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Tomato NAC Transcription Factor SlSRN1 Positively Regulates Defense Response against Biotic Stress but Negatively Regulates Abiotic Stress Response

Biotic and abiotic stresses are major unfavorable factors that affect crop productivity worldwide. NAC proteins comprise a large family of transcription factors that play important roles in plant growth and development as well as in responses to biotic and abiotic stresses. In a virus-induced gene s...

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Autores principales: Liu, Bo, Ouyang, Zhigang, Zhang, Yafen, Li, Xiaohui, Hong, Yongbo, Huang, Lei, Liu, Shixia, Zhang, Huijuan, Li, Dayong, Song, Fengming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4092073/
https://www.ncbi.nlm.nih.gov/pubmed/25010573
http://dx.doi.org/10.1371/journal.pone.0102067
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author Liu, Bo
Ouyang, Zhigang
Zhang, Yafen
Li, Xiaohui
Hong, Yongbo
Huang, Lei
Liu, Shixia
Zhang, Huijuan
Li, Dayong
Song, Fengming
author_facet Liu, Bo
Ouyang, Zhigang
Zhang, Yafen
Li, Xiaohui
Hong, Yongbo
Huang, Lei
Liu, Shixia
Zhang, Huijuan
Li, Dayong
Song, Fengming
author_sort Liu, Bo
collection PubMed
description Biotic and abiotic stresses are major unfavorable factors that affect crop productivity worldwide. NAC proteins comprise a large family of transcription factors that play important roles in plant growth and development as well as in responses to biotic and abiotic stresses. In a virus-induced gene silencing-based screening to identify genes that are involved in defense response against Botrytis cinerea, we identified a tomato NAC gene SlSRN1 (Solanum lycopersicum Stress-related NAC1). SlSRN1 is a plasma membrane-localized protein with transactivation activity in yeast. Expression of SlSRN1 was significantly induced by infection with B. cinerea or Pseudomonas syringae pv. tomato (Pst) DC3000, leading to 6–8 folds higher than that in the mock-inoculated plants. Expression of SlSRN1 was also induced by salicylic acid, jasmonic acid and 1-amino cyclopropane-1-carboxylic acid and by drought stress. Silencing of SlSRN1 resulted in increased severity of diseases caused by B. cinerea and Pst DC3000. However, silencing of SlSRN1 resulted in increased tolerance against oxidative and drought stresses. Furthermore, silencing of SlSRN1 accelerated accumulation of reactive oxygen species but attenuated expression of defense genes after infection by B. cinerea. Our results demonstrate that SlSRN1 is a positive regulator of defense response against B. cinerea and Pst DC3000 but is a negative regulator for oxidative and drought stress response in tomato.
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spelling pubmed-40920732014-07-18 Tomato NAC Transcription Factor SlSRN1 Positively Regulates Defense Response against Biotic Stress but Negatively Regulates Abiotic Stress Response Liu, Bo Ouyang, Zhigang Zhang, Yafen Li, Xiaohui Hong, Yongbo Huang, Lei Liu, Shixia Zhang, Huijuan Li, Dayong Song, Fengming PLoS One Research Article Biotic and abiotic stresses are major unfavorable factors that affect crop productivity worldwide. NAC proteins comprise a large family of transcription factors that play important roles in plant growth and development as well as in responses to biotic and abiotic stresses. In a virus-induced gene silencing-based screening to identify genes that are involved in defense response against Botrytis cinerea, we identified a tomato NAC gene SlSRN1 (Solanum lycopersicum Stress-related NAC1). SlSRN1 is a plasma membrane-localized protein with transactivation activity in yeast. Expression of SlSRN1 was significantly induced by infection with B. cinerea or Pseudomonas syringae pv. tomato (Pst) DC3000, leading to 6–8 folds higher than that in the mock-inoculated plants. Expression of SlSRN1 was also induced by salicylic acid, jasmonic acid and 1-amino cyclopropane-1-carboxylic acid and by drought stress. Silencing of SlSRN1 resulted in increased severity of diseases caused by B. cinerea and Pst DC3000. However, silencing of SlSRN1 resulted in increased tolerance against oxidative and drought stresses. Furthermore, silencing of SlSRN1 accelerated accumulation of reactive oxygen species but attenuated expression of defense genes after infection by B. cinerea. Our results demonstrate that SlSRN1 is a positive regulator of defense response against B. cinerea and Pst DC3000 but is a negative regulator for oxidative and drought stress response in tomato. Public Library of Science 2014-07-10 /pmc/articles/PMC4092073/ /pubmed/25010573 http://dx.doi.org/10.1371/journal.pone.0102067 Text en © 2014 Liu 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Liu, Bo
Ouyang, Zhigang
Zhang, Yafen
Li, Xiaohui
Hong, Yongbo
Huang, Lei
Liu, Shixia
Zhang, Huijuan
Li, Dayong
Song, Fengming
Tomato NAC Transcription Factor SlSRN1 Positively Regulates Defense Response against Biotic Stress but Negatively Regulates Abiotic Stress Response
title Tomato NAC Transcription Factor SlSRN1 Positively Regulates Defense Response against Biotic Stress but Negatively Regulates Abiotic Stress Response
title_full Tomato NAC Transcription Factor SlSRN1 Positively Regulates Defense Response against Biotic Stress but Negatively Regulates Abiotic Stress Response
title_fullStr Tomato NAC Transcription Factor SlSRN1 Positively Regulates Defense Response against Biotic Stress but Negatively Regulates Abiotic Stress Response
title_full_unstemmed Tomato NAC Transcription Factor SlSRN1 Positively Regulates Defense Response against Biotic Stress but Negatively Regulates Abiotic Stress Response
title_short Tomato NAC Transcription Factor SlSRN1 Positively Regulates Defense Response against Biotic Stress but Negatively Regulates Abiotic Stress Response
title_sort tomato nac transcription factor slsrn1 positively regulates defense response against biotic stress but negatively regulates abiotic stress response
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4092073/
https://www.ncbi.nlm.nih.gov/pubmed/25010573
http://dx.doi.org/10.1371/journal.pone.0102067
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