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Contribution of the different omega-3 fatty acid desaturase genes to the cold response in soybean

This study analysed the contribution of each omega-3 desaturase to the cold response in soybean. Exposure to cold temperatures (5 °C) did not result in great modifications of the linolenic acid content in leaf membrane lipids. However, an increase in the GmFAD3A transcripts was observed both in plan...

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Autores principales: Román, Ángela, Andreu, Vanesa, Hernández, María Luisa, Lagunas, Beatriz, Picorel, Rafael, Martínez-Rivas, José Manuel, Alfonso, Miguel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2012
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3427996/
https://www.ncbi.nlm.nih.gov/pubmed/22865909
http://dx.doi.org/10.1093/jxb/ers174
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author Román, Ángela
Andreu, Vanesa
Hernández, María Luisa
Lagunas, Beatriz
Picorel, Rafael
Martínez-Rivas, José Manuel
Alfonso, Miguel
author_facet Román, Ángela
Andreu, Vanesa
Hernández, María Luisa
Lagunas, Beatriz
Picorel, Rafael
Martínez-Rivas, José Manuel
Alfonso, Miguel
author_sort Román, Ángela
collection PubMed
description This study analysed the contribution of each omega-3 desaturase to the cold response in soybean. Exposure to cold temperatures (5 °C) did not result in great modifications of the linolenic acid content in leaf membrane lipids. However, an increase in the GmFAD3A transcripts was observed both in plant leaves and soybean cells whereas no changes in GmFAD3B or GmFAD3C expression levels were detected. This increase was reversible and accompanied by the accumulation of an mRNA encoding a truncated form of GmFAD3A (GmFAD3A-T), which originated from alternative splicing of GmFAD3A in response to cold. When the expression of plastidial omega-3 desaturases was analysed, a transient accumulation of GmFAD7-2 mRNA was detected upon cold exposure in mature soybean trifoliate leaves while GmFAD7-1 transcripts remained unchanged. No modification of the GmFAD8-1 and GmFAD8-2 transcripts was observed. The functionality of GmFAD3A, GmFAD3B, GmFAD3C and GmFAD3A-T was examined by heterologous expression in yeast. No activity was detected with GmFAD3A-T, consistent with the absence of one of the His boxes necessary for desaturase activity. The linolenic acid content of Sacharomyces cerevisiae cells overexpressing GmFAD3A or GmFAD3B was higher when the cultures were incubated at cooler temperatures, suggesting that reticular desaturases of the GmFAD3 family, and more specifically GmFAD3A, may play a role in the cold response, even in leaves. The data point to a regulatory mechanism of omega-3 fatty acid desaturases in soybean affecting specific isoforms in both the plastid and the endoplasmic reticulum to maintain appropriate levels of linolenic acid under low temperature conditions.
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spelling pubmed-34279962012-08-27 Contribution of the different omega-3 fatty acid desaturase genes to the cold response in soybean Román, Ángela Andreu, Vanesa Hernández, María Luisa Lagunas, Beatriz Picorel, Rafael Martínez-Rivas, José Manuel Alfonso, Miguel J Exp Bot Research Paper This study analysed the contribution of each omega-3 desaturase to the cold response in soybean. Exposure to cold temperatures (5 °C) did not result in great modifications of the linolenic acid content in leaf membrane lipids. However, an increase in the GmFAD3A transcripts was observed both in plant leaves and soybean cells whereas no changes in GmFAD3B or GmFAD3C expression levels were detected. This increase was reversible and accompanied by the accumulation of an mRNA encoding a truncated form of GmFAD3A (GmFAD3A-T), which originated from alternative splicing of GmFAD3A in response to cold. When the expression of plastidial omega-3 desaturases was analysed, a transient accumulation of GmFAD7-2 mRNA was detected upon cold exposure in mature soybean trifoliate leaves while GmFAD7-1 transcripts remained unchanged. No modification of the GmFAD8-1 and GmFAD8-2 transcripts was observed. The functionality of GmFAD3A, GmFAD3B, GmFAD3C and GmFAD3A-T was examined by heterologous expression in yeast. No activity was detected with GmFAD3A-T, consistent with the absence of one of the His boxes necessary for desaturase activity. The linolenic acid content of Sacharomyces cerevisiae cells overexpressing GmFAD3A or GmFAD3B was higher when the cultures were incubated at cooler temperatures, suggesting that reticular desaturases of the GmFAD3 family, and more specifically GmFAD3A, may play a role in the cold response, even in leaves. The data point to a regulatory mechanism of omega-3 fatty acid desaturases in soybean affecting specific isoforms in both the plastid and the endoplasmic reticulum to maintain appropriate levels of linolenic acid under low temperature conditions. Oxford University Press 2012-08 2012-08-14 /pmc/articles/PMC3427996/ /pubmed/22865909 http://dx.doi.org/10.1093/jxb/ers174 Text en © The Author [2012]. Published by Oxford University Press [on behalf of the Society for Experimental Biology]. All rights reserved. For Permissions, please e-mail: journals.permissions@oup.com This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Román, Ángela
Andreu, Vanesa
Hernández, María Luisa
Lagunas, Beatriz
Picorel, Rafael
Martínez-Rivas, José Manuel
Alfonso, Miguel
Contribution of the different omega-3 fatty acid desaturase genes to the cold response in soybean
title Contribution of the different omega-3 fatty acid desaturase genes to the cold response in soybean
title_full Contribution of the different omega-3 fatty acid desaturase genes to the cold response in soybean
title_fullStr Contribution of the different omega-3 fatty acid desaturase genes to the cold response in soybean
title_full_unstemmed Contribution of the different omega-3 fatty acid desaturase genes to the cold response in soybean
title_short Contribution of the different omega-3 fatty acid desaturase genes to the cold response in soybean
title_sort contribution of the different omega-3 fatty acid desaturase genes to the cold response in soybean
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3427996/
https://www.ncbi.nlm.nih.gov/pubmed/22865909
http://dx.doi.org/10.1093/jxb/ers174
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