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A WRKY transcription factor PbrWRKY53 from Pyrus betulaefolia is involved in drought tolerance and AsA accumulation

WRKY comprises a large family of transcription factors in plants, but most WRKY members are still poorly understood. In this study, we report the identification and functional characterization of PbrWRKY53 isolated from Pyrus betulaefolia. PbrWRKY53 was greatly up‐regulated by drought and abscisic a...

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Autores principales: Liu, Yue, Yang, Tianyuan, Lin, Zekun, Gu, Bingjie, Xing, Caihua, Zhao, Liangyi, Dong, Huizhen, Gao, Junzhi, Xie, Zhihua, Zhang, Shaoling, Huang, Xiaosan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6686137/
https://www.ncbi.nlm.nih.gov/pubmed/30801865
http://dx.doi.org/10.1111/pbi.13099
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author Liu, Yue
Yang, Tianyuan
Lin, Zekun
Gu, Bingjie
Xing, Caihua
Zhao, Liangyi
Dong, Huizhen
Gao, Junzhi
Xie, Zhihua
Zhang, Shaoling
Huang, Xiaosan
author_facet Liu, Yue
Yang, Tianyuan
Lin, Zekun
Gu, Bingjie
Xing, Caihua
Zhao, Liangyi
Dong, Huizhen
Gao, Junzhi
Xie, Zhihua
Zhang, Shaoling
Huang, Xiaosan
author_sort Liu, Yue
collection PubMed
description WRKY comprises a large family of transcription factors in plants, but most WRKY members are still poorly understood. In this study, we report the identification and functional characterization of PbrWRKY53 isolated from Pyrus betulaefolia. PbrWRKY53 was greatly up‐regulated by drought and abscisic acid, but slightly induced by salt and cold. Subcellar localization analyses showed that PbrWRKY53 was located in the nucleus. Ectopic expression of PbrWRKY53 in tobacco and Pyrus ussuriensis conferred enhanced tolerance to drought stress. The transgenic plants exhibited better water status, less reactive oxygen species generation and higher levels of antioxidant enzyme activities and metabolites than the wild type. In addition, overexpression of PbrWRKY53 in transgenic tobacco resulted in enhanced expression level of PbrNCED1, and led to the increase in larger amount of vitamin C accumulation in comparison to WT. Knock‐down of PbrWRKY53 in P. ussuriensis down‐regulated PbrNCED1 abundance, accompanied by compromised drought tolerance. Yeast one‐hybrid assay, EMSA and transient expression analysis demonstrated that PbrWRKY53 could bind to the W‐box element in the promoter region of PbrNCED1. Taken together, these results demonstrated that PbrWRKY53 plays a positive role in drought tolerance, which might be, at least in part, promoting production of vitamin C via regulating PbrNCED1 expression.
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spelling pubmed-66861372019-08-12 A WRKY transcription factor PbrWRKY53 from Pyrus betulaefolia is involved in drought tolerance and AsA accumulation Liu, Yue Yang, Tianyuan Lin, Zekun Gu, Bingjie Xing, Caihua Zhao, Liangyi Dong, Huizhen Gao, Junzhi Xie, Zhihua Zhang, Shaoling Huang, Xiaosan Plant Biotechnol J Research Articles WRKY comprises a large family of transcription factors in plants, but most WRKY members are still poorly understood. In this study, we report the identification and functional characterization of PbrWRKY53 isolated from Pyrus betulaefolia. PbrWRKY53 was greatly up‐regulated by drought and abscisic acid, but slightly induced by salt and cold. Subcellar localization analyses showed that PbrWRKY53 was located in the nucleus. Ectopic expression of PbrWRKY53 in tobacco and Pyrus ussuriensis conferred enhanced tolerance to drought stress. The transgenic plants exhibited better water status, less reactive oxygen species generation and higher levels of antioxidant enzyme activities and metabolites than the wild type. In addition, overexpression of PbrWRKY53 in transgenic tobacco resulted in enhanced expression level of PbrNCED1, and led to the increase in larger amount of vitamin C accumulation in comparison to WT. Knock‐down of PbrWRKY53 in P. ussuriensis down‐regulated PbrNCED1 abundance, accompanied by compromised drought tolerance. Yeast one‐hybrid assay, EMSA and transient expression analysis demonstrated that PbrWRKY53 could bind to the W‐box element in the promoter region of PbrNCED1. Taken together, these results demonstrated that PbrWRKY53 plays a positive role in drought tolerance, which might be, at least in part, promoting production of vitamin C via regulating PbrNCED1 expression. John Wiley and Sons Inc. 2019-03-19 2019-09 /pmc/articles/PMC6686137/ /pubmed/30801865 http://dx.doi.org/10.1111/pbi.13099 Text en © 2019 The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Liu, Yue
Yang, Tianyuan
Lin, Zekun
Gu, Bingjie
Xing, Caihua
Zhao, Liangyi
Dong, Huizhen
Gao, Junzhi
Xie, Zhihua
Zhang, Shaoling
Huang, Xiaosan
A WRKY transcription factor PbrWRKY53 from Pyrus betulaefolia is involved in drought tolerance and AsA accumulation
title A WRKY transcription factor PbrWRKY53 from Pyrus betulaefolia is involved in drought tolerance and AsA accumulation
title_full A WRKY transcription factor PbrWRKY53 from Pyrus betulaefolia is involved in drought tolerance and AsA accumulation
title_fullStr A WRKY transcription factor PbrWRKY53 from Pyrus betulaefolia is involved in drought tolerance and AsA accumulation
title_full_unstemmed A WRKY transcription factor PbrWRKY53 from Pyrus betulaefolia is involved in drought tolerance and AsA accumulation
title_short A WRKY transcription factor PbrWRKY53 from Pyrus betulaefolia is involved in drought tolerance and AsA accumulation
title_sort wrky transcription factor pbrwrky53 from pyrus betulaefolia is involved in drought tolerance and asa accumulation
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6686137/
https://www.ncbi.nlm.nih.gov/pubmed/30801865
http://dx.doi.org/10.1111/pbi.13099
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