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Upregulated Lipid Biosynthesis at the Expense of Starch Production in Potato (Solanum tuberosum) Vegetative Tissues via Simultaneous Downregulation of ADP-Glucose Pyrophosphorylase and Sugar Dependent1 Expressions

Triacylglycerol is a major component of vegetable oil in seeds and fruits of many plants, but its production in vegetative tissues is rather limited. It would be intriguing and important to explore any possibility to expand current oil production platforms, for example from the plant vegetative tiss...

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Autores principales: Xu, Xiaoyu, Vanhercke, Thomas, Shrestha, Pushkar, Luo, Jixun, Akbar, Sehrish, Konik-Rose, Christine, Venugoban, Lauren, Hussain, Dawar, Tian, Lijun, Singh, Surinder, Li, Zhongyi, Sharp, Peter J., Liu, Qing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6861213/
https://www.ncbi.nlm.nih.gov/pubmed/31781148
http://dx.doi.org/10.3389/fpls.2019.01444
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author Xu, Xiaoyu
Vanhercke, Thomas
Shrestha, Pushkar
Luo, Jixun
Akbar, Sehrish
Konik-Rose, Christine
Venugoban, Lauren
Hussain, Dawar
Tian, Lijun
Singh, Surinder
Li, Zhongyi
Sharp, Peter J.
Liu, Qing
author_facet Xu, Xiaoyu
Vanhercke, Thomas
Shrestha, Pushkar
Luo, Jixun
Akbar, Sehrish
Konik-Rose, Christine
Venugoban, Lauren
Hussain, Dawar
Tian, Lijun
Singh, Surinder
Li, Zhongyi
Sharp, Peter J.
Liu, Qing
author_sort Xu, Xiaoyu
collection PubMed
description Triacylglycerol is a major component of vegetable oil in seeds and fruits of many plants, but its production in vegetative tissues is rather limited. It would be intriguing and important to explore any possibility to expand current oil production platforms, for example from the plant vegetative tissues. By expressing a suite of transgenes involved in the triacylglycerol biosynthesis, we have previously observed substantial accumulation of triacylglycerol in tobacco (Nicotiana tabacum) leaf and potato (Solanum tuberosum) tuber. In this study, simultaneous RNA interference (RNAi) downregulation of ADP-glucose pyrophosphorylase (AGPase) and Sugar-dependent1 (SDP1), was able to increase the accumulation of triacylglycerol and other lipids in both wild type potato and the previously generated high oil potato line 69. Particularly, a 16-fold enhancement of triacylglycerol production was observed in the mature transgenic tubers derived from the wild type potato, and a two-fold increase in triacylglycerol was observed in the high oil potato line 69, accounting for about 7% of tuber dry weight, which is the highest triacylglycerol accumulation ever reported in potato. In addition to the alterations of lipid content and fatty acid composition, sugar accumulation, starch content of the RNAi potato lines in both tuber and leaf tissues were also substantially changed, as well as the tuber starch properties. Microscopic analysis further revealed variation of lipid droplet distribution and starch granule morphology in the mature transgenic tubers compared to their parent lines. This study reflects that the carbon partitioning between lipid and starch in both leaves and non-photosynthetic tuber tissues, respectively, are highly orchestrated in potato, and it is promising to convert low-energy starch to storage lipids via genetic manipulation of the carbon metabolism pathways.
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spelling pubmed-68612132019-11-28 Upregulated Lipid Biosynthesis at the Expense of Starch Production in Potato (Solanum tuberosum) Vegetative Tissues via Simultaneous Downregulation of ADP-Glucose Pyrophosphorylase and Sugar Dependent1 Expressions Xu, Xiaoyu Vanhercke, Thomas Shrestha, Pushkar Luo, Jixun Akbar, Sehrish Konik-Rose, Christine Venugoban, Lauren Hussain, Dawar Tian, Lijun Singh, Surinder Li, Zhongyi Sharp, Peter J. Liu, Qing Front Plant Sci Plant Science Triacylglycerol is a major component of vegetable oil in seeds and fruits of many plants, but its production in vegetative tissues is rather limited. It would be intriguing and important to explore any possibility to expand current oil production platforms, for example from the plant vegetative tissues. By expressing a suite of transgenes involved in the triacylglycerol biosynthesis, we have previously observed substantial accumulation of triacylglycerol in tobacco (Nicotiana tabacum) leaf and potato (Solanum tuberosum) tuber. In this study, simultaneous RNA interference (RNAi) downregulation of ADP-glucose pyrophosphorylase (AGPase) and Sugar-dependent1 (SDP1), was able to increase the accumulation of triacylglycerol and other lipids in both wild type potato and the previously generated high oil potato line 69. Particularly, a 16-fold enhancement of triacylglycerol production was observed in the mature transgenic tubers derived from the wild type potato, and a two-fold increase in triacylglycerol was observed in the high oil potato line 69, accounting for about 7% of tuber dry weight, which is the highest triacylglycerol accumulation ever reported in potato. In addition to the alterations of lipid content and fatty acid composition, sugar accumulation, starch content of the RNAi potato lines in both tuber and leaf tissues were also substantially changed, as well as the tuber starch properties. Microscopic analysis further revealed variation of lipid droplet distribution and starch granule morphology in the mature transgenic tubers compared to their parent lines. This study reflects that the carbon partitioning between lipid and starch in both leaves and non-photosynthetic tuber tissues, respectively, are highly orchestrated in potato, and it is promising to convert low-energy starch to storage lipids via genetic manipulation of the carbon metabolism pathways. Frontiers Media S.A. 2019-11-12 /pmc/articles/PMC6861213/ /pubmed/31781148 http://dx.doi.org/10.3389/fpls.2019.01444 Text en Copyright © 2019 Xu, Vanhercke, Shrestha, Luo, Akbar, Konik-Rose, Venugoban, Hussain, Tian, Singh, Li, Sharp and Liu http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Xu, Xiaoyu
Vanhercke, Thomas
Shrestha, Pushkar
Luo, Jixun
Akbar, Sehrish
Konik-Rose, Christine
Venugoban, Lauren
Hussain, Dawar
Tian, Lijun
Singh, Surinder
Li, Zhongyi
Sharp, Peter J.
Liu, Qing
Upregulated Lipid Biosynthesis at the Expense of Starch Production in Potato (Solanum tuberosum) Vegetative Tissues via Simultaneous Downregulation of ADP-Glucose Pyrophosphorylase and Sugar Dependent1 Expressions
title Upregulated Lipid Biosynthesis at the Expense of Starch Production in Potato (Solanum tuberosum) Vegetative Tissues via Simultaneous Downregulation of ADP-Glucose Pyrophosphorylase and Sugar Dependent1 Expressions
title_full Upregulated Lipid Biosynthesis at the Expense of Starch Production in Potato (Solanum tuberosum) Vegetative Tissues via Simultaneous Downregulation of ADP-Glucose Pyrophosphorylase and Sugar Dependent1 Expressions
title_fullStr Upregulated Lipid Biosynthesis at the Expense of Starch Production in Potato (Solanum tuberosum) Vegetative Tissues via Simultaneous Downregulation of ADP-Glucose Pyrophosphorylase and Sugar Dependent1 Expressions
title_full_unstemmed Upregulated Lipid Biosynthesis at the Expense of Starch Production in Potato (Solanum tuberosum) Vegetative Tissues via Simultaneous Downregulation of ADP-Glucose Pyrophosphorylase and Sugar Dependent1 Expressions
title_short Upregulated Lipid Biosynthesis at the Expense of Starch Production in Potato (Solanum tuberosum) Vegetative Tissues via Simultaneous Downregulation of ADP-Glucose Pyrophosphorylase and Sugar Dependent1 Expressions
title_sort upregulated lipid biosynthesis at the expense of starch production in potato (solanum tuberosum) vegetative tissues via simultaneous downregulation of adp-glucose pyrophosphorylase and sugar dependent1 expressions
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6861213/
https://www.ncbi.nlm.nih.gov/pubmed/31781148
http://dx.doi.org/10.3389/fpls.2019.01444
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