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Allantoin, a stress-related purine metabolite, can activate jasmonate signaling in a MYC2-regulated and abscisic acid-dependent manner

Allantoin is a metabolic intermediate of purine catabolism that often accumulates in stressed plants. Recently, we used Arabidopsis knockout mutants (aln) of ALLANTOINASE to show that this purine metabolite activates abscisic acid (ABA) production, thereby stimulating stress-related gene expression...

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Autores principales: Takagi, Hiroshi, Ishiga, Yasuhiro, Watanabe, Shunsuke, Konishi, Tomokazu, Egusa, Mayumi, Akiyoshi, Nobuhiro, Matsuura, Takakazu, Mori, Izumi C., Hirayama, Takashi, Kaminaka, Hironori, Shimada, Hiroshi, Sakamoto, Atsushi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4809300/
https://www.ncbi.nlm.nih.gov/pubmed/26931169
http://dx.doi.org/10.1093/jxb/erw071
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author Takagi, Hiroshi
Ishiga, Yasuhiro
Watanabe, Shunsuke
Konishi, Tomokazu
Egusa, Mayumi
Akiyoshi, Nobuhiro
Matsuura, Takakazu
Mori, Izumi C.
Hirayama, Takashi
Kaminaka, Hironori
Shimada, Hiroshi
Sakamoto, Atsushi
author_facet Takagi, Hiroshi
Ishiga, Yasuhiro
Watanabe, Shunsuke
Konishi, Tomokazu
Egusa, Mayumi
Akiyoshi, Nobuhiro
Matsuura, Takakazu
Mori, Izumi C.
Hirayama, Takashi
Kaminaka, Hironori
Shimada, Hiroshi
Sakamoto, Atsushi
author_sort Takagi, Hiroshi
collection PubMed
description Allantoin is a metabolic intermediate of purine catabolism that often accumulates in stressed plants. Recently, we used Arabidopsis knockout mutants (aln) of ALLANTOINASE to show that this purine metabolite activates abscisic acid (ABA) production, thereby stimulating stress-related gene expression and enhancing seedling tolerance to abiotic stress. A detailed re-examination of the microarray data of an aln mutant (aln-1) confirmed the increased expression of ABA-related genes and also revealed altered expression of genes involved in jasmonic acid (JA) responses, probably under the control of MYC2, a master switch in the JA signaling pathway. Consistent with the transcriptome profiles, the aln-1 mutant displayed increased JA levels and enhanced responses to mechanical wounding and exogenous JA. Moreover, aln mutants demonstrated modestly increased susceptibility to Pseudomonas syringae and Pectobacterium carotovorum, probably reflecting the antagonistic action of MYC2 on the defense against these bacterial phytopathogens. Exogenously administered allantoin elicited the expression of JA-responsive genes, including MYC2, in wild-type plants, supporting the idea that allantoin might be responsible for the observed JA-related phenotypes of aln mutants. However, mutants deficient in bioactive JA (jar1-1), insensitive to JA (myc2-3), or deficient in ABA (aba2-1 and bglu18) suppressed the effect of exogenous allantoin. The suppression was further confirmed in aln-1 jar1-1 and aln-1 bglu18 double mutants. These results indicate that allantoin can activate the MYC2-regulated JA signaling pathway through ABA production. Overall, this study suggests a possible connection of purine catabolism with stress hormone homeostasis and signaling, and highlights the potential importance of allantoin in these interactions.
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spelling pubmed-48093002016-03-29 Allantoin, a stress-related purine metabolite, can activate jasmonate signaling in a MYC2-regulated and abscisic acid-dependent manner Takagi, Hiroshi Ishiga, Yasuhiro Watanabe, Shunsuke Konishi, Tomokazu Egusa, Mayumi Akiyoshi, Nobuhiro Matsuura, Takakazu Mori, Izumi C. Hirayama, Takashi Kaminaka, Hironori Shimada, Hiroshi Sakamoto, Atsushi J Exp Bot Research Paper Allantoin is a metabolic intermediate of purine catabolism that often accumulates in stressed plants. Recently, we used Arabidopsis knockout mutants (aln) of ALLANTOINASE to show that this purine metabolite activates abscisic acid (ABA) production, thereby stimulating stress-related gene expression and enhancing seedling tolerance to abiotic stress. A detailed re-examination of the microarray data of an aln mutant (aln-1) confirmed the increased expression of ABA-related genes and also revealed altered expression of genes involved in jasmonic acid (JA) responses, probably under the control of MYC2, a master switch in the JA signaling pathway. Consistent with the transcriptome profiles, the aln-1 mutant displayed increased JA levels and enhanced responses to mechanical wounding and exogenous JA. Moreover, aln mutants demonstrated modestly increased susceptibility to Pseudomonas syringae and Pectobacterium carotovorum, probably reflecting the antagonistic action of MYC2 on the defense against these bacterial phytopathogens. Exogenously administered allantoin elicited the expression of JA-responsive genes, including MYC2, in wild-type plants, supporting the idea that allantoin might be responsible for the observed JA-related phenotypes of aln mutants. However, mutants deficient in bioactive JA (jar1-1), insensitive to JA (myc2-3), or deficient in ABA (aba2-1 and bglu18) suppressed the effect of exogenous allantoin. The suppression was further confirmed in aln-1 jar1-1 and aln-1 bglu18 double mutants. These results indicate that allantoin can activate the MYC2-regulated JA signaling pathway through ABA production. Overall, this study suggests a possible connection of purine catabolism with stress hormone homeostasis and signaling, and highlights the potential importance of allantoin in these interactions. Oxford University Press 2016-04 2016-03-01 /pmc/articles/PMC4809300/ /pubmed/26931169 http://dx.doi.org/10.1093/jxb/erw071 Text en © The Author 2016. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Takagi, Hiroshi
Ishiga, Yasuhiro
Watanabe, Shunsuke
Konishi, Tomokazu
Egusa, Mayumi
Akiyoshi, Nobuhiro
Matsuura, Takakazu
Mori, Izumi C.
Hirayama, Takashi
Kaminaka, Hironori
Shimada, Hiroshi
Sakamoto, Atsushi
Allantoin, a stress-related purine metabolite, can activate jasmonate signaling in a MYC2-regulated and abscisic acid-dependent manner
title Allantoin, a stress-related purine metabolite, can activate jasmonate signaling in a MYC2-regulated and abscisic acid-dependent manner
title_full Allantoin, a stress-related purine metabolite, can activate jasmonate signaling in a MYC2-regulated and abscisic acid-dependent manner
title_fullStr Allantoin, a stress-related purine metabolite, can activate jasmonate signaling in a MYC2-regulated and abscisic acid-dependent manner
title_full_unstemmed Allantoin, a stress-related purine metabolite, can activate jasmonate signaling in a MYC2-regulated and abscisic acid-dependent manner
title_short Allantoin, a stress-related purine metabolite, can activate jasmonate signaling in a MYC2-regulated and abscisic acid-dependent manner
title_sort allantoin, a stress-related purine metabolite, can activate jasmonate signaling in a myc2-regulated and abscisic acid-dependent manner
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4809300/
https://www.ncbi.nlm.nih.gov/pubmed/26931169
http://dx.doi.org/10.1093/jxb/erw071
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