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The Nitrate Transporter MtNPF6.8 Is a Master Sensor of Nitrate Signal in the Primary Root Tip of Medicago truncatula

Nitrate is not only an essential nutrient for plants, but also a signal involved in plant development. We have previously shown in the model legume Medicago truncatula, that the nitrate signal, which restricts primary root growth, is mediated by MtNPF6.8, a nitrate transporter. Nitrate signal also i...

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Autores principales: Zang, Lili, Tarkowski, Łukasz Paweł, Morère-Le Paven, Marie-Christine, Zivy, Michel, Balliau, Thierry, Clochard, Thibault, Bahut, Muriel, Balzergue, Sandrine, Pelletier, Sandra, Landès, Claudine, Limami, Anis M., Montrichard, Françoise
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8971838/
https://www.ncbi.nlm.nih.gov/pubmed/35371178
http://dx.doi.org/10.3389/fpls.2022.832246
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author Zang, Lili
Tarkowski, Łukasz Paweł
Morère-Le Paven, Marie-Christine
Zivy, Michel
Balliau, Thierry
Clochard, Thibault
Bahut, Muriel
Balzergue, Sandrine
Pelletier, Sandra
Landès, Claudine
Limami, Anis M.
Montrichard, Françoise
author_facet Zang, Lili
Tarkowski, Łukasz Paweł
Morère-Le Paven, Marie-Christine
Zivy, Michel
Balliau, Thierry
Clochard, Thibault
Bahut, Muriel
Balzergue, Sandrine
Pelletier, Sandra
Landès, Claudine
Limami, Anis M.
Montrichard, Françoise
author_sort Zang, Lili
collection PubMed
description Nitrate is not only an essential nutrient for plants, but also a signal involved in plant development. We have previously shown in the model legume Medicago truncatula, that the nitrate signal, which restricts primary root growth, is mediated by MtNPF6.8, a nitrate transporter. Nitrate signal also induces changes in reactive oxygen species accumulation in the root tip due to changes in cell wall peroxidase (PODs) activity. Thus, it was interesting to determine the importance of the role of MtNPF6.8 in the regulation of the root growth by nitrate and identify the POD isoforms responsible for the changes in POD activity. For this purpose, we compared in M. truncatula a npf6.8 mutant and nitrate insensitive line deficient in MtNPF6.8 and the corresponding wild and sensitive genotype for their transcriptomic and proteomic responses to nitrate. Interestingly, only 13 transcripts and no protein were differently accumulated in the primary root tip of the npf6.8-3 mutant line in response to nitrate. The sensitivity of the primary root tip to nitrate appeared therefore to be strongly linked to the integrity of MtNPF6.8 which acts as a master mediator of the nitrate signal involved in the control of the root system architecture. In parallel, 7,259 and 493 genes responded, respectively, at the level of transcripts or proteins in the wild type, 196 genes being identified by both their transcript and protein. By focusing on these 196 genes, a concordance of expression was observed for most of them with 143 genes being up-regulated and 51 being down-regulated at the two gene expression levels. Their ontology analysis uncovered a high enrichment in POD genes, allowing the identification of POD candidates involved in the changes in POD activity previously observed in response to nitrate.
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spelling pubmed-89718382022-04-02 The Nitrate Transporter MtNPF6.8 Is a Master Sensor of Nitrate Signal in the Primary Root Tip of Medicago truncatula Zang, Lili Tarkowski, Łukasz Paweł Morère-Le Paven, Marie-Christine Zivy, Michel Balliau, Thierry Clochard, Thibault Bahut, Muriel Balzergue, Sandrine Pelletier, Sandra Landès, Claudine Limami, Anis M. Montrichard, Françoise Front Plant Sci Plant Science Nitrate is not only an essential nutrient for plants, but also a signal involved in plant development. We have previously shown in the model legume Medicago truncatula, that the nitrate signal, which restricts primary root growth, is mediated by MtNPF6.8, a nitrate transporter. Nitrate signal also induces changes in reactive oxygen species accumulation in the root tip due to changes in cell wall peroxidase (PODs) activity. Thus, it was interesting to determine the importance of the role of MtNPF6.8 in the regulation of the root growth by nitrate and identify the POD isoforms responsible for the changes in POD activity. For this purpose, we compared in M. truncatula a npf6.8 mutant and nitrate insensitive line deficient in MtNPF6.8 and the corresponding wild and sensitive genotype for their transcriptomic and proteomic responses to nitrate. Interestingly, only 13 transcripts and no protein were differently accumulated in the primary root tip of the npf6.8-3 mutant line in response to nitrate. The sensitivity of the primary root tip to nitrate appeared therefore to be strongly linked to the integrity of MtNPF6.8 which acts as a master mediator of the nitrate signal involved in the control of the root system architecture. In parallel, 7,259 and 493 genes responded, respectively, at the level of transcripts or proteins in the wild type, 196 genes being identified by both their transcript and protein. By focusing on these 196 genes, a concordance of expression was observed for most of them with 143 genes being up-regulated and 51 being down-regulated at the two gene expression levels. Their ontology analysis uncovered a high enrichment in POD genes, allowing the identification of POD candidates involved in the changes in POD activity previously observed in response to nitrate. Frontiers Media S.A. 2022-03-18 /pmc/articles/PMC8971838/ /pubmed/35371178 http://dx.doi.org/10.3389/fpls.2022.832246 Text en Copyright © 2022 Zang, Tarkowski, Morère-Le Paven, Zivy, Balliau, Clochard, Bahut, Balzergue, Pelletier, Landès, Limami and Montrichard. 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
Zang, Lili
Tarkowski, Łukasz Paweł
Morère-Le Paven, Marie-Christine
Zivy, Michel
Balliau, Thierry
Clochard, Thibault
Bahut, Muriel
Balzergue, Sandrine
Pelletier, Sandra
Landès, Claudine
Limami, Anis M.
Montrichard, Françoise
The Nitrate Transporter MtNPF6.8 Is a Master Sensor of Nitrate Signal in the Primary Root Tip of Medicago truncatula
title The Nitrate Transporter MtNPF6.8 Is a Master Sensor of Nitrate Signal in the Primary Root Tip of Medicago truncatula
title_full The Nitrate Transporter MtNPF6.8 Is a Master Sensor of Nitrate Signal in the Primary Root Tip of Medicago truncatula
title_fullStr The Nitrate Transporter MtNPF6.8 Is a Master Sensor of Nitrate Signal in the Primary Root Tip of Medicago truncatula
title_full_unstemmed The Nitrate Transporter MtNPF6.8 Is a Master Sensor of Nitrate Signal in the Primary Root Tip of Medicago truncatula
title_short The Nitrate Transporter MtNPF6.8 Is a Master Sensor of Nitrate Signal in the Primary Root Tip of Medicago truncatula
title_sort nitrate transporter mtnpf6.8 is a master sensor of nitrate signal in the primary root tip of medicago truncatula
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8971838/
https://www.ncbi.nlm.nih.gov/pubmed/35371178
http://dx.doi.org/10.3389/fpls.2022.832246
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