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Cloning and expression study of a high-affinity nitrate transporter gene from Zea mays L

A nitrate transporter gene, named B46NRT2.1, from salt-tolerant Zea mays L. B46 has been cloned. B46NRT2.1 contained the same domain belonging to the major facilitator superfamily (PLN00028). The results of the phylogenetic tree indicated that B46NRT2.1 exhibits sequence similarity and the closest r...

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Autores principales: Li, Guoliang, Chang, Xu, Dong, Yi, Wang, Mingquan, Yang, Jianfei, Hu, Guanghui, Shumei, Jin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9851203/
https://www.ncbi.nlm.nih.gov/pubmed/36645908
http://dx.doi.org/10.1080/15592324.2022.2163342
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author Li, Guoliang
Chang, Xu
Dong, Yi
Wang, Mingquan
Yang, Jianfei
Hu, Guanghui
Shumei, Jin
author_facet Li, Guoliang
Chang, Xu
Dong, Yi
Wang, Mingquan
Yang, Jianfei
Hu, Guanghui
Shumei, Jin
author_sort Li, Guoliang
collection PubMed
description A nitrate transporter gene, named B46NRT2.1, from salt-tolerant Zea mays L. B46 has been cloned. B46NRT2.1 contained the same domain belonging to the major facilitator superfamily (PLN00028). The results of the phylogenetic tree indicated that B46NRT2.1 exhibits sequence similarity and the closest relationship with those known nitrate transporters of the NRT2 family. Through RT-qPCR, we found that the expression of B46NRT2.1 mainly happens in the root and leaf. Moreover, the treatment with NaCl, Na(2)CO(3), and NaHCO(3) could significantly increase the expression of B46NRT2.1. B46NRT2.1 was located in the plasma membrane. Through the study of yeast and plant salt response brought by B46NRT2.1 overexpression, we have preliminary knowledge that the expression of B46NRT2.1 makes yeast and plants respond to salt shock. There are 10 different kinds of cis-acting regulatory elements (CRES) in the promotor sequences of B46NRT2.1 gene using the PlantCARE web server to analyze. It mainly includes hormone response, abscisic acid, salicylic acid, gibberellin, methyl jasmonate, and auxin. The B46NRT2.1 gene’s co-expression network showed that it was co-expressed with a number of other genes in several biological pathways, including regulation of NO(3) long-distance transit, modulation of nitrate sensing and metabolism, nitrate assimilation, and transduction of Jasmonic acid-independent wound signal. The results of this work should serve as a good scientific foundation for further research on the functions of the NRT2 gene family in plants (inbred line B46), and this research adds to our understanding of the molecular mechanisms under salt tolerance.
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spelling pubmed-98512032023-01-20 Cloning and expression study of a high-affinity nitrate transporter gene from Zea mays L Li, Guoliang Chang, Xu Dong, Yi Wang, Mingquan Yang, Jianfei Hu, Guanghui Shumei, Jin Plant Signal Behav Research Paper A nitrate transporter gene, named B46NRT2.1, from salt-tolerant Zea mays L. B46 has been cloned. B46NRT2.1 contained the same domain belonging to the major facilitator superfamily (PLN00028). The results of the phylogenetic tree indicated that B46NRT2.1 exhibits sequence similarity and the closest relationship with those known nitrate transporters of the NRT2 family. Through RT-qPCR, we found that the expression of B46NRT2.1 mainly happens in the root and leaf. Moreover, the treatment with NaCl, Na(2)CO(3), and NaHCO(3) could significantly increase the expression of B46NRT2.1. B46NRT2.1 was located in the plasma membrane. Through the study of yeast and plant salt response brought by B46NRT2.1 overexpression, we have preliminary knowledge that the expression of B46NRT2.1 makes yeast and plants respond to salt shock. There are 10 different kinds of cis-acting regulatory elements (CRES) in the promotor sequences of B46NRT2.1 gene using the PlantCARE web server to analyze. It mainly includes hormone response, abscisic acid, salicylic acid, gibberellin, methyl jasmonate, and auxin. The B46NRT2.1 gene’s co-expression network showed that it was co-expressed with a number of other genes in several biological pathways, including regulation of NO(3) long-distance transit, modulation of nitrate sensing and metabolism, nitrate assimilation, and transduction of Jasmonic acid-independent wound signal. The results of this work should serve as a good scientific foundation for further research on the functions of the NRT2 gene family in plants (inbred line B46), and this research adds to our understanding of the molecular mechanisms under salt tolerance. Taylor & Francis 2023-01-16 /pmc/articles/PMC9851203/ /pubmed/36645908 http://dx.doi.org/10.1080/15592324.2022.2163342 Text en © 2023 The Author(s). Published with license by Taylor & Francis Group, LLC. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Li, Guoliang
Chang, Xu
Dong, Yi
Wang, Mingquan
Yang, Jianfei
Hu, Guanghui
Shumei, Jin
Cloning and expression study of a high-affinity nitrate transporter gene from Zea mays L
title Cloning and expression study of a high-affinity nitrate transporter gene from Zea mays L
title_full Cloning and expression study of a high-affinity nitrate transporter gene from Zea mays L
title_fullStr Cloning and expression study of a high-affinity nitrate transporter gene from Zea mays L
title_full_unstemmed Cloning and expression study of a high-affinity nitrate transporter gene from Zea mays L
title_short Cloning and expression study of a high-affinity nitrate transporter gene from Zea mays L
title_sort cloning and expression study of a high-affinity nitrate transporter gene from zea mays l
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9851203/
https://www.ncbi.nlm.nih.gov/pubmed/36645908
http://dx.doi.org/10.1080/15592324.2022.2163342
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