Fatty Acid Desaturases: Uncovering Their Involvement in Grapevine Defence against Downy Mildew

Grapevine downy mildew, caused by the biotrophic oomycete <i>Plasmopara viticola</i>, is one of the most severe and devastating diseases in viticulture. Unravelling the grapevine defence mechanisms is crucial to develop sustainable disease control measures. Here we provide new insights c...

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Main Authors: Gonçalo Laureano, Ana Rita Cavaco, Ana Rita Matos, Andreia Figueiredo
Format: Article
Language:English
Published: MDPI AG 2021-05-01
Series:International Journal of Molecular Sciences
Subjects:
Online Access:https://www.mdpi.com/1422-0067/22/11/5473
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spelling doaj-e506fad67e004b5b81a5527764079b932021-06-01T00:48:45ZengMDPI AGInternational Journal of Molecular Sciences1661-65961422-00672021-05-01225473547310.3390/ijms22115473Fatty Acid Desaturases: Uncovering Their Involvement in Grapevine Defence against Downy MildewGonçalo Laureano0Ana Rita Cavaco1Ana Rita Matos2Andreia Figueiredo3Biosystems & Integrative Sciences Institute (BioISI), Faculdade de Ciências, Universidade de Lisboa, Campo Grande, 1749-016 Lisboa, PortugalBiosystems & Integrative Sciences Institute (BioISI), Faculdade de Ciências, Universidade de Lisboa, Campo Grande, 1749-016 Lisboa, PortugalBiosystems & Integrative Sciences Institute (BioISI), Faculdade de Ciências, Universidade de Lisboa, Campo Grande, 1749-016 Lisboa, PortugalBiosystems & Integrative Sciences Institute (BioISI), Faculdade de Ciências, Universidade de Lisboa, Campo Grande, 1749-016 Lisboa, PortugalGrapevine downy mildew, caused by the biotrophic oomycete <i>Plasmopara viticola</i>, is one of the most severe and devastating diseases in viticulture. Unravelling the grapevine defence mechanisms is crucial to develop sustainable disease control measures. Here we provide new insights concerning fatty acid’s (FA) desaturation, a fundamental process in lipid remodelling and signalling. Previously, we have provided evidence that lipid signalling is essential in the establishment of the incompatible interaction between grapevine and <i>Plasmopara viticola</i>. In the first hours after pathogen challenge, jasmonic acid (JA) accumulation, activation of its biosynthetic pathway and an accumulation of its precursor, the polyunsaturated α-linolenic acid (C18:3), were observed in the leaves of the tolerant genotype, Regent. This work was aimed at a better comprehension of the desaturation processes occurring after inoculation. We characterised, for the first time in <i>Vitis vinifera</i>, the gene family of the FA desaturases and evaluated their involvement in Regent response to <i>Plasmopara viticola</i>. Upon pathogen challenge, an up-regulation of the expression of plastidial FA desaturases genes was observed, resulting in a higher content of polyunsaturated fatty acids (PUFAs) of chloroplast lipids. This study highlights FA desaturases as key players in membrane remodelling and signalling in grapevine defence towards biotrophic pathogens.https://www.mdpi.com/1422-0067/22/11/5473<i>Vitis vinifera</i><i>Plasmopara viticola</i>plant defencelipid signallingfatty acid modulationfatty acid desaturases
collection DOAJ
language English
format Article
sources DOAJ
author Gonçalo Laureano
Ana Rita Cavaco
Ana Rita Matos
Andreia Figueiredo
spellingShingle Gonçalo Laureano
Ana Rita Cavaco
Ana Rita Matos
Andreia Figueiredo
Fatty Acid Desaturases: Uncovering Their Involvement in Grapevine Defence against Downy Mildew
International Journal of Molecular Sciences
<i>Vitis vinifera</i>
<i>Plasmopara viticola</i>
plant defence
lipid signalling
fatty acid modulation
fatty acid desaturases
author_facet Gonçalo Laureano
Ana Rita Cavaco
Ana Rita Matos
Andreia Figueiredo
author_sort Gonçalo Laureano
title Fatty Acid Desaturases: Uncovering Their Involvement in Grapevine Defence against Downy Mildew
title_short Fatty Acid Desaturases: Uncovering Their Involvement in Grapevine Defence against Downy Mildew
title_full Fatty Acid Desaturases: Uncovering Their Involvement in Grapevine Defence against Downy Mildew
title_fullStr Fatty Acid Desaturases: Uncovering Their Involvement in Grapevine Defence against Downy Mildew
title_full_unstemmed Fatty Acid Desaturases: Uncovering Their Involvement in Grapevine Defence against Downy Mildew
title_sort fatty acid desaturases: uncovering their involvement in grapevine defence against downy mildew
publisher MDPI AG
series International Journal of Molecular Sciences
issn 1661-6596
1422-0067
publishDate 2021-05-01
description Grapevine downy mildew, caused by the biotrophic oomycete <i>Plasmopara viticola</i>, is one of the most severe and devastating diseases in viticulture. Unravelling the grapevine defence mechanisms is crucial to develop sustainable disease control measures. Here we provide new insights concerning fatty acid’s (FA) desaturation, a fundamental process in lipid remodelling and signalling. Previously, we have provided evidence that lipid signalling is essential in the establishment of the incompatible interaction between grapevine and <i>Plasmopara viticola</i>. In the first hours after pathogen challenge, jasmonic acid (JA) accumulation, activation of its biosynthetic pathway and an accumulation of its precursor, the polyunsaturated α-linolenic acid (C18:3), were observed in the leaves of the tolerant genotype, Regent. This work was aimed at a better comprehension of the desaturation processes occurring after inoculation. We characterised, for the first time in <i>Vitis vinifera</i>, the gene family of the FA desaturases and evaluated their involvement in Regent response to <i>Plasmopara viticola</i>. Upon pathogen challenge, an up-regulation of the expression of plastidial FA desaturases genes was observed, resulting in a higher content of polyunsaturated fatty acids (PUFAs) of chloroplast lipids. This study highlights FA desaturases as key players in membrane remodelling and signalling in grapevine defence towards biotrophic pathogens.
topic <i>Vitis vinifera</i>
<i>Plasmopara viticola</i>
plant defence
lipid signalling
fatty acid modulation
fatty acid desaturases
url https://www.mdpi.com/1422-0067/22/11/5473
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