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Transcriptome analysis of auxin transcription factor OsARF17-mediated rice stripe mosaic virus response in rice

INTRODUCTION: Plant auxin response factors (ARFs) play an irreplaceable role in regulating the expression of auxin response genes. Our previous studies have indicated that auxin response factor OsARF17 plays a crucial role in plant defense against diverse rice viruses. METHODS: Utilizing a comparati...

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Autores principales: Ma, Qiang, Wang, Fengmin, Song, Weiqi, Huang, Chaorui, Xie, Kaili, Wei, Zhongyan, Li, Yanjun, Chen, Jianping, Zhang, Hehong, Sun, Zongtao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10033593/
https://www.ncbi.nlm.nih.gov/pubmed/36970706
http://dx.doi.org/10.3389/fmicb.2023.1131212
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author Ma, Qiang
Wang, Fengmin
Song, Weiqi
Huang, Chaorui
Xie, Kaili
Wei, Zhongyan
Li, Yanjun
Chen, Jianping
Zhang, Hehong
Sun, Zongtao
author_facet Ma, Qiang
Wang, Fengmin
Song, Weiqi
Huang, Chaorui
Xie, Kaili
Wei, Zhongyan
Li, Yanjun
Chen, Jianping
Zhang, Hehong
Sun, Zongtao
author_sort Ma, Qiang
collection PubMed
description INTRODUCTION: Plant auxin response factors (ARFs) play an irreplaceable role in regulating the expression of auxin response genes. Our previous studies have indicated that auxin response factor OsARF17 plays a crucial role in plant defense against diverse rice viruses. METHODS: Utilizing a comparative transcriptome analysis of Rice stripe mosaic virus (RSMV)-inoculated OsARF17 mutant rice plants, to further elucidate the molecular mechanism of OsARF17 in antiviral defense pathway. RESULTS: KEGG enrichment analyses showed that the down-regulated differentially expressed genes (DEGs) belonged to plant-pathogen interaction and plant hormone signal transduction pathways were markedly enriched in OsARF17 mutants under RSMV inoculation. Furthermore, Gene ontology (GO) analyses revealed that these genes were enriched in a variety of hormone biosynthetic process, including jasmonic acid (JA), auxin, and abscisic acid (ABA). RT-qPCR assays showed that the induction of plant defense-related genes, such as WRKY transcription factors, OsAHT2 and OsDR8, and JA-related genes, were significantly suppressed in OsARF17 mutants in response to RSMV. DISCUSSION: Our study reveals that OsARF17-mediated antiviral immunity may be achieved through affecting the interaction between different phytohormones and regulating defense gene expression in rice. This study provides new insights into the molecular mechanisms of auxin signaling in the rice-virus interaction.
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spelling pubmed-100335932023-03-24 Transcriptome analysis of auxin transcription factor OsARF17-mediated rice stripe mosaic virus response in rice Ma, Qiang Wang, Fengmin Song, Weiqi Huang, Chaorui Xie, Kaili Wei, Zhongyan Li, Yanjun Chen, Jianping Zhang, Hehong Sun, Zongtao Front Microbiol Microbiology INTRODUCTION: Plant auxin response factors (ARFs) play an irreplaceable role in regulating the expression of auxin response genes. Our previous studies have indicated that auxin response factor OsARF17 plays a crucial role in plant defense against diverse rice viruses. METHODS: Utilizing a comparative transcriptome analysis of Rice stripe mosaic virus (RSMV)-inoculated OsARF17 mutant rice plants, to further elucidate the molecular mechanism of OsARF17 in antiviral defense pathway. RESULTS: KEGG enrichment analyses showed that the down-regulated differentially expressed genes (DEGs) belonged to plant-pathogen interaction and plant hormone signal transduction pathways were markedly enriched in OsARF17 mutants under RSMV inoculation. Furthermore, Gene ontology (GO) analyses revealed that these genes were enriched in a variety of hormone biosynthetic process, including jasmonic acid (JA), auxin, and abscisic acid (ABA). RT-qPCR assays showed that the induction of plant defense-related genes, such as WRKY transcription factors, OsAHT2 and OsDR8, and JA-related genes, were significantly suppressed in OsARF17 mutants in response to RSMV. DISCUSSION: Our study reveals that OsARF17-mediated antiviral immunity may be achieved through affecting the interaction between different phytohormones and regulating defense gene expression in rice. This study provides new insights into the molecular mechanisms of auxin signaling in the rice-virus interaction. Frontiers Media S.A. 2023-03-09 /pmc/articles/PMC10033593/ /pubmed/36970706 http://dx.doi.org/10.3389/fmicb.2023.1131212 Text en Copyright © 2023 Ma, Wang, Song, Huang, Xie, Wei, Li, Chen, Zhang and Sun. 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 Microbiology
Ma, Qiang
Wang, Fengmin
Song, Weiqi
Huang, Chaorui
Xie, Kaili
Wei, Zhongyan
Li, Yanjun
Chen, Jianping
Zhang, Hehong
Sun, Zongtao
Transcriptome analysis of auxin transcription factor OsARF17-mediated rice stripe mosaic virus response in rice
title Transcriptome analysis of auxin transcription factor OsARF17-mediated rice stripe mosaic virus response in rice
title_full Transcriptome analysis of auxin transcription factor OsARF17-mediated rice stripe mosaic virus response in rice
title_fullStr Transcriptome analysis of auxin transcription factor OsARF17-mediated rice stripe mosaic virus response in rice
title_full_unstemmed Transcriptome analysis of auxin transcription factor OsARF17-mediated rice stripe mosaic virus response in rice
title_short Transcriptome analysis of auxin transcription factor OsARF17-mediated rice stripe mosaic virus response in rice
title_sort transcriptome analysis of auxin transcription factor osarf17-mediated rice stripe mosaic virus response in rice
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10033593/
https://www.ncbi.nlm.nih.gov/pubmed/36970706
http://dx.doi.org/10.3389/fmicb.2023.1131212
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