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OsCIPK9 Interacts with OsSOS3 and Affects Salt-Related Transport to Improve Salt Tolerance

Salt is harmful to crop production. Therefore, it is important to understand the mechanism of salt tolerance in rice. CIPK genes have various functions, including regulating salt tolerance and other types of stress and nitrogen use efficiency. In rice, OsCIPK24 is known to regulate salt tolerance, b...

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Autores principales: Zhou, Zhenling, Tang, Weijie, Sun, Zhiguang, Li, Jingfang, Yang, Bo, Liu, Yan, Wang, Baoxiang, Xu, Dayong, Yang, Jianchang, Zhang, Yunhui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10647249/
https://www.ncbi.nlm.nih.gov/pubmed/37960079
http://dx.doi.org/10.3390/plants12213723
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author Zhou, Zhenling
Tang, Weijie
Sun, Zhiguang
Li, Jingfang
Yang, Bo
Liu, Yan
Wang, Baoxiang
Xu, Dayong
Yang, Jianchang
Zhang, Yunhui
author_facet Zhou, Zhenling
Tang, Weijie
Sun, Zhiguang
Li, Jingfang
Yang, Bo
Liu, Yan
Wang, Baoxiang
Xu, Dayong
Yang, Jianchang
Zhang, Yunhui
author_sort Zhou, Zhenling
collection PubMed
description Salt is harmful to crop production. Therefore, it is important to understand the mechanism of salt tolerance in rice. CIPK genes have various functions, including regulating salt tolerance and other types of stress and nitrogen use efficiency. In rice, OsCIPK24 is known to regulate salt tolerance, but other OsCIPKs could also function in salt tolerance. In this study, we identified another OsCIPK—OsCIPK9—that can regulate salt tolerance. Knockout of OsCIPK9 in rice could improve salt tolerance. Through expression analyses, OsCIPK9 was found to be mainly expressed in the roots and less expressed in mature leaves. Meanwhile, OsCIPK9 had the highest expression 6 h after salt treatment. In addition, we proved the interaction between OsCIPK9 and OsSOS3. The RNA-seq data showed that OsCIPK9 strongly responded to salt treatment, and the transporters related to salt tolerance may be downstream genes of OsCIPK9. Finally, haplotype analyses revealed that Hap6 and Hap8 mainly exist in indica, potentially providing a higher salt tolerance. Overall, a negative regulator of salt tolerance, OsCIPK9, which interacted with OsSOS3 similarly to OsCIPK24 and influenced salt-related transporters, was identified, and editing OsCIPK9 potentially could be helpful for breeding salt-tolerant rice.
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spelling pubmed-106472492023-10-30 OsCIPK9 Interacts with OsSOS3 and Affects Salt-Related Transport to Improve Salt Tolerance Zhou, Zhenling Tang, Weijie Sun, Zhiguang Li, Jingfang Yang, Bo Liu, Yan Wang, Baoxiang Xu, Dayong Yang, Jianchang Zhang, Yunhui Plants (Basel) Article Salt is harmful to crop production. Therefore, it is important to understand the mechanism of salt tolerance in rice. CIPK genes have various functions, including regulating salt tolerance and other types of stress and nitrogen use efficiency. In rice, OsCIPK24 is known to regulate salt tolerance, but other OsCIPKs could also function in salt tolerance. In this study, we identified another OsCIPK—OsCIPK9—that can regulate salt tolerance. Knockout of OsCIPK9 in rice could improve salt tolerance. Through expression analyses, OsCIPK9 was found to be mainly expressed in the roots and less expressed in mature leaves. Meanwhile, OsCIPK9 had the highest expression 6 h after salt treatment. In addition, we proved the interaction between OsCIPK9 and OsSOS3. The RNA-seq data showed that OsCIPK9 strongly responded to salt treatment, and the transporters related to salt tolerance may be downstream genes of OsCIPK9. Finally, haplotype analyses revealed that Hap6 and Hap8 mainly exist in indica, potentially providing a higher salt tolerance. Overall, a negative regulator of salt tolerance, OsCIPK9, which interacted with OsSOS3 similarly to OsCIPK24 and influenced salt-related transporters, was identified, and editing OsCIPK9 potentially could be helpful for breeding salt-tolerant rice. MDPI 2023-10-30 /pmc/articles/PMC10647249/ /pubmed/37960079 http://dx.doi.org/10.3390/plants12213723 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
Zhou, Zhenling
Tang, Weijie
Sun, Zhiguang
Li, Jingfang
Yang, Bo
Liu, Yan
Wang, Baoxiang
Xu, Dayong
Yang, Jianchang
Zhang, Yunhui
OsCIPK9 Interacts with OsSOS3 and Affects Salt-Related Transport to Improve Salt Tolerance
title OsCIPK9 Interacts with OsSOS3 and Affects Salt-Related Transport to Improve Salt Tolerance
title_full OsCIPK9 Interacts with OsSOS3 and Affects Salt-Related Transport to Improve Salt Tolerance
title_fullStr OsCIPK9 Interacts with OsSOS3 and Affects Salt-Related Transport to Improve Salt Tolerance
title_full_unstemmed OsCIPK9 Interacts with OsSOS3 and Affects Salt-Related Transport to Improve Salt Tolerance
title_short OsCIPK9 Interacts with OsSOS3 and Affects Salt-Related Transport to Improve Salt Tolerance
title_sort oscipk9 interacts with ossos3 and affects salt-related transport to improve salt tolerance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10647249/
https://www.ncbi.nlm.nih.gov/pubmed/37960079
http://dx.doi.org/10.3390/plants12213723
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