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Down-regulation of tomato PHYTOL KINASE strongly impairs tocopherol biosynthesis and affects prenyllipid metabolism in an organ-specific manner
Tocopherol, a compound with vitamin E (VTE) activity, is a conserved constituent of the plastidial antioxidant network in photosynthetic organisms. The synthesis of tocopherol involves the condensation of an aromatic head group with an isoprenoid prenyl side chain. The latter, phytyl diphosphate, ca...
Autores principales: | , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Oxford University Press
2016
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4737080/ https://www.ncbi.nlm.nih.gov/pubmed/26596763 http://dx.doi.org/10.1093/jxb/erv504 |
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author | Almeida, Juliana Azevedo, Mariana da Silva Spicher, Livia Glauser, Gaétan vom Dorp, Katharina Guyer, Luzia del Valle Carranza, Andrea Asis, Ramón de Souza, Amanda Pereira Buckeridge, Marcos Demarco, Diego Bres, Cécile Rothan, Christophe Peres, Lázaro Eustáquio Pereira Hörtensteiner, Stefan Kessler, Félix Dörmann, Peter Carrari, Fernando Rossi, Magdalena |
author_facet | Almeida, Juliana Azevedo, Mariana da Silva Spicher, Livia Glauser, Gaétan vom Dorp, Katharina Guyer, Luzia del Valle Carranza, Andrea Asis, Ramón de Souza, Amanda Pereira Buckeridge, Marcos Demarco, Diego Bres, Cécile Rothan, Christophe Peres, Lázaro Eustáquio Pereira Hörtensteiner, Stefan Kessler, Félix Dörmann, Peter Carrari, Fernando Rossi, Magdalena |
author_sort | Almeida, Juliana |
collection | PubMed |
description | Tocopherol, a compound with vitamin E (VTE) activity, is a conserved constituent of the plastidial antioxidant network in photosynthetic organisms. The synthesis of tocopherol involves the condensation of an aromatic head group with an isoprenoid prenyl side chain. The latter, phytyl diphosphate, can be derived from chlorophyll phytol tail recycling, which depends on phytol kinase (VTE5) activity. How plants co-ordinate isoprenoid precursor distribution for supplying biosynthesis of tocopherol and other prenyllipids in different organs is poorly understood. Here, Solanum lycopersicum plants impaired in the expression of two VTE5-like genes identified by phylogenetic analyses, named SlVTE5 and SlFOLK, were characterized. Our data show that while SlFOLK does not affect tocopherol content, the production of this metabolite is >80% dependent on SlVTE5 in tomato, in both leaves and fruits. VTE5 deficiency greatly impacted lipid metabolism, including prenylquinones, carotenoids, and fatty acid phytyl esters. However, the prenyllipid profile greatly differed between source and sink organs, revealing organ-specific metabolic adjustments in tomato. Additionally, VTE5-deficient plants displayed starch accumulation and lower CO(2) assimilation in leaves associated with mild yield penalty. Taken together, our results provide valuable insights into the distinct regulation of isoprenoid metabolism in leaves and fruits and also expose the interaction between lipid and carbon metabolism, which results in carbohydrate export blockage in the VTE5-deficient plants, affecting tomato fruit quality. |
format | Online Article Text |
id | pubmed-4737080 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | Oxford University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-47370802016-02-03 Down-regulation of tomato PHYTOL KINASE strongly impairs tocopherol biosynthesis and affects prenyllipid metabolism in an organ-specific manner Almeida, Juliana Azevedo, Mariana da Silva Spicher, Livia Glauser, Gaétan vom Dorp, Katharina Guyer, Luzia del Valle Carranza, Andrea Asis, Ramón de Souza, Amanda Pereira Buckeridge, Marcos Demarco, Diego Bres, Cécile Rothan, Christophe Peres, Lázaro Eustáquio Pereira Hörtensteiner, Stefan Kessler, Félix Dörmann, Peter Carrari, Fernando Rossi, Magdalena J Exp Bot Research Paper Tocopherol, a compound with vitamin E (VTE) activity, is a conserved constituent of the plastidial antioxidant network in photosynthetic organisms. The synthesis of tocopherol involves the condensation of an aromatic head group with an isoprenoid prenyl side chain. The latter, phytyl diphosphate, can be derived from chlorophyll phytol tail recycling, which depends on phytol kinase (VTE5) activity. How plants co-ordinate isoprenoid precursor distribution for supplying biosynthesis of tocopherol and other prenyllipids in different organs is poorly understood. Here, Solanum lycopersicum plants impaired in the expression of two VTE5-like genes identified by phylogenetic analyses, named SlVTE5 and SlFOLK, were characterized. Our data show that while SlFOLK does not affect tocopherol content, the production of this metabolite is >80% dependent on SlVTE5 in tomato, in both leaves and fruits. VTE5 deficiency greatly impacted lipid metabolism, including prenylquinones, carotenoids, and fatty acid phytyl esters. However, the prenyllipid profile greatly differed between source and sink organs, revealing organ-specific metabolic adjustments in tomato. Additionally, VTE5-deficient plants displayed starch accumulation and lower CO(2) assimilation in leaves associated with mild yield penalty. Taken together, our results provide valuable insights into the distinct regulation of isoprenoid metabolism in leaves and fruits and also expose the interaction between lipid and carbon metabolism, which results in carbohydrate export blockage in the VTE5-deficient plants, affecting tomato fruit quality. Oxford University Press 2016-02 2015-11-23 /pmc/articles/PMC4737080/ /pubmed/26596763 http://dx.doi.org/10.1093/jxb/erv504 Text en © The Author 2015. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited. |
spellingShingle | Research Paper Almeida, Juliana Azevedo, Mariana da Silva Spicher, Livia Glauser, Gaétan vom Dorp, Katharina Guyer, Luzia del Valle Carranza, Andrea Asis, Ramón de Souza, Amanda Pereira Buckeridge, Marcos Demarco, Diego Bres, Cécile Rothan, Christophe Peres, Lázaro Eustáquio Pereira Hörtensteiner, Stefan Kessler, Félix Dörmann, Peter Carrari, Fernando Rossi, Magdalena Down-regulation of tomato PHYTOL KINASE strongly impairs tocopherol biosynthesis and affects prenyllipid metabolism in an organ-specific manner |
title | Down-regulation of tomato PHYTOL KINASE strongly impairs tocopherol biosynthesis and affects prenyllipid metabolism in an organ-specific manner |
title_full | Down-regulation of tomato PHYTOL KINASE strongly impairs tocopherol biosynthesis and affects prenyllipid metabolism in an organ-specific manner |
title_fullStr | Down-regulation of tomato PHYTOL KINASE strongly impairs tocopherol biosynthesis and affects prenyllipid metabolism in an organ-specific manner |
title_full_unstemmed | Down-regulation of tomato PHYTOL KINASE strongly impairs tocopherol biosynthesis and affects prenyllipid metabolism in an organ-specific manner |
title_short | Down-regulation of tomato PHYTOL KINASE strongly impairs tocopherol biosynthesis and affects prenyllipid metabolism in an organ-specific manner |
title_sort | down-regulation of tomato phytol kinase strongly impairs tocopherol biosynthesis and affects prenyllipid metabolism in an organ-specific manner |
topic | Research Paper |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4737080/ https://www.ncbi.nlm.nih.gov/pubmed/26596763 http://dx.doi.org/10.1093/jxb/erv504 |
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