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OsTGA2 confers disease resistance to rice against leaf blight by regulating expression levels of disease related genes via interaction with NH1

How plants defend themselves from microbial infection is one of the most critical issues for sustainable crop production. Some TGA transcription factors belonging to bZIP superfamily can regulate disease resistance through NPR1-mediated immunity mechanisms in Arabidopsis. Here, we examined biologica...

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Autores principales: Moon, Seok-Jun, Park, Hee Jin, Kim, Tae-Heon, Kang, Ju-Won, Lee, Ji-Yoon, Cho, Jun-Hyun, Lee, Jong-Hee, Park, Dong-Soo, Byun, Myung-Ok, Kim, Beom-Gi, Shin, Dongjin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6239283/
https://www.ncbi.nlm.nih.gov/pubmed/30444888
http://dx.doi.org/10.1371/journal.pone.0206910
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author Moon, Seok-Jun
Park, Hee Jin
Kim, Tae-Heon
Kang, Ju-Won
Lee, Ji-Yoon
Cho, Jun-Hyun
Lee, Jong-Hee
Park, Dong-Soo
Byun, Myung-Ok
Kim, Beom-Gi
Shin, Dongjin
author_facet Moon, Seok-Jun
Park, Hee Jin
Kim, Tae-Heon
Kang, Ju-Won
Lee, Ji-Yoon
Cho, Jun-Hyun
Lee, Jong-Hee
Park, Dong-Soo
Byun, Myung-Ok
Kim, Beom-Gi
Shin, Dongjin
author_sort Moon, Seok-Jun
collection PubMed
description How plants defend themselves from microbial infection is one of the most critical issues for sustainable crop production. Some TGA transcription factors belonging to bZIP superfamily can regulate disease resistance through NPR1-mediated immunity mechanisms in Arabidopsis. Here, we examined biological roles of OsTGA2 (grouped into the same subclade as Arabidopsis TGAs) in bacterial leaf blight resistance. Transcriptional level of OsTGA2 was accumulated after treatment with salicylic acid, methyl jasmonate, and Xathomonas oryzae pv. Oryzae (Xoo), a bacterium causing serious blight of rice. OsTGA2 formed homo- and hetero-dimer with OsTGA3 and OsTGA5 and interacted with rice NPR1 homologs 1 (NH1) in rice. Results of quadruple 9-mer protein-binding microarray analysis indicated that OsTGA2 could bind to TGACGT DNA sequence. Overexpression of OsTGA2 increased resistance of rice to bacterial leaf blight, although overexpression of OsTGA3 resulted in disease symptoms similar to wild type plant upon Xoo infection. Overexpression of OsTGA2 enhanced the expression of defense related genes containing TGA binding cis-element in the promoter such as AP2/EREBP 129, ERD1, and HOP1. These results suggest that OsTGA2 can directly regulate the expression of defense related genes and increase the resistance of rice against bacterial leaf blight disease.
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spelling pubmed-62392832018-12-01 OsTGA2 confers disease resistance to rice against leaf blight by regulating expression levels of disease related genes via interaction with NH1 Moon, Seok-Jun Park, Hee Jin Kim, Tae-Heon Kang, Ju-Won Lee, Ji-Yoon Cho, Jun-Hyun Lee, Jong-Hee Park, Dong-Soo Byun, Myung-Ok Kim, Beom-Gi Shin, Dongjin PLoS One Research Article How plants defend themselves from microbial infection is one of the most critical issues for sustainable crop production. Some TGA transcription factors belonging to bZIP superfamily can regulate disease resistance through NPR1-mediated immunity mechanisms in Arabidopsis. Here, we examined biological roles of OsTGA2 (grouped into the same subclade as Arabidopsis TGAs) in bacterial leaf blight resistance. Transcriptional level of OsTGA2 was accumulated after treatment with salicylic acid, methyl jasmonate, and Xathomonas oryzae pv. Oryzae (Xoo), a bacterium causing serious blight of rice. OsTGA2 formed homo- and hetero-dimer with OsTGA3 and OsTGA5 and interacted with rice NPR1 homologs 1 (NH1) in rice. Results of quadruple 9-mer protein-binding microarray analysis indicated that OsTGA2 could bind to TGACGT DNA sequence. Overexpression of OsTGA2 increased resistance of rice to bacterial leaf blight, although overexpression of OsTGA3 resulted in disease symptoms similar to wild type plant upon Xoo infection. Overexpression of OsTGA2 enhanced the expression of defense related genes containing TGA binding cis-element in the promoter such as AP2/EREBP 129, ERD1, and HOP1. These results suggest that OsTGA2 can directly regulate the expression of defense related genes and increase the resistance of rice against bacterial leaf blight disease. Public Library of Science 2018-11-16 /pmc/articles/PMC6239283/ /pubmed/30444888 http://dx.doi.org/10.1371/journal.pone.0206910 Text en © 2018 Moon et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Moon, Seok-Jun
Park, Hee Jin
Kim, Tae-Heon
Kang, Ju-Won
Lee, Ji-Yoon
Cho, Jun-Hyun
Lee, Jong-Hee
Park, Dong-Soo
Byun, Myung-Ok
Kim, Beom-Gi
Shin, Dongjin
OsTGA2 confers disease resistance to rice against leaf blight by regulating expression levels of disease related genes via interaction with NH1
title OsTGA2 confers disease resistance to rice against leaf blight by regulating expression levels of disease related genes via interaction with NH1
title_full OsTGA2 confers disease resistance to rice against leaf blight by regulating expression levels of disease related genes via interaction with NH1
title_fullStr OsTGA2 confers disease resistance to rice against leaf blight by regulating expression levels of disease related genes via interaction with NH1
title_full_unstemmed OsTGA2 confers disease resistance to rice against leaf blight by regulating expression levels of disease related genes via interaction with NH1
title_short OsTGA2 confers disease resistance to rice against leaf blight by regulating expression levels of disease related genes via interaction with NH1
title_sort ostga2 confers disease resistance to rice against leaf blight by regulating expression levels of disease related genes via interaction with nh1
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6239283/
https://www.ncbi.nlm.nih.gov/pubmed/30444888
http://dx.doi.org/10.1371/journal.pone.0206910
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