The Lotus japonicus NPF3.1 Is a Nodule-Induced Gene That Plays a Positive Role in Nodule Functioning

Nitrogen-fixing nodules are new organs formed on legume roots as a result of the beneficial interaction with the soil bacteria, rhizobia. Proteins of the nitrate transporter 1/peptide transporter family (NPF) are largely represented in the subcategory of nodule-induced transporters identified in mat...

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Main Authors: Ylenia Vittozzi, Marcin Nadzieja, Alessandra Rogato, Simona Radutoiu, Vladimir Totev Valkov, Maurizio Chiurazzi
Format: Article
Language:English
Published: Frontiers Media S.A. 2021-06-01
Series:Frontiers in Plant Science
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fpls.2021.688187/full
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spelling doaj-4a158ec3a4d747cd8b7b0bbdac2ba4c02021-06-18T16:12:32ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2021-06-011210.3389/fpls.2021.688187688187The Lotus japonicus NPF3.1 Is a Nodule-Induced Gene That Plays a Positive Role in Nodule FunctioningYlenia Vittozzi0Marcin Nadzieja1Alessandra Rogato2Simona Radutoiu3Vladimir Totev Valkov4Maurizio Chiurazzi5Institute of Biosciences and Bioresources (IBBR), Italian National Research Council (CNR), Napoli, ItalyDepartment of Molecular Biology and Genetics, Aarhus University, Aarhus, DenmarkInstitute of Biosciences and Bioresources (IBBR), Italian National Research Council (CNR), Napoli, ItalyDepartment of Molecular Biology and Genetics, Aarhus University, Aarhus, DenmarkInstitute of Biosciences and Bioresources (IBBR), Italian National Research Council (CNR), Napoli, ItalyInstitute of Biosciences and Bioresources (IBBR), Italian National Research Council (CNR), Napoli, ItalyNitrogen-fixing nodules are new organs formed on legume roots as a result of the beneficial interaction with the soil bacteria, rhizobia. Proteins of the nitrate transporter 1/peptide transporter family (NPF) are largely represented in the subcategory of nodule-induced transporters identified in mature nodules. The role of nitrate as a signal/nutrient regulating nodule functioning has been recently highlighted in the literature, and NPFs may play a central role in both the permissive and inhibitory pathways controlling N2-fixation efficiency. In this study, we present the characterization of the Lotus japonicus LjNPF3.1 gene. LjNPF3.1 is upregulated in mature nodules. Promoter studies show transcriptional activation confined to the cortical region of both roots and nodules. Under symbiotic conditions, Ljnpf3.1-knockout mutant’s display reduced shoot development and anthocyanin accumulation as a result of nutrient deprivation. Altogether, LjNPF3.1 plays a role in maximizing the beneficial outcome of the root nodule symbiosis.https://www.frontiersin.org/articles/10.3389/fpls.2021.688187/fullnitrate transportN2-fixationnoduleinsertion mutantsLotus japonicus
collection DOAJ
language English
format Article
sources DOAJ
author Ylenia Vittozzi
Marcin Nadzieja
Alessandra Rogato
Simona Radutoiu
Vladimir Totev Valkov
Maurizio Chiurazzi
spellingShingle Ylenia Vittozzi
Marcin Nadzieja
Alessandra Rogato
Simona Radutoiu
Vladimir Totev Valkov
Maurizio Chiurazzi
The Lotus japonicus NPF3.1 Is a Nodule-Induced Gene That Plays a Positive Role in Nodule Functioning
Frontiers in Plant Science
nitrate transport
N2-fixation
nodule
insertion mutants
Lotus japonicus
author_facet Ylenia Vittozzi
Marcin Nadzieja
Alessandra Rogato
Simona Radutoiu
Vladimir Totev Valkov
Maurizio Chiurazzi
author_sort Ylenia Vittozzi
title The Lotus japonicus NPF3.1 Is a Nodule-Induced Gene That Plays a Positive Role in Nodule Functioning
title_short The Lotus japonicus NPF3.1 Is a Nodule-Induced Gene That Plays a Positive Role in Nodule Functioning
title_full The Lotus japonicus NPF3.1 Is a Nodule-Induced Gene That Plays a Positive Role in Nodule Functioning
title_fullStr The Lotus japonicus NPF3.1 Is a Nodule-Induced Gene That Plays a Positive Role in Nodule Functioning
title_full_unstemmed The Lotus japonicus NPF3.1 Is a Nodule-Induced Gene That Plays a Positive Role in Nodule Functioning
title_sort lotus japonicus npf3.1 is a nodule-induced gene that plays a positive role in nodule functioning
publisher Frontiers Media S.A.
series Frontiers in Plant Science
issn 1664-462X
publishDate 2021-06-01
description Nitrogen-fixing nodules are new organs formed on legume roots as a result of the beneficial interaction with the soil bacteria, rhizobia. Proteins of the nitrate transporter 1/peptide transporter family (NPF) are largely represented in the subcategory of nodule-induced transporters identified in mature nodules. The role of nitrate as a signal/nutrient regulating nodule functioning has been recently highlighted in the literature, and NPFs may play a central role in both the permissive and inhibitory pathways controlling N2-fixation efficiency. In this study, we present the characterization of the Lotus japonicus LjNPF3.1 gene. LjNPF3.1 is upregulated in mature nodules. Promoter studies show transcriptional activation confined to the cortical region of both roots and nodules. Under symbiotic conditions, Ljnpf3.1-knockout mutant’s display reduced shoot development and anthocyanin accumulation as a result of nutrient deprivation. Altogether, LjNPF3.1 plays a role in maximizing the beneficial outcome of the root nodule symbiosis.
topic nitrate transport
N2-fixation
nodule
insertion mutants
Lotus japonicus
url https://www.frontiersin.org/articles/10.3389/fpls.2021.688187/full
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