Cargando…
The Sweet Potato NAC-Domain Transcription Factor IbNAC1 Is Dynamically Coordinated by the Activator IbbHLH3 and the Repressor IbbHLH4 to Reprogram the Defense Mechanism against Wounding
IbNAC1 is known to activate the defense system by reprogramming a genetic network against herbivory in sweet potato. This regulatory activity elevates plant defense potential but relatively weakens plants by IbNAC1-mediated JA response. The mechanism controlling IbNAC1 expression to balance plant vi...
Autores principales: | , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2016
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5079590/ https://www.ncbi.nlm.nih.gov/pubmed/27780204 http://dx.doi.org/10.1371/journal.pgen.1006397 |
_version_ | 1782462571298684928 |
---|---|
author | Chen, Shi-Peng Kuo, Chih-Hsien Lu, Hsueh-Han Lo, Hui-Shan Yeh, Kai-Wun |
author_facet | Chen, Shi-Peng Kuo, Chih-Hsien Lu, Hsueh-Han Lo, Hui-Shan Yeh, Kai-Wun |
author_sort | Chen, Shi-Peng |
collection | PubMed |
description | IbNAC1 is known to activate the defense system by reprogramming a genetic network against herbivory in sweet potato. This regulatory activity elevates plant defense potential but relatively weakens plants by IbNAC1-mediated JA response. The mechanism controlling IbNAC1 expression to balance plant vitality and survival remains unclear. In this study, a wound-responsive G-box cis-element in the IbNAC1 promoter from -1484 to -1479 bp was identified. From a screen of wound-activated transcriptomic data, one transcriptional activator, IbbHLH3, and one repressor, IbbHLH4, were selected that bind to and activate or repress, respectively, the G-box motif in the IbNAC1 promoter to modulate the IbNAC1-mediated response. In the early wound response, the IbbHLH3-IbbHLH3 protein complex binds to the G-box motif to activate IbNAC1 expression. Thus, an elegant defense network is activated against wounding stress. Until the late stages of wounding, IbbHLH4 interacts with IbbHLH3, and the IbbHLH3-IbbHLH4 heterodimer competes with the IbbHLH3-IbbHLH3 complex to bind the G-box and suppress IbNAC1 expression and timely terminates the defense network. Moreover, the JAZs and IbEIL1 proteins interact with IbbHLH3 to repress the transactivation function of IbbHLH3 in non-wounded condition, but their transcription is immediately inhibited upon early wounding. Our work provides a genetic model that accurately switches the regulatory mechanism of IbNAC1 expression to adjust wounding physiology and represents a delicate defense regulatory network in plants. |
format | Online Article Text |
id | pubmed-5079590 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2016 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-50795902016-11-04 The Sweet Potato NAC-Domain Transcription Factor IbNAC1 Is Dynamically Coordinated by the Activator IbbHLH3 and the Repressor IbbHLH4 to Reprogram the Defense Mechanism against Wounding Chen, Shi-Peng Kuo, Chih-Hsien Lu, Hsueh-Han Lo, Hui-Shan Yeh, Kai-Wun PLoS Genet Research Article IbNAC1 is known to activate the defense system by reprogramming a genetic network against herbivory in sweet potato. This regulatory activity elevates plant defense potential but relatively weakens plants by IbNAC1-mediated JA response. The mechanism controlling IbNAC1 expression to balance plant vitality and survival remains unclear. In this study, a wound-responsive G-box cis-element in the IbNAC1 promoter from -1484 to -1479 bp was identified. From a screen of wound-activated transcriptomic data, one transcriptional activator, IbbHLH3, and one repressor, IbbHLH4, were selected that bind to and activate or repress, respectively, the G-box motif in the IbNAC1 promoter to modulate the IbNAC1-mediated response. In the early wound response, the IbbHLH3-IbbHLH3 protein complex binds to the G-box motif to activate IbNAC1 expression. Thus, an elegant defense network is activated against wounding stress. Until the late stages of wounding, IbbHLH4 interacts with IbbHLH3, and the IbbHLH3-IbbHLH4 heterodimer competes with the IbbHLH3-IbbHLH3 complex to bind the G-box and suppress IbNAC1 expression and timely terminates the defense network. Moreover, the JAZs and IbEIL1 proteins interact with IbbHLH3 to repress the transactivation function of IbbHLH3 in non-wounded condition, but their transcription is immediately inhibited upon early wounding. Our work provides a genetic model that accurately switches the regulatory mechanism of IbNAC1 expression to adjust wounding physiology and represents a delicate defense regulatory network in plants. Public Library of Science 2016-10-25 /pmc/articles/PMC5079590/ /pubmed/27780204 http://dx.doi.org/10.1371/journal.pgen.1006397 Text en © 2016 Chen 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 Chen, Shi-Peng Kuo, Chih-Hsien Lu, Hsueh-Han Lo, Hui-Shan Yeh, Kai-Wun The Sweet Potato NAC-Domain Transcription Factor IbNAC1 Is Dynamically Coordinated by the Activator IbbHLH3 and the Repressor IbbHLH4 to Reprogram the Defense Mechanism against Wounding |
title | The Sweet Potato NAC-Domain Transcription Factor IbNAC1 Is Dynamically Coordinated by the Activator IbbHLH3 and the Repressor IbbHLH4 to Reprogram the Defense Mechanism against Wounding |
title_full | The Sweet Potato NAC-Domain Transcription Factor IbNAC1 Is Dynamically Coordinated by the Activator IbbHLH3 and the Repressor IbbHLH4 to Reprogram the Defense Mechanism against Wounding |
title_fullStr | The Sweet Potato NAC-Domain Transcription Factor IbNAC1 Is Dynamically Coordinated by the Activator IbbHLH3 and the Repressor IbbHLH4 to Reprogram the Defense Mechanism against Wounding |
title_full_unstemmed | The Sweet Potato NAC-Domain Transcription Factor IbNAC1 Is Dynamically Coordinated by the Activator IbbHLH3 and the Repressor IbbHLH4 to Reprogram the Defense Mechanism against Wounding |
title_short | The Sweet Potato NAC-Domain Transcription Factor IbNAC1 Is Dynamically Coordinated by the Activator IbbHLH3 and the Repressor IbbHLH4 to Reprogram the Defense Mechanism against Wounding |
title_sort | sweet potato nac-domain transcription factor ibnac1 is dynamically coordinated by the activator ibbhlh3 and the repressor ibbhlh4 to reprogram the defense mechanism against wounding |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5079590/ https://www.ncbi.nlm.nih.gov/pubmed/27780204 http://dx.doi.org/10.1371/journal.pgen.1006397 |
work_keys_str_mv | AT chenshipeng thesweetpotatonacdomaintranscriptionfactoribnac1isdynamicallycoordinatedbytheactivatoribbhlh3andtherepressoribbhlh4toreprogramthedefensemechanismagainstwounding AT kuochihhsien thesweetpotatonacdomaintranscriptionfactoribnac1isdynamicallycoordinatedbytheactivatoribbhlh3andtherepressoribbhlh4toreprogramthedefensemechanismagainstwounding AT luhsuehhan thesweetpotatonacdomaintranscriptionfactoribnac1isdynamicallycoordinatedbytheactivatoribbhlh3andtherepressoribbhlh4toreprogramthedefensemechanismagainstwounding AT lohuishan thesweetpotatonacdomaintranscriptionfactoribnac1isdynamicallycoordinatedbytheactivatoribbhlh3andtherepressoribbhlh4toreprogramthedefensemechanismagainstwounding AT yehkaiwun thesweetpotatonacdomaintranscriptionfactoribnac1isdynamicallycoordinatedbytheactivatoribbhlh3andtherepressoribbhlh4toreprogramthedefensemechanismagainstwounding AT chenshipeng sweetpotatonacdomaintranscriptionfactoribnac1isdynamicallycoordinatedbytheactivatoribbhlh3andtherepressoribbhlh4toreprogramthedefensemechanismagainstwounding AT kuochihhsien sweetpotatonacdomaintranscriptionfactoribnac1isdynamicallycoordinatedbytheactivatoribbhlh3andtherepressoribbhlh4toreprogramthedefensemechanismagainstwounding AT luhsuehhan sweetpotatonacdomaintranscriptionfactoribnac1isdynamicallycoordinatedbytheactivatoribbhlh3andtherepressoribbhlh4toreprogramthedefensemechanismagainstwounding AT lohuishan sweetpotatonacdomaintranscriptionfactoribnac1isdynamicallycoordinatedbytheactivatoribbhlh3andtherepressoribbhlh4toreprogramthedefensemechanismagainstwounding AT yehkaiwun sweetpotatonacdomaintranscriptionfactoribnac1isdynamicallycoordinatedbytheactivatoribbhlh3andtherepressoribbhlh4toreprogramthedefensemechanismagainstwounding |