Cargando…
A field-grown transgenic tomato line expressing higher levels of polyamines reveals legume cover crop mulch-specific perturbations in fruit phenotype at the levels of metabolite profiles, gene expression, and agronomic characteristics
Genetic modification of crop plants to introduce desirable traits such as nutritional enhancement, disease and pest resistance, and enhanced crop productivity is increasingly seen as a promising technology for sustainable agriculture and boosting food production in the world. Independently, cultural...
Autores principales: | , , , , , , , , , |
---|---|
Formato: | Texto |
Lenguaje: | English |
Publicado: |
Oxford University Press
2008
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2423649/ https://www.ncbi.nlm.nih.gov/pubmed/18469323 http://dx.doi.org/10.1093/jxb/ern100 |
_version_ | 1782156153337151488 |
---|---|
author | Neelam, Anil Cassol, Tatiana Mehta, Roshni A. Abdul-Baki, Aref A. Sobolev, Anatoli P. Goyal, Ravinder K. Abbott, Judith Segre, Anna L. Handa, Avtar K. Mattoo, Autar K. |
author_facet | Neelam, Anil Cassol, Tatiana Mehta, Roshni A. Abdul-Baki, Aref A. Sobolev, Anatoli P. Goyal, Ravinder K. Abbott, Judith Segre, Anna L. Handa, Avtar K. Mattoo, Autar K. |
author_sort | Neelam, Anil |
collection | PubMed |
description | Genetic modification of crop plants to introduce desirable traits such as nutritional enhancement, disease and pest resistance, and enhanced crop productivity is increasingly seen as a promising technology for sustainable agriculture and boosting food production in the world. Independently, cultural practices that utilize alternative agriculture strategies including organic cultivation subscribe to sustainable agriculture by limiting chemical usage and reduced tillage. How the two together affect fruit metabolism or plant growth in the field or whether they are compatible has not yet been tested. Fruit-specific yeast S-adenosylmethionine decarboxylase (ySAMdc) line 579HO, and a control line 556AZ were grown in leguminous hairy vetch (Vicia villosa Roth) (HV) mulch and conventional black polyethylene (BP) mulch, and their fruit analysed. Significant genotype×mulch-dependent interactions on fruit phenotype were exemplified by differential profiles of 20 fruit metabolites such as amino acids, sugars, and organic acids. Expression patterns of the ySAMdc transgene, and tomato SAMdc, E8, PEPC, and ICDHc genes were compared between the two lines as a function of growth on either BP or HV mulch. HV mulch significantly stimulated the accumulation of asparagine, glutamate, glutamine, choline, and citrate concomitant with a decrease in glucose in the 556AZ fruits during ripening as compared to BP. It enables a metabolic system in tomato somewhat akin to the one in higher polyamine-accumulating transgenic fruit that have higher phytonutrient content. Finally, synergism was found between HV mulch and transgenic tomato in up-regulating N:C indicator genes PEPC and ICDHc in the fruit. |
format | Text |
id | pubmed-2423649 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2008 |
publisher | Oxford University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-24236492009-02-25 A field-grown transgenic tomato line expressing higher levels of polyamines reveals legume cover crop mulch-specific perturbations in fruit phenotype at the levels of metabolite profiles, gene expression, and agronomic characteristics Neelam, Anil Cassol, Tatiana Mehta, Roshni A. Abdul-Baki, Aref A. Sobolev, Anatoli P. Goyal, Ravinder K. Abbott, Judith Segre, Anna L. Handa, Avtar K. Mattoo, Autar K. J Exp Bot Research Papers Genetic modification of crop plants to introduce desirable traits such as nutritional enhancement, disease and pest resistance, and enhanced crop productivity is increasingly seen as a promising technology for sustainable agriculture and boosting food production in the world. Independently, cultural practices that utilize alternative agriculture strategies including organic cultivation subscribe to sustainable agriculture by limiting chemical usage and reduced tillage. How the two together affect fruit metabolism or plant growth in the field or whether they are compatible has not yet been tested. Fruit-specific yeast S-adenosylmethionine decarboxylase (ySAMdc) line 579HO, and a control line 556AZ were grown in leguminous hairy vetch (Vicia villosa Roth) (HV) mulch and conventional black polyethylene (BP) mulch, and their fruit analysed. Significant genotype×mulch-dependent interactions on fruit phenotype were exemplified by differential profiles of 20 fruit metabolites such as amino acids, sugars, and organic acids. Expression patterns of the ySAMdc transgene, and tomato SAMdc, E8, PEPC, and ICDHc genes were compared between the two lines as a function of growth on either BP or HV mulch. HV mulch significantly stimulated the accumulation of asparagine, glutamate, glutamine, choline, and citrate concomitant with a decrease in glucose in the 556AZ fruits during ripening as compared to BP. It enables a metabolic system in tomato somewhat akin to the one in higher polyamine-accumulating transgenic fruit that have higher phytonutrient content. Finally, synergism was found between HV mulch and transgenic tomato in up-regulating N:C indicator genes PEPC and ICDHc in the fruit. Oxford University Press 2008-06 2008-05-09 /pmc/articles/PMC2423649/ /pubmed/18469323 http://dx.doi.org/10.1093/jxb/ern100 Text en © 2008 The Author(s). This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.0/uk/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited. This paper is available online free of all access charges (see http://jxb.oxfordjournals.org/open_access.html for further details) |
spellingShingle | Research Papers Neelam, Anil Cassol, Tatiana Mehta, Roshni A. Abdul-Baki, Aref A. Sobolev, Anatoli P. Goyal, Ravinder K. Abbott, Judith Segre, Anna L. Handa, Avtar K. Mattoo, Autar K. A field-grown transgenic tomato line expressing higher levels of polyamines reveals legume cover crop mulch-specific perturbations in fruit phenotype at the levels of metabolite profiles, gene expression, and agronomic characteristics |
title | A field-grown transgenic tomato line expressing higher levels of polyamines reveals legume cover crop mulch-specific perturbations in fruit phenotype at the levels of metabolite profiles, gene expression, and agronomic characteristics |
title_full | A field-grown transgenic tomato line expressing higher levels of polyamines reveals legume cover crop mulch-specific perturbations in fruit phenotype at the levels of metabolite profiles, gene expression, and agronomic characteristics |
title_fullStr | A field-grown transgenic tomato line expressing higher levels of polyamines reveals legume cover crop mulch-specific perturbations in fruit phenotype at the levels of metabolite profiles, gene expression, and agronomic characteristics |
title_full_unstemmed | A field-grown transgenic tomato line expressing higher levels of polyamines reveals legume cover crop mulch-specific perturbations in fruit phenotype at the levels of metabolite profiles, gene expression, and agronomic characteristics |
title_short | A field-grown transgenic tomato line expressing higher levels of polyamines reveals legume cover crop mulch-specific perturbations in fruit phenotype at the levels of metabolite profiles, gene expression, and agronomic characteristics |
title_sort | field-grown transgenic tomato line expressing higher levels of polyamines reveals legume cover crop mulch-specific perturbations in fruit phenotype at the levels of metabolite profiles, gene expression, and agronomic characteristics |
topic | Research Papers |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2423649/ https://www.ncbi.nlm.nih.gov/pubmed/18469323 http://dx.doi.org/10.1093/jxb/ern100 |
work_keys_str_mv | AT neelamanil afieldgrowntransgenictomatolineexpressinghigherlevelsofpolyaminesrevealslegumecovercropmulchspecificperturbationsinfruitphenotypeatthelevelsofmetaboliteprofilesgeneexpressionandagronomiccharacteristics AT cassoltatiana afieldgrowntransgenictomatolineexpressinghigherlevelsofpolyaminesrevealslegumecovercropmulchspecificperturbationsinfruitphenotypeatthelevelsofmetaboliteprofilesgeneexpressionandagronomiccharacteristics AT mehtaroshnia afieldgrowntransgenictomatolineexpressinghigherlevelsofpolyaminesrevealslegumecovercropmulchspecificperturbationsinfruitphenotypeatthelevelsofmetaboliteprofilesgeneexpressionandagronomiccharacteristics AT abdulbakiarefa afieldgrowntransgenictomatolineexpressinghigherlevelsofpolyaminesrevealslegumecovercropmulchspecificperturbationsinfruitphenotypeatthelevelsofmetaboliteprofilesgeneexpressionandagronomiccharacteristics AT sobolevanatolip afieldgrowntransgenictomatolineexpressinghigherlevelsofpolyaminesrevealslegumecovercropmulchspecificperturbationsinfruitphenotypeatthelevelsofmetaboliteprofilesgeneexpressionandagronomiccharacteristics AT goyalravinderk afieldgrowntransgenictomatolineexpressinghigherlevelsofpolyaminesrevealslegumecovercropmulchspecificperturbationsinfruitphenotypeatthelevelsofmetaboliteprofilesgeneexpressionandagronomiccharacteristics AT abbottjudith afieldgrowntransgenictomatolineexpressinghigherlevelsofpolyaminesrevealslegumecovercropmulchspecificperturbationsinfruitphenotypeatthelevelsofmetaboliteprofilesgeneexpressionandagronomiccharacteristics AT segreannal afieldgrowntransgenictomatolineexpressinghigherlevelsofpolyaminesrevealslegumecovercropmulchspecificperturbationsinfruitphenotypeatthelevelsofmetaboliteprofilesgeneexpressionandagronomiccharacteristics AT handaavtark afieldgrowntransgenictomatolineexpressinghigherlevelsofpolyaminesrevealslegumecovercropmulchspecificperturbationsinfruitphenotypeatthelevelsofmetaboliteprofilesgeneexpressionandagronomiccharacteristics AT mattooautark afieldgrowntransgenictomatolineexpressinghigherlevelsofpolyaminesrevealslegumecovercropmulchspecificperturbationsinfruitphenotypeatthelevelsofmetaboliteprofilesgeneexpressionandagronomiccharacteristics AT neelamanil fieldgrowntransgenictomatolineexpressinghigherlevelsofpolyaminesrevealslegumecovercropmulchspecificperturbationsinfruitphenotypeatthelevelsofmetaboliteprofilesgeneexpressionandagronomiccharacteristics AT cassoltatiana fieldgrowntransgenictomatolineexpressinghigherlevelsofpolyaminesrevealslegumecovercropmulchspecificperturbationsinfruitphenotypeatthelevelsofmetaboliteprofilesgeneexpressionandagronomiccharacteristics AT mehtaroshnia fieldgrowntransgenictomatolineexpressinghigherlevelsofpolyaminesrevealslegumecovercropmulchspecificperturbationsinfruitphenotypeatthelevelsofmetaboliteprofilesgeneexpressionandagronomiccharacteristics AT abdulbakiarefa fieldgrowntransgenictomatolineexpressinghigherlevelsofpolyaminesrevealslegumecovercropmulchspecificperturbationsinfruitphenotypeatthelevelsofmetaboliteprofilesgeneexpressionandagronomiccharacteristics AT sobolevanatolip fieldgrowntransgenictomatolineexpressinghigherlevelsofpolyaminesrevealslegumecovercropmulchspecificperturbationsinfruitphenotypeatthelevelsofmetaboliteprofilesgeneexpressionandagronomiccharacteristics AT goyalravinderk fieldgrowntransgenictomatolineexpressinghigherlevelsofpolyaminesrevealslegumecovercropmulchspecificperturbationsinfruitphenotypeatthelevelsofmetaboliteprofilesgeneexpressionandagronomiccharacteristics AT abbottjudith fieldgrowntransgenictomatolineexpressinghigherlevelsofpolyaminesrevealslegumecovercropmulchspecificperturbationsinfruitphenotypeatthelevelsofmetaboliteprofilesgeneexpressionandagronomiccharacteristics AT segreannal fieldgrowntransgenictomatolineexpressinghigherlevelsofpolyaminesrevealslegumecovercropmulchspecificperturbationsinfruitphenotypeatthelevelsofmetaboliteprofilesgeneexpressionandagronomiccharacteristics AT handaavtark fieldgrowntransgenictomatolineexpressinghigherlevelsofpolyaminesrevealslegumecovercropmulchspecificperturbationsinfruitphenotypeatthelevelsofmetaboliteprofilesgeneexpressionandagronomiccharacteristics AT mattooautark fieldgrowntransgenictomatolineexpressinghigherlevelsofpolyaminesrevealslegumecovercropmulchspecificperturbationsinfruitphenotypeatthelevelsofmetaboliteprofilesgeneexpressionandagronomiccharacteristics |