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WRKY76 is a rice transcriptional repressor playing opposite roles in blast disease resistance and cold stress tolerance

OsWRKY76 encodes a group IIa WRKY transcription factor of rice. The expression of OsWRKY76 was induced within 48h after inoculation with rice blast fungus (Magnaporthe oryzae), and by wounding, low temperature, benzothiadiazole, and abscisic acid. Green fluorescent protein-fused OsWRKY76 localized t...

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Autores principales: Yokotani, Naoki, Sato, Yuko, Tanabe, Shigeru, Chujo, Tetsuya, Shimizu, Takafumi, Okada, Kazunori, Yamane, Hisakazu, Shimono, Masaki, Sugano, Shoji, Takatsuji, Hiroshi, Kaku, Hisatoshi, Minami, Eiichi, Nishizawa, Yoko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3830488/
https://www.ncbi.nlm.nih.gov/pubmed/24043853
http://dx.doi.org/10.1093/jxb/ert298
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author Yokotani, Naoki
Sato, Yuko
Tanabe, Shigeru
Chujo, Tetsuya
Shimizu, Takafumi
Okada, Kazunori
Yamane, Hisakazu
Shimono, Masaki
Sugano, Shoji
Takatsuji, Hiroshi
Kaku, Hisatoshi
Minami, Eiichi
Nishizawa, Yoko
author_facet Yokotani, Naoki
Sato, Yuko
Tanabe, Shigeru
Chujo, Tetsuya
Shimizu, Takafumi
Okada, Kazunori
Yamane, Hisakazu
Shimono, Masaki
Sugano, Shoji
Takatsuji, Hiroshi
Kaku, Hisatoshi
Minami, Eiichi
Nishizawa, Yoko
author_sort Yokotani, Naoki
collection PubMed
description OsWRKY76 encodes a group IIa WRKY transcription factor of rice. The expression of OsWRKY76 was induced within 48h after inoculation with rice blast fungus (Magnaporthe oryzae), and by wounding, low temperature, benzothiadiazole, and abscisic acid. Green fluorescent protein-fused OsWRKY76 localized to the nuclei in rice epidermal cells. OsWRKY76 showed sequence-specific DNA binding to the W-box element in vitro and exhibited W-box-mediated transcriptional repressor activity in cultured rice cells. Overexpression of OsWRKY76 in rice plants resulted in drastically increased susceptibility to M. oryzae, but improved tolerance to cold stress. Microarray analysis revealed that overexpression of OsWRKY76 suppresses the induction of a specific set of PR genes and of genes involved in phytoalexin synthesis after inoculation with blast fungus, consistent with the observation that the levels of phytoalexins in the transgenic rice plants remained significantly lower than those in non-transformed control plants. Furthermore, overexpression of OsWRKY76 led to the increased expression of abiotic stress-associated genes such as peroxidase and lipid metabolism genes. These results strongly suggest that OsWRKY76 plays dual and opposing roles in blast disease resistance and cold tolerance.
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spelling pubmed-38304882013-11-18 WRKY76 is a rice transcriptional repressor playing opposite roles in blast disease resistance and cold stress tolerance Yokotani, Naoki Sato, Yuko Tanabe, Shigeru Chujo, Tetsuya Shimizu, Takafumi Okada, Kazunori Yamane, Hisakazu Shimono, Masaki Sugano, Shoji Takatsuji, Hiroshi Kaku, Hisatoshi Minami, Eiichi Nishizawa, Yoko J Exp Bot Research Paper OsWRKY76 encodes a group IIa WRKY transcription factor of rice. The expression of OsWRKY76 was induced within 48h after inoculation with rice blast fungus (Magnaporthe oryzae), and by wounding, low temperature, benzothiadiazole, and abscisic acid. Green fluorescent protein-fused OsWRKY76 localized to the nuclei in rice epidermal cells. OsWRKY76 showed sequence-specific DNA binding to the W-box element in vitro and exhibited W-box-mediated transcriptional repressor activity in cultured rice cells. Overexpression of OsWRKY76 in rice plants resulted in drastically increased susceptibility to M. oryzae, but improved tolerance to cold stress. Microarray analysis revealed that overexpression of OsWRKY76 suppresses the induction of a specific set of PR genes and of genes involved in phytoalexin synthesis after inoculation with blast fungus, consistent with the observation that the levels of phytoalexins in the transgenic rice plants remained significantly lower than those in non-transformed control plants. Furthermore, overexpression of OsWRKY76 led to the increased expression of abiotic stress-associated genes such as peroxidase and lipid metabolism genes. These results strongly suggest that OsWRKY76 plays dual and opposing roles in blast disease resistance and cold tolerance. Oxford University Press 2013-11 2013-09-16 /pmc/articles/PMC3830488/ /pubmed/24043853 http://dx.doi.org/10.1093/jxb/ert298 Text en © The Author 2013. 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
Yokotani, Naoki
Sato, Yuko
Tanabe, Shigeru
Chujo, Tetsuya
Shimizu, Takafumi
Okada, Kazunori
Yamane, Hisakazu
Shimono, Masaki
Sugano, Shoji
Takatsuji, Hiroshi
Kaku, Hisatoshi
Minami, Eiichi
Nishizawa, Yoko
WRKY76 is a rice transcriptional repressor playing opposite roles in blast disease resistance and cold stress tolerance
title WRKY76 is a rice transcriptional repressor playing opposite roles in blast disease resistance and cold stress tolerance
title_full WRKY76 is a rice transcriptional repressor playing opposite roles in blast disease resistance and cold stress tolerance
title_fullStr WRKY76 is a rice transcriptional repressor playing opposite roles in blast disease resistance and cold stress tolerance
title_full_unstemmed WRKY76 is a rice transcriptional repressor playing opposite roles in blast disease resistance and cold stress tolerance
title_short WRKY76 is a rice transcriptional repressor playing opposite roles in blast disease resistance and cold stress tolerance
title_sort wrky76 is a rice transcriptional repressor playing opposite roles in blast disease resistance and cold stress tolerance
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3830488/
https://www.ncbi.nlm.nih.gov/pubmed/24043853
http://dx.doi.org/10.1093/jxb/ert298
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