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TILLING-by-Sequencing(+) Reveals the Role of Novel Fatty Acid Desaturases (GmFAD2-2s) in Increasing Soybean Seed Oleic Acid Content
Soybean is the second largest source of oil worldwide. Developing soybean varieties with high levels of oleic acid is a primary goal of the soybean breeders and industry. Edible oils containing high level of oleic acid and low level of linoleic acid are considered with higher oxidative stability and...
Autores principales: | , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8158723/ https://www.ncbi.nlm.nih.gov/pubmed/34069320 http://dx.doi.org/10.3390/cells10051245 |
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author | Lakhssassi, Naoufal Lopes-Caitar, Valéria Stefania Knizia, Dounya Cullen, Mallory A. Badad, Oussama El Baze, Abdelhalim Zhou, Zhou Embaby, Mohamed G. Meksem, Jonas Lakhssassi, Aicha Chen, Pengyin AbuGhazaleh, Amer Vuong, Tri D. Nguyen, Henry T. Hewezi, Tarek Meksem, Khalid |
author_facet | Lakhssassi, Naoufal Lopes-Caitar, Valéria Stefania Knizia, Dounya Cullen, Mallory A. Badad, Oussama El Baze, Abdelhalim Zhou, Zhou Embaby, Mohamed G. Meksem, Jonas Lakhssassi, Aicha Chen, Pengyin AbuGhazaleh, Amer Vuong, Tri D. Nguyen, Henry T. Hewezi, Tarek Meksem, Khalid |
author_sort | Lakhssassi, Naoufal |
collection | PubMed |
description | Soybean is the second largest source of oil worldwide. Developing soybean varieties with high levels of oleic acid is a primary goal of the soybean breeders and industry. Edible oils containing high level of oleic acid and low level of linoleic acid are considered with higher oxidative stability and can be used as a natural antioxidant in food stability. All developed high oleic acid soybeans carry two alleles; GmFAD2-1A and GmFAD2-1B. However, when planted in cold soil, a possible reduction in seed germination was reported when high seed oleic acid derived from GmFAD2-1 alleles were used. Besides the soybean fatty acid desaturase (GmFAD2-1) subfamily, the GmFAD2-2 subfamily is composed of five members, including GmFAD2-2A, GmFAD2-2B, GmFAD2-2C, GmFAD2-2D, and GmFAD2-2E. Segmental duplication of GmFAD2-1A/GmFAD2-1B, GmFAD2-2A/GmFAD2-2C, GmFAD2-2A/GmFAD2-2D, and GmFAD2-2D/GmFAD2-2C have occurred about 10.65, 27.04, 100.81, and 106.55 Mya, respectively. Using TILLING-by-Sequencing+ technology, we successfully identified 12, 8, 10, 9, and 19 EMS mutants at the GmFAD2-2A, GmFAD2-2B, GmFAD2-2C, GmFAD2-2D, and GmFAD2-2E genes, respectively. Functional analyses of newly identified mutants revealed unprecedented role of the five GmFAD2-2A, GmFAD2-2B, GmFAD2-2C, GmFAD2-2D, and GmFAD2-2E members in controlling the seed oleic acid content. Most importantly, unlike GmFAD2-1 members, subcellular localization revealed that members of the GmFAD2-2 subfamily showed a cytoplasmic localization, which may suggest the presence of an alternative fatty acid desaturase pathway in soybean for converting oleic acid content without substantially altering the traditional plastidial/ER fatty acid production. |
format | Online Article Text |
id | pubmed-8158723 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-81587232021-05-28 TILLING-by-Sequencing(+) Reveals the Role of Novel Fatty Acid Desaturases (GmFAD2-2s) in Increasing Soybean Seed Oleic Acid Content Lakhssassi, Naoufal Lopes-Caitar, Valéria Stefania Knizia, Dounya Cullen, Mallory A. Badad, Oussama El Baze, Abdelhalim Zhou, Zhou Embaby, Mohamed G. Meksem, Jonas Lakhssassi, Aicha Chen, Pengyin AbuGhazaleh, Amer Vuong, Tri D. Nguyen, Henry T. Hewezi, Tarek Meksem, Khalid Cells Article Soybean is the second largest source of oil worldwide. Developing soybean varieties with high levels of oleic acid is a primary goal of the soybean breeders and industry. Edible oils containing high level of oleic acid and low level of linoleic acid are considered with higher oxidative stability and can be used as a natural antioxidant in food stability. All developed high oleic acid soybeans carry two alleles; GmFAD2-1A and GmFAD2-1B. However, when planted in cold soil, a possible reduction in seed germination was reported when high seed oleic acid derived from GmFAD2-1 alleles were used. Besides the soybean fatty acid desaturase (GmFAD2-1) subfamily, the GmFAD2-2 subfamily is composed of five members, including GmFAD2-2A, GmFAD2-2B, GmFAD2-2C, GmFAD2-2D, and GmFAD2-2E. Segmental duplication of GmFAD2-1A/GmFAD2-1B, GmFAD2-2A/GmFAD2-2C, GmFAD2-2A/GmFAD2-2D, and GmFAD2-2D/GmFAD2-2C have occurred about 10.65, 27.04, 100.81, and 106.55 Mya, respectively. Using TILLING-by-Sequencing+ technology, we successfully identified 12, 8, 10, 9, and 19 EMS mutants at the GmFAD2-2A, GmFAD2-2B, GmFAD2-2C, GmFAD2-2D, and GmFAD2-2E genes, respectively. Functional analyses of newly identified mutants revealed unprecedented role of the five GmFAD2-2A, GmFAD2-2B, GmFAD2-2C, GmFAD2-2D, and GmFAD2-2E members in controlling the seed oleic acid content. Most importantly, unlike GmFAD2-1 members, subcellular localization revealed that members of the GmFAD2-2 subfamily showed a cytoplasmic localization, which may suggest the presence of an alternative fatty acid desaturase pathway in soybean for converting oleic acid content without substantially altering the traditional plastidial/ER fatty acid production. MDPI 2021-05-19 /pmc/articles/PMC8158723/ /pubmed/34069320 http://dx.doi.org/10.3390/cells10051245 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Lakhssassi, Naoufal Lopes-Caitar, Valéria Stefania Knizia, Dounya Cullen, Mallory A. Badad, Oussama El Baze, Abdelhalim Zhou, Zhou Embaby, Mohamed G. Meksem, Jonas Lakhssassi, Aicha Chen, Pengyin AbuGhazaleh, Amer Vuong, Tri D. Nguyen, Henry T. Hewezi, Tarek Meksem, Khalid TILLING-by-Sequencing(+) Reveals the Role of Novel Fatty Acid Desaturases (GmFAD2-2s) in Increasing Soybean Seed Oleic Acid Content |
title | TILLING-by-Sequencing(+) Reveals the Role of Novel Fatty Acid Desaturases (GmFAD2-2s) in Increasing Soybean Seed Oleic Acid Content |
title_full | TILLING-by-Sequencing(+) Reveals the Role of Novel Fatty Acid Desaturases (GmFAD2-2s) in Increasing Soybean Seed Oleic Acid Content |
title_fullStr | TILLING-by-Sequencing(+) Reveals the Role of Novel Fatty Acid Desaturases (GmFAD2-2s) in Increasing Soybean Seed Oleic Acid Content |
title_full_unstemmed | TILLING-by-Sequencing(+) Reveals the Role of Novel Fatty Acid Desaturases (GmFAD2-2s) in Increasing Soybean Seed Oleic Acid Content |
title_short | TILLING-by-Sequencing(+) Reveals the Role of Novel Fatty Acid Desaturases (GmFAD2-2s) in Increasing Soybean Seed Oleic Acid Content |
title_sort | tilling-by-sequencing(+) reveals the role of novel fatty acid desaturases (gmfad2-2s) in increasing soybean seed oleic acid content |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8158723/ https://www.ncbi.nlm.nih.gov/pubmed/34069320 http://dx.doi.org/10.3390/cells10051245 |
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