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OsWRKY97, an Abiotic Stress-Induced Gene of Rice, Plays a Key Role in Drought Tolerance

Drought stress is one of the major causes of crop losses. The WRKY families play important roles in the regulation of many plant processes, including drought stress response. However, the function of individual WRKY genes in plants is still under investigation. Here, we identified a new member of th...

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Autores principales: Lv, Miaomiao, Hou, Dejia, Wan, Jiale, Ye, Taozhi, Zhang, Lin, Fan, Jiangbo, Li, Chunliu, Dong, Yilun, Chen, Wenqian, Rong, Songhao, Sun, Yihao, Xu, Jinghong, Cai, Liangjun, Gao, Xiaoling, Zhu, Jianqing, Huang, Zhengjian, Xu, Zhengjun, Li, Lihua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10536077/
https://www.ncbi.nlm.nih.gov/pubmed/37765501
http://dx.doi.org/10.3390/plants12183338
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author Lv, Miaomiao
Hou, Dejia
Wan, Jiale
Ye, Taozhi
Zhang, Lin
Fan, Jiangbo
Li, Chunliu
Dong, Yilun
Chen, Wenqian
Rong, Songhao
Sun, Yihao
Xu, Jinghong
Cai, Liangjun
Gao, Xiaoling
Zhu, Jianqing
Huang, Zhengjian
Xu, Zhengjun
Li, Lihua
author_facet Lv, Miaomiao
Hou, Dejia
Wan, Jiale
Ye, Taozhi
Zhang, Lin
Fan, Jiangbo
Li, Chunliu
Dong, Yilun
Chen, Wenqian
Rong, Songhao
Sun, Yihao
Xu, Jinghong
Cai, Liangjun
Gao, Xiaoling
Zhu, Jianqing
Huang, Zhengjian
Xu, Zhengjun
Li, Lihua
author_sort Lv, Miaomiao
collection PubMed
description Drought stress is one of the major causes of crop losses. The WRKY families play important roles in the regulation of many plant processes, including drought stress response. However, the function of individual WRKY genes in plants is still under investigation. Here, we identified a new member of the WRKY families, OsWRKY97, and analyzed its role in stress resistance by using a series of transgenic plant lines. OsWRKY97 positively regulates drought tolerance in rice. OsWRKY97 was expressed in all examined tissues and could be induced by various abiotic stresses and abscisic acid (ABA). OsWRKY97-GFP was localized to the nucleus. Various abiotic stress-related cis-acting elements were observed in the promoters of OsWRKY97. The results of OsWRKY97-overexpressing plant analyses revealed that OsWRKY97 plays a positive role in drought stress tolerance. In addition, physiological analyses revealed that OsWRKY97 improves drought stress tolerance by improving the osmotic adjustment ability, oxidative stress tolerance, and water retention capacity of the plant. Furthermore, OsWRKY97-overexpressing plants also showed higher sensitivity to exogenous ABA compared with that of wild-type rice (WT). Overexpression of OsWRKY97 also affected the transcript levels of ABA-responsive genes and the accumulation of ABA. These results indicate that OsWRKY97 plays a crucial role in the response to drought stress and may possess high potential value in improving drought tolerance in rice.
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spelling pubmed-105360772023-09-29 OsWRKY97, an Abiotic Stress-Induced Gene of Rice, Plays a Key Role in Drought Tolerance Lv, Miaomiao Hou, Dejia Wan, Jiale Ye, Taozhi Zhang, Lin Fan, Jiangbo Li, Chunliu Dong, Yilun Chen, Wenqian Rong, Songhao Sun, Yihao Xu, Jinghong Cai, Liangjun Gao, Xiaoling Zhu, Jianqing Huang, Zhengjian Xu, Zhengjun Li, Lihua Plants (Basel) Article Drought stress is one of the major causes of crop losses. The WRKY families play important roles in the regulation of many plant processes, including drought stress response. However, the function of individual WRKY genes in plants is still under investigation. Here, we identified a new member of the WRKY families, OsWRKY97, and analyzed its role in stress resistance by using a series of transgenic plant lines. OsWRKY97 positively regulates drought tolerance in rice. OsWRKY97 was expressed in all examined tissues and could be induced by various abiotic stresses and abscisic acid (ABA). OsWRKY97-GFP was localized to the nucleus. Various abiotic stress-related cis-acting elements were observed in the promoters of OsWRKY97. The results of OsWRKY97-overexpressing plant analyses revealed that OsWRKY97 plays a positive role in drought stress tolerance. In addition, physiological analyses revealed that OsWRKY97 improves drought stress tolerance by improving the osmotic adjustment ability, oxidative stress tolerance, and water retention capacity of the plant. Furthermore, OsWRKY97-overexpressing plants also showed higher sensitivity to exogenous ABA compared with that of wild-type rice (WT). Overexpression of OsWRKY97 also affected the transcript levels of ABA-responsive genes and the accumulation of ABA. These results indicate that OsWRKY97 plays a crucial role in the response to drought stress and may possess high potential value in improving drought tolerance in rice. MDPI 2023-09-21 /pmc/articles/PMC10536077/ /pubmed/37765501 http://dx.doi.org/10.3390/plants12183338 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lv, Miaomiao
Hou, Dejia
Wan, Jiale
Ye, Taozhi
Zhang, Lin
Fan, Jiangbo
Li, Chunliu
Dong, Yilun
Chen, Wenqian
Rong, Songhao
Sun, Yihao
Xu, Jinghong
Cai, Liangjun
Gao, Xiaoling
Zhu, Jianqing
Huang, Zhengjian
Xu, Zhengjun
Li, Lihua
OsWRKY97, an Abiotic Stress-Induced Gene of Rice, Plays a Key Role in Drought Tolerance
title OsWRKY97, an Abiotic Stress-Induced Gene of Rice, Plays a Key Role in Drought Tolerance
title_full OsWRKY97, an Abiotic Stress-Induced Gene of Rice, Plays a Key Role in Drought Tolerance
title_fullStr OsWRKY97, an Abiotic Stress-Induced Gene of Rice, Plays a Key Role in Drought Tolerance
title_full_unstemmed OsWRKY97, an Abiotic Stress-Induced Gene of Rice, Plays a Key Role in Drought Tolerance
title_short OsWRKY97, an Abiotic Stress-Induced Gene of Rice, Plays a Key Role in Drought Tolerance
title_sort oswrky97, an abiotic stress-induced gene of rice, plays a key role in drought tolerance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10536077/
https://www.ncbi.nlm.nih.gov/pubmed/37765501
http://dx.doi.org/10.3390/plants12183338
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