Auxin-sensitive Aux/IAA proteins mediate drought tolerance in Arabidopsis by regulating glucosinolate levels

Brassicaceae produce glucosinolates to protect against herbivory and pathogens. Here the authors show that auxin-sensitive Aux/IAA repressor proteins regulate aliphatic glucosinolate levels in Arabidopsis and this promotes stomatal closure via reactive oxygen species during drought stress.

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Autores principales: Mohammad Salehin, Baohua Li, Michelle Tang, Ella Katz, Liang Song, Joseph R. Ecker, Daniel J. Kliebenstein, Mark Estelle
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/278bf902f680489abee3e62bbbe5d556
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spelling oai:doaj.org-article:278bf902f680489abee3e62bbbe5d5562021-12-02T15:36:05ZAuxin-sensitive Aux/IAA proteins mediate drought tolerance in Arabidopsis by regulating glucosinolate levels10.1038/s41467-019-12002-12041-1723https://doaj.org/article/278bf902f680489abee3e62bbbe5d5562019-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-12002-1https://doaj.org/toc/2041-1723Brassicaceae produce glucosinolates to protect against herbivory and pathogens. Here the authors show that auxin-sensitive Aux/IAA repressor proteins regulate aliphatic glucosinolate levels in Arabidopsis and this promotes stomatal closure via reactive oxygen species during drought stress.Mohammad SalehinBaohua LiMichelle TangElla KatzLiang SongJoseph R. EckerDaniel J. KliebensteinMark EstelleNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-9 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Mohammad Salehin
Baohua Li
Michelle Tang
Ella Katz
Liang Song
Joseph R. Ecker
Daniel J. Kliebenstein
Mark Estelle
Auxin-sensitive Aux/IAA proteins mediate drought tolerance in Arabidopsis by regulating glucosinolate levels
description Brassicaceae produce glucosinolates to protect against herbivory and pathogens. Here the authors show that auxin-sensitive Aux/IAA repressor proteins regulate aliphatic glucosinolate levels in Arabidopsis and this promotes stomatal closure via reactive oxygen species during drought stress.
format article
author Mohammad Salehin
Baohua Li
Michelle Tang
Ella Katz
Liang Song
Joseph R. Ecker
Daniel J. Kliebenstein
Mark Estelle
author_facet Mohammad Salehin
Baohua Li
Michelle Tang
Ella Katz
Liang Song
Joseph R. Ecker
Daniel J. Kliebenstein
Mark Estelle
author_sort Mohammad Salehin
title Auxin-sensitive Aux/IAA proteins mediate drought tolerance in Arabidopsis by regulating glucosinolate levels
title_short Auxin-sensitive Aux/IAA proteins mediate drought tolerance in Arabidopsis by regulating glucosinolate levels
title_full Auxin-sensitive Aux/IAA proteins mediate drought tolerance in Arabidopsis by regulating glucosinolate levels
title_fullStr Auxin-sensitive Aux/IAA proteins mediate drought tolerance in Arabidopsis by regulating glucosinolate levels
title_full_unstemmed Auxin-sensitive Aux/IAA proteins mediate drought tolerance in Arabidopsis by regulating glucosinolate levels
title_sort auxin-sensitive aux/iaa proteins mediate drought tolerance in arabidopsis by regulating glucosinolate levels
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/278bf902f680489abee3e62bbbe5d556
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AT ellakatz auxinsensitiveauxiaaproteinsmediatedroughttoleranceinarabidopsisbyregulatingglucosinolatelevels
AT liangsong auxinsensitiveauxiaaproteinsmediatedroughttoleranceinarabidopsisbyregulatingglucosinolatelevels
AT josephrecker auxinsensitiveauxiaaproteinsmediatedroughttoleranceinarabidopsisbyregulatingglucosinolatelevels
AT danieljkliebenstein auxinsensitiveauxiaaproteinsmediatedroughttoleranceinarabidopsisbyregulatingglucosinolatelevels
AT markestelle auxinsensitiveauxiaaproteinsmediatedroughttoleranceinarabidopsisbyregulatingglucosinolatelevels
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