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AP2/ERF Transcription Factor NbERF-IX-33 Is Involved in the Regulation of Phytoalexin Production for the Resistance of Nicotiana benthamiana to Phytophthora infestans

Plants recognize molecular patterns unique to a certain group of microbes to induce effective resistance mechanisms. Elicitins are secretory proteins produced by plant pathogenic oomycete genera including Phytophthora and Pythium. Treatment of INF1 (an elicitin produced by P. infestans) induces a se...

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Autores principales: Imano, Sayaka, Fushimi, Mayuka, Camagna, Maurizio, Tsuyama-Koike, Akiko, Mori, Hitoshi, Ashida, Akira, Tanaka, Aiko, Sato, Ikuo, Chiba, Sotaro, Kawakita, Kazuhito, Ojika, Makoto, Takemoto, Daigo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8830488/
https://www.ncbi.nlm.nih.gov/pubmed/35154216
http://dx.doi.org/10.3389/fpls.2021.821574
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author Imano, Sayaka
Fushimi, Mayuka
Camagna, Maurizio
Tsuyama-Koike, Akiko
Mori, Hitoshi
Ashida, Akira
Tanaka, Aiko
Sato, Ikuo
Chiba, Sotaro
Kawakita, Kazuhito
Ojika, Makoto
Takemoto, Daigo
author_facet Imano, Sayaka
Fushimi, Mayuka
Camagna, Maurizio
Tsuyama-Koike, Akiko
Mori, Hitoshi
Ashida, Akira
Tanaka, Aiko
Sato, Ikuo
Chiba, Sotaro
Kawakita, Kazuhito
Ojika, Makoto
Takemoto, Daigo
author_sort Imano, Sayaka
collection PubMed
description Plants recognize molecular patterns unique to a certain group of microbes to induce effective resistance mechanisms. Elicitins are secretory proteins produced by plant pathogenic oomycete genera including Phytophthora and Pythium. Treatment of INF1 (an elicitin produced by P. infestans) induces a series of defense responses in Nicotiana species, including reactive oxygen species (ROS) production, transient induction of ethylene production, hypersensitive cell death and accumulation of the sesquiterpenoid phytoalexin capsidiol. In this study, we analyzed the expression profiles of N. benthamiana genes after INF1 treatment by RNAseq analysis. Based on their expression patterns, N. benthamiana genes were categorized into 20 clusters and 4,761 (8.3%) out of 57,140 genes were assigned to the clusters for INF1-induced genes. All genes encoding enzymes dedicated to capsidiol production, 5-epi-aristolochene (EA) synthase (NbEAS, 10 copies) and EA dehydrogenase (NbEAH, 6 copies), and some genes for ethylene production, such as 1-aminocyclopropane 1-carboxylate (ACC) synthase (NbACS) and ACC oxidase (NbACO), were significantly upregulated by INF1 treatment. Analysis of NbEAS1 and NbEAS4 promoters revealed that AGACGCC (GCC box-like motif) is the essential cis-element required for INF1-induced expression of NbEAS genes. Given that the GCC box is known to be targeted by ERF (ethylene-responsive factor) transcription factors, we created a complete list of N. benthamiana genes encoding AP2/ERF family transcription factors, and identified 45 out of 337 AP2/ERF genes in the clusters for INF1-induced genes. Among INF1-induced NbERF genes, silencing of NbERF-IX-33 compromised resistance against P. infestans and INF1-induced production of capsidiol. Recombinant NbERF-IX-33 protein can bind to the promoter sequence of NbEAS4, suggesting that NbERF-IX-33 is a transcription factor directly regulating the expression of genes for phytoalexin production.
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spelling pubmed-88304882022-02-11 AP2/ERF Transcription Factor NbERF-IX-33 Is Involved in the Regulation of Phytoalexin Production for the Resistance of Nicotiana benthamiana to Phytophthora infestans Imano, Sayaka Fushimi, Mayuka Camagna, Maurizio Tsuyama-Koike, Akiko Mori, Hitoshi Ashida, Akira Tanaka, Aiko Sato, Ikuo Chiba, Sotaro Kawakita, Kazuhito Ojika, Makoto Takemoto, Daigo Front Plant Sci Plant Science Plants recognize molecular patterns unique to a certain group of microbes to induce effective resistance mechanisms. Elicitins are secretory proteins produced by plant pathogenic oomycete genera including Phytophthora and Pythium. Treatment of INF1 (an elicitin produced by P. infestans) induces a series of defense responses in Nicotiana species, including reactive oxygen species (ROS) production, transient induction of ethylene production, hypersensitive cell death and accumulation of the sesquiterpenoid phytoalexin capsidiol. In this study, we analyzed the expression profiles of N. benthamiana genes after INF1 treatment by RNAseq analysis. Based on their expression patterns, N. benthamiana genes were categorized into 20 clusters and 4,761 (8.3%) out of 57,140 genes were assigned to the clusters for INF1-induced genes. All genes encoding enzymes dedicated to capsidiol production, 5-epi-aristolochene (EA) synthase (NbEAS, 10 copies) and EA dehydrogenase (NbEAH, 6 copies), and some genes for ethylene production, such as 1-aminocyclopropane 1-carboxylate (ACC) synthase (NbACS) and ACC oxidase (NbACO), were significantly upregulated by INF1 treatment. Analysis of NbEAS1 and NbEAS4 promoters revealed that AGACGCC (GCC box-like motif) is the essential cis-element required for INF1-induced expression of NbEAS genes. Given that the GCC box is known to be targeted by ERF (ethylene-responsive factor) transcription factors, we created a complete list of N. benthamiana genes encoding AP2/ERF family transcription factors, and identified 45 out of 337 AP2/ERF genes in the clusters for INF1-induced genes. Among INF1-induced NbERF genes, silencing of NbERF-IX-33 compromised resistance against P. infestans and INF1-induced production of capsidiol. Recombinant NbERF-IX-33 protein can bind to the promoter sequence of NbEAS4, suggesting that NbERF-IX-33 is a transcription factor directly regulating the expression of genes for phytoalexin production. Frontiers Media S.A. 2022-01-27 /pmc/articles/PMC8830488/ /pubmed/35154216 http://dx.doi.org/10.3389/fpls.2021.821574 Text en Copyright © 2022 Imano, Fushimi, Camagna, Tsuyama-Koike, Mori, Ashida, Tanaka, Sato, Chiba, Kawakita, Ojika and Takemoto. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Imano, Sayaka
Fushimi, Mayuka
Camagna, Maurizio
Tsuyama-Koike, Akiko
Mori, Hitoshi
Ashida, Akira
Tanaka, Aiko
Sato, Ikuo
Chiba, Sotaro
Kawakita, Kazuhito
Ojika, Makoto
Takemoto, Daigo
AP2/ERF Transcription Factor NbERF-IX-33 Is Involved in the Regulation of Phytoalexin Production for the Resistance of Nicotiana benthamiana to Phytophthora infestans
title AP2/ERF Transcription Factor NbERF-IX-33 Is Involved in the Regulation of Phytoalexin Production for the Resistance of Nicotiana benthamiana to Phytophthora infestans
title_full AP2/ERF Transcription Factor NbERF-IX-33 Is Involved in the Regulation of Phytoalexin Production for the Resistance of Nicotiana benthamiana to Phytophthora infestans
title_fullStr AP2/ERF Transcription Factor NbERF-IX-33 Is Involved in the Regulation of Phytoalexin Production for the Resistance of Nicotiana benthamiana to Phytophthora infestans
title_full_unstemmed AP2/ERF Transcription Factor NbERF-IX-33 Is Involved in the Regulation of Phytoalexin Production for the Resistance of Nicotiana benthamiana to Phytophthora infestans
title_short AP2/ERF Transcription Factor NbERF-IX-33 Is Involved in the Regulation of Phytoalexin Production for the Resistance of Nicotiana benthamiana to Phytophthora infestans
title_sort ap2/erf transcription factor nberf-ix-33 is involved in the regulation of phytoalexin production for the resistance of nicotiana benthamiana to phytophthora infestans
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8830488/
https://www.ncbi.nlm.nih.gov/pubmed/35154216
http://dx.doi.org/10.3389/fpls.2021.821574
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