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Molecular identification and physiological functional analysis of NtNRT1.1B that mediated nitrate long-distance transport and improved plant growth when overexpressed in tobacco
Although recent physiological studies demonstrate that flue-cured tobacco preferentially utilizes nitrate ( [Formula: see text] ) or ammonium nitrate (NH(4)NO(3)), and possesses both high- and low-affinity uptake systems for [Formula: see text] , little is known about the molecular component(s) resp...
Autores principales: | , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10011135/ https://www.ncbi.nlm.nih.gov/pubmed/36925751 http://dx.doi.org/10.3389/fpls.2023.1078978 |
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author | Wu, Changzheng Xiang, Yucheng Huang, Pingjun Zhang, Mingfa Fang, Ming Yang, Weiqin Li, Wenrui Cao, Fengchun Liu, Lai-Hua Pu, Wenxuan Duan, Shuhui |
author_facet | Wu, Changzheng Xiang, Yucheng Huang, Pingjun Zhang, Mingfa Fang, Ming Yang, Weiqin Li, Wenrui Cao, Fengchun Liu, Lai-Hua Pu, Wenxuan Duan, Shuhui |
author_sort | Wu, Changzheng |
collection | PubMed |
description | Although recent physiological studies demonstrate that flue-cured tobacco preferentially utilizes nitrate ( [Formula: see text] ) or ammonium nitrate (NH(4)NO(3)), and possesses both high- and low-affinity uptake systems for [Formula: see text] , little is known about the molecular component(s) responsible for acquisition and translocation in this crop. Here we provide experimental data showing that NtNRT1.1B with a 1,785-bp coding sequence exhibited a function in mediating [Formula: see text] transport associated with tobacco growth on [Formula: see text] nutrition. Heterologous expression of NtNRT1.1B in the [Formula: see text] uptake-defective yeast Hp△ynt1 enabled a growth recovery of the mutant on 0.5 mM [Formula: see text] , suggesting a possible molecular function of NtNRT1.1B in the import of [Formula: see text] into cells. Transient expression of NtNRT1.1B::green fluorescent protein (GFP) in tobacco leaf cells revealed that NtNRT1.1B targeted mainly the plasma membrane, indicating the possibility of [Formula: see text] permeation across cell membranes via NtNRT1.1B. Furthermore, promoter activity assays using a GFP marker clearly indicated that NtNRT1.1B transcription in roots may be down-regulated by N starvation and induced by N resupply, including [Formula: see text] , after 3 days’ N depletion. Significantly, constitutive overexpression of NtNRT1.1B could remarkably enhance tobacco growth by showing a higher accumulation of biomass and total N, [Formula: see text] , and even [Formula: see text] in plants supplied with [Formula: see text] ; this NtNRT1.1B-facilitated N acquisition/accumulation could be strengthened by short-term (15)N- [Formula: see text] root influx assays, which showed 15%–20% higher [Formula: see text] deposition in NtNRT1.1B-overexpressors as well as a high affinity of NtNRT1.1B for [Formula: see text] at a K (m) of around 30–45 µM. Together with the detection of NtNRT1.1B promoter activity in the root stele and shoot–stem vascular tissues, and higher [Formula: see text] in both xylem exudate and the apoplastic washing fluid of NtNRT1.1B-transgenic lines, NtNRT1.1B could be considered as a valuable molecular breeding target aiming at improving crop N-use efficiency by manipulating the absorption and long-distance distribution/transport of nitrate, thus adding a new functional homolog as a nitrate permease to the plant NRT1 family. |
format | Online Article Text |
id | pubmed-10011135 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-100111352023-03-15 Molecular identification and physiological functional analysis of NtNRT1.1B that mediated nitrate long-distance transport and improved plant growth when overexpressed in tobacco Wu, Changzheng Xiang, Yucheng Huang, Pingjun Zhang, Mingfa Fang, Ming Yang, Weiqin Li, Wenrui Cao, Fengchun Liu, Lai-Hua Pu, Wenxuan Duan, Shuhui Front Plant Sci Plant Science Although recent physiological studies demonstrate that flue-cured tobacco preferentially utilizes nitrate ( [Formula: see text] ) or ammonium nitrate (NH(4)NO(3)), and possesses both high- and low-affinity uptake systems for [Formula: see text] , little is known about the molecular component(s) responsible for acquisition and translocation in this crop. Here we provide experimental data showing that NtNRT1.1B with a 1,785-bp coding sequence exhibited a function in mediating [Formula: see text] transport associated with tobacco growth on [Formula: see text] nutrition. Heterologous expression of NtNRT1.1B in the [Formula: see text] uptake-defective yeast Hp△ynt1 enabled a growth recovery of the mutant on 0.5 mM [Formula: see text] , suggesting a possible molecular function of NtNRT1.1B in the import of [Formula: see text] into cells. Transient expression of NtNRT1.1B::green fluorescent protein (GFP) in tobacco leaf cells revealed that NtNRT1.1B targeted mainly the plasma membrane, indicating the possibility of [Formula: see text] permeation across cell membranes via NtNRT1.1B. Furthermore, promoter activity assays using a GFP marker clearly indicated that NtNRT1.1B transcription in roots may be down-regulated by N starvation and induced by N resupply, including [Formula: see text] , after 3 days’ N depletion. Significantly, constitutive overexpression of NtNRT1.1B could remarkably enhance tobacco growth by showing a higher accumulation of biomass and total N, [Formula: see text] , and even [Formula: see text] in plants supplied with [Formula: see text] ; this NtNRT1.1B-facilitated N acquisition/accumulation could be strengthened by short-term (15)N- [Formula: see text] root influx assays, which showed 15%–20% higher [Formula: see text] deposition in NtNRT1.1B-overexpressors as well as a high affinity of NtNRT1.1B for [Formula: see text] at a K (m) of around 30–45 µM. Together with the detection of NtNRT1.1B promoter activity in the root stele and shoot–stem vascular tissues, and higher [Formula: see text] in both xylem exudate and the apoplastic washing fluid of NtNRT1.1B-transgenic lines, NtNRT1.1B could be considered as a valuable molecular breeding target aiming at improving crop N-use efficiency by manipulating the absorption and long-distance distribution/transport of nitrate, thus adding a new functional homolog as a nitrate permease to the plant NRT1 family. Frontiers Media S.A. 2023-02-28 /pmc/articles/PMC10011135/ /pubmed/36925751 http://dx.doi.org/10.3389/fpls.2023.1078978 Text en Copyright © 2023 Wu, Xiang, Huang, Zhang, Fang, Yang, Li, Cao, Liu, Pu and Duan https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms. |
spellingShingle | Plant Science Wu, Changzheng Xiang, Yucheng Huang, Pingjun Zhang, Mingfa Fang, Ming Yang, Weiqin Li, Wenrui Cao, Fengchun Liu, Lai-Hua Pu, Wenxuan Duan, Shuhui Molecular identification and physiological functional analysis of NtNRT1.1B that mediated nitrate long-distance transport and improved plant growth when overexpressed in tobacco |
title | Molecular identification and physiological functional analysis of NtNRT1.1B that mediated nitrate long-distance transport and improved plant growth when overexpressed in tobacco |
title_full | Molecular identification and physiological functional analysis of NtNRT1.1B that mediated nitrate long-distance transport and improved plant growth when overexpressed in tobacco |
title_fullStr | Molecular identification and physiological functional analysis of NtNRT1.1B that mediated nitrate long-distance transport and improved plant growth when overexpressed in tobacco |
title_full_unstemmed | Molecular identification and physiological functional analysis of NtNRT1.1B that mediated nitrate long-distance transport and improved plant growth when overexpressed in tobacco |
title_short | Molecular identification and physiological functional analysis of NtNRT1.1B that mediated nitrate long-distance transport and improved plant growth when overexpressed in tobacco |
title_sort | molecular identification and physiological functional analysis of ntnrt1.1b that mediated nitrate long-distance transport and improved plant growth when overexpressed in tobacco |
topic | Plant Science |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10011135/ https://www.ncbi.nlm.nih.gov/pubmed/36925751 http://dx.doi.org/10.3389/fpls.2023.1078978 |
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