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Up‐regulation of lipid biosynthesis increases the oil content in leaves of Sorghum bicolor

Synthesis and accumulation of the storage lipid triacylglycerol in vegetative plant tissues has emerged as a promising strategy to meet the world's future need for vegetable oil. Sorghum (Sorghum bicolor) is a particularly attractive target crop given its high biomass, drought resistance and C(...

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Autores principales: Vanhercke, Thomas, Belide, Srinivas, Taylor, Matthew C., El Tahchy, Anna, Okada, Shoko, Rolland, Vivien, Liu, Qing, Mitchell, Madeline, Shrestha, Pushkar, Venables, Ingrid, Ma, Lina, Blundell, Cheryl, Mathew, Anu, Ziolkowski, Lisa, Niesner, Nathalie, Hussain, Dawar, Dong, Bei, Liu, Guoquan, Godwin, Ian D., Lee, Jiwon, Rug, Melanie, Zhou, Xue‐Rong, Singh, Surinder P., Petrie, James R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6330533/
https://www.ncbi.nlm.nih.gov/pubmed/29873878
http://dx.doi.org/10.1111/pbi.12959
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author Vanhercke, Thomas
Belide, Srinivas
Taylor, Matthew C.
El Tahchy, Anna
Okada, Shoko
Rolland, Vivien
Liu, Qing
Mitchell, Madeline
Shrestha, Pushkar
Venables, Ingrid
Ma, Lina
Blundell, Cheryl
Mathew, Anu
Ziolkowski, Lisa
Niesner, Nathalie
Hussain, Dawar
Dong, Bei
Liu, Guoquan
Godwin, Ian D.
Lee, Jiwon
Rug, Melanie
Zhou, Xue‐Rong
Singh, Surinder P.
Petrie, James R.
author_facet Vanhercke, Thomas
Belide, Srinivas
Taylor, Matthew C.
El Tahchy, Anna
Okada, Shoko
Rolland, Vivien
Liu, Qing
Mitchell, Madeline
Shrestha, Pushkar
Venables, Ingrid
Ma, Lina
Blundell, Cheryl
Mathew, Anu
Ziolkowski, Lisa
Niesner, Nathalie
Hussain, Dawar
Dong, Bei
Liu, Guoquan
Godwin, Ian D.
Lee, Jiwon
Rug, Melanie
Zhou, Xue‐Rong
Singh, Surinder P.
Petrie, James R.
author_sort Vanhercke, Thomas
collection PubMed
description Synthesis and accumulation of the storage lipid triacylglycerol in vegetative plant tissues has emerged as a promising strategy to meet the world's future need for vegetable oil. Sorghum (Sorghum bicolor) is a particularly attractive target crop given its high biomass, drought resistance and C(4) photosynthesis. While oilseed‐like triacylglycerol levels have been engineered in the C(3) model plant tobacco, progress in C(4) monocot crops has been lagging behind. In this study, we report the accumulation of triacylglycerol in sorghum leaf tissues to levels between 3 and 8.4% on a dry weight basis depending on leaf and plant developmental stage. This was achieved by the combined overexpression of genes encoding the Zea mays WRI1 transcription factor, Umbelopsis ramanniana UrDGAT2a acyltransferase and Sesamum indicum Oleosin‐L oil body protein. Increased oil content was visible as lipid droplets, primarily in the leaf mesophyll cells. A comparison between a constitutive and mesophyll‐specific promoter driving WRI1 expression revealed distinct changes in the overall leaf lipidome as well as transitory starch and soluble sugar levels. Metabolome profiling uncovered changes in the abundance of various amino acids and dicarboxylic acids. The results presented here are a first step forward towards the development of sorghum as a dedicated biomass oil crop and provide a basis for further combinatorial metabolic engineering.
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spelling pubmed-63305332019-01-17 Up‐regulation of lipid biosynthesis increases the oil content in leaves of Sorghum bicolor Vanhercke, Thomas Belide, Srinivas Taylor, Matthew C. El Tahchy, Anna Okada, Shoko Rolland, Vivien Liu, Qing Mitchell, Madeline Shrestha, Pushkar Venables, Ingrid Ma, Lina Blundell, Cheryl Mathew, Anu Ziolkowski, Lisa Niesner, Nathalie Hussain, Dawar Dong, Bei Liu, Guoquan Godwin, Ian D. Lee, Jiwon Rug, Melanie Zhou, Xue‐Rong Singh, Surinder P. Petrie, James R. Plant Biotechnol J Research Articles Synthesis and accumulation of the storage lipid triacylglycerol in vegetative plant tissues has emerged as a promising strategy to meet the world's future need for vegetable oil. Sorghum (Sorghum bicolor) is a particularly attractive target crop given its high biomass, drought resistance and C(4) photosynthesis. While oilseed‐like triacylglycerol levels have been engineered in the C(3) model plant tobacco, progress in C(4) monocot crops has been lagging behind. In this study, we report the accumulation of triacylglycerol in sorghum leaf tissues to levels between 3 and 8.4% on a dry weight basis depending on leaf and plant developmental stage. This was achieved by the combined overexpression of genes encoding the Zea mays WRI1 transcription factor, Umbelopsis ramanniana UrDGAT2a acyltransferase and Sesamum indicum Oleosin‐L oil body protein. Increased oil content was visible as lipid droplets, primarily in the leaf mesophyll cells. A comparison between a constitutive and mesophyll‐specific promoter driving WRI1 expression revealed distinct changes in the overall leaf lipidome as well as transitory starch and soluble sugar levels. Metabolome profiling uncovered changes in the abundance of various amino acids and dicarboxylic acids. The results presented here are a first step forward towards the development of sorghum as a dedicated biomass oil crop and provide a basis for further combinatorial metabolic engineering. John Wiley and Sons Inc. 2018-07-13 2019-01 /pmc/articles/PMC6330533/ /pubmed/29873878 http://dx.doi.org/10.1111/pbi.12959 Text en © 2018 The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Vanhercke, Thomas
Belide, Srinivas
Taylor, Matthew C.
El Tahchy, Anna
Okada, Shoko
Rolland, Vivien
Liu, Qing
Mitchell, Madeline
Shrestha, Pushkar
Venables, Ingrid
Ma, Lina
Blundell, Cheryl
Mathew, Anu
Ziolkowski, Lisa
Niesner, Nathalie
Hussain, Dawar
Dong, Bei
Liu, Guoquan
Godwin, Ian D.
Lee, Jiwon
Rug, Melanie
Zhou, Xue‐Rong
Singh, Surinder P.
Petrie, James R.
Up‐regulation of lipid biosynthesis increases the oil content in leaves of Sorghum bicolor
title Up‐regulation of lipid biosynthesis increases the oil content in leaves of Sorghum bicolor
title_full Up‐regulation of lipid biosynthesis increases the oil content in leaves of Sorghum bicolor
title_fullStr Up‐regulation of lipid biosynthesis increases the oil content in leaves of Sorghum bicolor
title_full_unstemmed Up‐regulation of lipid biosynthesis increases the oil content in leaves of Sorghum bicolor
title_short Up‐regulation of lipid biosynthesis increases the oil content in leaves of Sorghum bicolor
title_sort up‐regulation of lipid biosynthesis increases the oil content in leaves of sorghum bicolor
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6330533/
https://www.ncbi.nlm.nih.gov/pubmed/29873878
http://dx.doi.org/10.1111/pbi.12959
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