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Overexpression of IbFAD8 Enhances the Low-Temperature Storage Ability and Alpha-Linolenic Acid Content of Sweetpotato Tuberous Roots

Sweetpotato is an emerging food crop that ensures food and nutrition security in the face of climate change. Alpha-linoleic acid (ALA) is one of the key factors affecting plant stress tolerance and is also an essential nutrient in humans. In plants, fatty acid desaturase 8 (FAD8) synthesizes ALA fro...

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Autores principales: Lee, Chan-Ju, Kim, So-Eun, Park, Sul-U, Lim, Ye-Hoon, Ji, Chang Yoon, Jo, Hyun, Lee, Jeong-Dong, Yoon, Ung-Han, Kim, Ho Soo, Kwak, Sang-Soo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8589035/
https://www.ncbi.nlm.nih.gov/pubmed/34777447
http://dx.doi.org/10.3389/fpls.2021.764100
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author Lee, Chan-Ju
Kim, So-Eun
Park, Sul-U
Lim, Ye-Hoon
Ji, Chang Yoon
Jo, Hyun
Lee, Jeong-Dong
Yoon, Ung-Han
Kim, Ho Soo
Kwak, Sang-Soo
author_facet Lee, Chan-Ju
Kim, So-Eun
Park, Sul-U
Lim, Ye-Hoon
Ji, Chang Yoon
Jo, Hyun
Lee, Jeong-Dong
Yoon, Ung-Han
Kim, Ho Soo
Kwak, Sang-Soo
author_sort Lee, Chan-Ju
collection PubMed
description Sweetpotato is an emerging food crop that ensures food and nutrition security in the face of climate change. Alpha-linoleic acid (ALA) is one of the key factors affecting plant stress tolerance and is also an essential nutrient in humans. In plants, fatty acid desaturase 8 (FAD8) synthesizes ALA from linoleic acid (LA). Previously, we identified the cold-induced IbFAD8 gene from RNA-seq of sweetpotato tuberous roots stored at low-temperature. In this study, we investigated the effect of IbFAD8 on the low-temperature storage ability and ALA content of the tuberous roots of sweetpotato. Transgenic sweetpotato plants overexpressing IbFAD8 (TF plants) exhibited increased cold and drought stress tolerance and enhanced heat stress susceptibility compared with non-transgenic (NT) plants. The ALA content of the tuberous roots of TF plants (0.19 g/100 g DW) was ca. 3.8-fold higher than that of NT plants (0.05 g/100 g DW), resulting in 8–9-fold increase in the ALA/LA ratio in TF plants. Furthermore, tuberous roots of TF plants showed better low-temperature storage ability compared with NT plants. These results indicate that IbFAD8 is a valuable candidate gene for increasing the ALA content, environmental stress tolerance, and low-temperature storage ability of sweetpotato tuberous roots via molecular breeding.
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spelling pubmed-85890352021-11-13 Overexpression of IbFAD8 Enhances the Low-Temperature Storage Ability and Alpha-Linolenic Acid Content of Sweetpotato Tuberous Roots Lee, Chan-Ju Kim, So-Eun Park, Sul-U Lim, Ye-Hoon Ji, Chang Yoon Jo, Hyun Lee, Jeong-Dong Yoon, Ung-Han Kim, Ho Soo Kwak, Sang-Soo Front Plant Sci Plant Science Sweetpotato is an emerging food crop that ensures food and nutrition security in the face of climate change. Alpha-linoleic acid (ALA) is one of the key factors affecting plant stress tolerance and is also an essential nutrient in humans. In plants, fatty acid desaturase 8 (FAD8) synthesizes ALA from linoleic acid (LA). Previously, we identified the cold-induced IbFAD8 gene from RNA-seq of sweetpotato tuberous roots stored at low-temperature. In this study, we investigated the effect of IbFAD8 on the low-temperature storage ability and ALA content of the tuberous roots of sweetpotato. Transgenic sweetpotato plants overexpressing IbFAD8 (TF plants) exhibited increased cold and drought stress tolerance and enhanced heat stress susceptibility compared with non-transgenic (NT) plants. The ALA content of the tuberous roots of TF plants (0.19 g/100 g DW) was ca. 3.8-fold higher than that of NT plants (0.05 g/100 g DW), resulting in 8–9-fold increase in the ALA/LA ratio in TF plants. Furthermore, tuberous roots of TF plants showed better low-temperature storage ability compared with NT plants. These results indicate that IbFAD8 is a valuable candidate gene for increasing the ALA content, environmental stress tolerance, and low-temperature storage ability of sweetpotato tuberous roots via molecular breeding. Frontiers Media S.A. 2021-10-29 /pmc/articles/PMC8589035/ /pubmed/34777447 http://dx.doi.org/10.3389/fpls.2021.764100 Text en Copyright © 2021 Lee, Kim, Park, Lim, Ji, Jo, Lee, Yoon, Kim and Kwak. https://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
Lee, Chan-Ju
Kim, So-Eun
Park, Sul-U
Lim, Ye-Hoon
Ji, Chang Yoon
Jo, Hyun
Lee, Jeong-Dong
Yoon, Ung-Han
Kim, Ho Soo
Kwak, Sang-Soo
Overexpression of IbFAD8 Enhances the Low-Temperature Storage Ability and Alpha-Linolenic Acid Content of Sweetpotato Tuberous Roots
title Overexpression of IbFAD8 Enhances the Low-Temperature Storage Ability and Alpha-Linolenic Acid Content of Sweetpotato Tuberous Roots
title_full Overexpression of IbFAD8 Enhances the Low-Temperature Storage Ability and Alpha-Linolenic Acid Content of Sweetpotato Tuberous Roots
title_fullStr Overexpression of IbFAD8 Enhances the Low-Temperature Storage Ability and Alpha-Linolenic Acid Content of Sweetpotato Tuberous Roots
title_full_unstemmed Overexpression of IbFAD8 Enhances the Low-Temperature Storage Ability and Alpha-Linolenic Acid Content of Sweetpotato Tuberous Roots
title_short Overexpression of IbFAD8 Enhances the Low-Temperature Storage Ability and Alpha-Linolenic Acid Content of Sweetpotato Tuberous Roots
title_sort overexpression of ibfad8 enhances the low-temperature storage ability and alpha-linolenic acid content of sweetpotato tuberous roots
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8589035/
https://www.ncbi.nlm.nih.gov/pubmed/34777447
http://dx.doi.org/10.3389/fpls.2021.764100
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