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Deciphering the Molecular Mechanisms of Chilling Tolerance in Lsi1-Overexpressing Rice

Improving tolerance to low-temperature stress during the rice seedling stage is of great significance in agricultural science. In this study, using the low silicon gene 1 (Lsi1)-overexpressing (Dular-OE) and wild-type rice (Dular-WT), we showed that Lsi1 overexpression enhances chilling tolerance in...

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Autores principales: Li, Zhong, Umar Khan, Muhammad, Yan, Xue, Mu, Dan, Xie, Yuebin, Waqas, Muhammad, Wu, Xin, Letuma, Puleng, Fang, Changxun, Lin, Wenxiong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9103898/
https://www.ncbi.nlm.nih.gov/pubmed/35563058
http://dx.doi.org/10.3390/ijms23094667
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author Li, Zhong
Umar Khan, Muhammad
Yan, Xue
Mu, Dan
Xie, Yuebin
Waqas, Muhammad
Wu, Xin
Letuma, Puleng
Fang, Changxun
Lin, Wenxiong
author_facet Li, Zhong
Umar Khan, Muhammad
Yan, Xue
Mu, Dan
Xie, Yuebin
Waqas, Muhammad
Wu, Xin
Letuma, Puleng
Fang, Changxun
Lin, Wenxiong
author_sort Li, Zhong
collection PubMed
description Improving tolerance to low-temperature stress during the rice seedling stage is of great significance in agricultural science. In this study, using the low silicon gene 1 (Lsi1)-overexpressing (Dular-OE) and wild-type rice (Dular-WT), we showed that Lsi1 overexpression enhances chilling tolerance in Dular-OE. The overexpression of the Lsi1 increases silicon absorption, but it was not the main reason for chilling tolerance in Dular-OE. Instead, our data suggest that the overexpression of a Lsi1-encoding NIP and its interaction with key proteins lead to chilling tolerance in Dular-OE. Additionally, we show that the high-mobility group protein (HMG1) binds to the promoter of Lsi1, positively regulating its expression. Moreover, Nod26-like major intrinsic protein (NIP)’s interaction with α and β subunits of ATP synthase and the 14-3-3f protein was validated by co-immunoprecipitation (Co-IP), bimolecular fluorescent complementary (BiFC), and GST-pulldown assays. Western blotting revealed that the overexpression of NIP positively regulates the ATP-synthase subunits that subsequently upregulate calcineurin B-like interacting protein kinases (CIPK) negatively regulating 14-3-3f. Overall, these NIP-mediated changes trigger corresponding pathways in an orderly manner, enhancing chilling tolerance in Dular-OE.
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spelling pubmed-91038982022-05-14 Deciphering the Molecular Mechanisms of Chilling Tolerance in Lsi1-Overexpressing Rice Li, Zhong Umar Khan, Muhammad Yan, Xue Mu, Dan Xie, Yuebin Waqas, Muhammad Wu, Xin Letuma, Puleng Fang, Changxun Lin, Wenxiong Int J Mol Sci Article Improving tolerance to low-temperature stress during the rice seedling stage is of great significance in agricultural science. In this study, using the low silicon gene 1 (Lsi1)-overexpressing (Dular-OE) and wild-type rice (Dular-WT), we showed that Lsi1 overexpression enhances chilling tolerance in Dular-OE. The overexpression of the Lsi1 increases silicon absorption, but it was not the main reason for chilling tolerance in Dular-OE. Instead, our data suggest that the overexpression of a Lsi1-encoding NIP and its interaction with key proteins lead to chilling tolerance in Dular-OE. Additionally, we show that the high-mobility group protein (HMG1) binds to the promoter of Lsi1, positively regulating its expression. Moreover, Nod26-like major intrinsic protein (NIP)’s interaction with α and β subunits of ATP synthase and the 14-3-3f protein was validated by co-immunoprecipitation (Co-IP), bimolecular fluorescent complementary (BiFC), and GST-pulldown assays. Western blotting revealed that the overexpression of NIP positively regulates the ATP-synthase subunits that subsequently upregulate calcineurin B-like interacting protein kinases (CIPK) negatively regulating 14-3-3f. Overall, these NIP-mediated changes trigger corresponding pathways in an orderly manner, enhancing chilling tolerance in Dular-OE. MDPI 2022-04-23 /pmc/articles/PMC9103898/ /pubmed/35563058 http://dx.doi.org/10.3390/ijms23094667 Text en © 2022 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
Li, Zhong
Umar Khan, Muhammad
Yan, Xue
Mu, Dan
Xie, Yuebin
Waqas, Muhammad
Wu, Xin
Letuma, Puleng
Fang, Changxun
Lin, Wenxiong
Deciphering the Molecular Mechanisms of Chilling Tolerance in Lsi1-Overexpressing Rice
title Deciphering the Molecular Mechanisms of Chilling Tolerance in Lsi1-Overexpressing Rice
title_full Deciphering the Molecular Mechanisms of Chilling Tolerance in Lsi1-Overexpressing Rice
title_fullStr Deciphering the Molecular Mechanisms of Chilling Tolerance in Lsi1-Overexpressing Rice
title_full_unstemmed Deciphering the Molecular Mechanisms of Chilling Tolerance in Lsi1-Overexpressing Rice
title_short Deciphering the Molecular Mechanisms of Chilling Tolerance in Lsi1-Overexpressing Rice
title_sort deciphering the molecular mechanisms of chilling tolerance in lsi1-overexpressing rice
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9103898/
https://www.ncbi.nlm.nih.gov/pubmed/35563058
http://dx.doi.org/10.3390/ijms23094667
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