three UC 82 genotypes tested, regardless of whether or not they are GM. Total yield per plant did not differ between GM and parental line UC 82. Fruit number was increased in GM lines, and GM fruit weight was decreased. CONCLUSION: The use in the diet of fruits from a new line or variety introduces much greater changes than the consumption of GM fruits in comparison to its genetic background. Parthenocarpic fruits, produced under open field conditions, contained 10-fold less seeds than control fruits. Thus parthenocarpy caused by DefH9-RI-iaaM gene represents also a tool for mitigating GM seeds dispersal in the environment. BioMed Central 2005-12-21 /pmc/articles/PMC1361772/ /pubmed/16371162 http://dx.doi.org/10.1186/1472-6750-5-32 Text en Copyright © 2005 Rotino et al; licensee BioMed Central Ltd.
spellingShingle Research Article
Rotino, Giuseppe Leonardo
Acciarri, Nazareno
Sabatini, Emidio
Mennella, Giuseppe
Lo Scalzo, Roberto
Maestrelli, Andrea
Molesini, Barbara
Pandolfini, Tiziana
Scalzo, Jessica
Mezzetti, Bruno
Spena, Angelo
Open field trial of genetically modified parthenocarpic tomato: seedlessness and fruit quality
title Open field trial of genetically modified parthenocarpic tomato: seedlessness and fruit quality
title_full Open field trial of genetically modified parthenocarpic tomato: seedlessness and fruit quality
title_fullStr Open field trial of genetically modified parthenocarpic tomato: seedlessness and fruit quality
title_full_unstemmed Open field trial of genetically modified parthenocarpic tomato: seedlessness and fruit quality
title_short Open field trial of genetically modified parthenocarpic tomato: seedlessness and fruit quality
title_sort open field trial of genetically modified parthenocarpic tomato: seedlessness and fruit quality
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1361772/
https://www.ncbi.nlm.nih.gov/pubmed/16371162
http://dx.doi.org/10.1186/1472-6750-5-32
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