NICOTIANAMINE SYNTHASE activity affects nucleolar iron accumulation and impacts rDNA silencing and RNA methylation in Arabidopsis

Author:

Montacié Charlotte12,Riondet Christophe12,Wei Lili3,Darrière Tommy12,Weiss Alizée12ORCID,Pontvianne Frédéric12ORCID,Escande Marie-Line45,de Bures Anne12,Jobet Edouard12,Barbarossa Adrien12,Carpentier Marie-Christine12,Aarts Mark G M6ORCID,Attina Aurore7,Hirtz Christophe7ORCID,David Alexandre8,Marchand Virginie9,Motorin Yuri910,Curie Catherine3ORCID,Mari Stéphane3,Reichheld Jean-Philippe12ORCID,Sáez-Vásquez Julio12ORCID

Affiliation:

1. Laboratoire Génome et Développement des Plantes (LGDP), UMR 5096, CNRS , 66860 Perpignan , France

2. LGDP, UMR 5096, Université Perpignan Via Domitia , 66860 Perpignan , France

3. Institut Agro, BPMP, CNRS, INRAE, Université Montpellier , 34060 Montpellier , France

4. Observatoire Océanologique de Banyuls s/ mer, CNRS , 66650 Banyuls-sur-mer , France

5. BioPIC Platform of the OOB , 66650 Banyuls-sur-mer , France

6. Laboratory of Genetics, Wageningen University & Research , 6700AA Wageningen , Netherlands

7. INSERM, CHU Montpellier, CNRS, IRMB, Université Montpellier, 34090 Montpellier , France

8. IGF, CNRS, INSERM, Université Montpellier, 34090 Montpellier , France

9. Epitranscriptomics and RNA Sequencing (EpiRNA-Seq) Core Facility, CNRS, INSERM, IBSLor (UMS2008/US40), Université de Lorraine , F-54000 Nancy , France

10. CNRS, IMoPA (UMR 7365), Université de Lorraine , F-54000 Nancy , France

Abstract

Abstract In plant cells, a large pool of iron (Fe) is contained in the nucleolus, as well as in chloroplasts and mitochondria. A central determinant for intracellular distribution of Fe is nicotianamine (NA) generated by NICOTIANAMINE SYNTHASE (NAS). Here, we used Arabidopsis thaliana plants with disrupted NAS genes to study the accumulation of nucleolar iron and understand its role in nucleolar functions and more specifically in rRNA gene expression. We found that nas124 triple mutant plants, which contained lower quantities of the iron ligand NA, also contained less iron in the nucleolus. This was concurrent with the expression of normally silenced rRNA genes from nucleolar organizer regions 2 (NOR2). Notably, in nas234 triple mutant plants, which also contained lower quantities of NA, nucleolar iron and rDNA expression were not affected. In contrast, in both nas124 and nas234, specific RNA modifications were differentially regulated in a genotype dependent manner. Taken together, our results highlight the impact of specific NAS activities in RNA gene expression. We discuss the interplay between NA and nucleolar iron with rDNA functional organization and RNA methylation.

Funder

CNRS

UPVD

Agropolis Fondation

Ecole Universitaire de Recherche

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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