An extensive survey of phytoviral RNA 3′ uridylation identifies extreme variations and virus-specific patterns

Author:

Joly Anne Caroline1ORCID,Garcia Shahinez2ORCID,Hily Jean-Michel23ORCID,Koechler Sandrine1ORCID,Demangeat Gérard2ORCID,Garcia Damien1ORCID,Vigne Emmanuelle2ORCID,Lemaire Olivier2ORCID,Zuber Hélène1ORCID,Gagliardi Dominique1ORCID

Affiliation:

1. Institut de Biologie Moléculaire des Plantes, CNRS, Université de Strasbourg , Strasbourg 67084 , France

2. UMR Santé de la Vigne et Qualité du Vin, INRAE, Université de Strasbourg , Colmar 68000 , France

3. Institut Français de la Vigne et du Vin , Le Grau-Du-Roi 30240 , France

Abstract

Abstract Viral RNAs can be uridylated in eukaryotic hosts. However, our knowledge of uridylation patterns and roles remains rudimentary for phytoviruses. Here, we report global 3′ terminal RNA uridylation profiles for representatives of the main families of positive single-stranded RNA phytoviruses. We detected uridylation in all 47 viral RNAs investigated here, revealing its prevalence. Yet, uridylation levels of viral RNAs varied from 0.2% to 90%. Unexpectedly, most poly(A) tails of grapevine fanleaf virus (GFLV) RNAs, including encapsidated tails, were strictly monouridylated, which corresponds to an unidentified type of viral genomic RNA extremity. This monouridylation appears beneficial for GFLV because it became dominant when plants were infected with nonuridylated GFLV transcripts. We found that GFLV RNA monouridylation is independent of the known terminal uridylyltransferases (TUTases) HEN1 SUPPRESSOR 1 (HESO1) and UTP:RNA URIDYLYLTRANSFERASE 1 (URT1) in Arabidopsis (Arabidopsis thaliana). By contrast, both TUTases can uridylate other viral RNAs like turnip crinkle virus (TCV) and turnip mosaic virus (TuMV) RNAs. Interestingly, TCV and TuMV degradation intermediates were differentially uridylated by HESO1 and URT1. Although the lack of both TUTases did not prevent viral infection, we detected degradation intermediates of TCV RNA at higher levels in an Arabidopsis heso1 urt1 mutant, suggesting that uridylation participates in clearing viral RNA. Collectively, our work unveils an extreme diversity of uridylation patterns across phytoviruses and constitutes a valuable resource to further decipher pro- and antiviral roles of uridylation.

Funder

Centre National de la Recherche Scientifique

Institut national de recherche pour l'agriculture,

l'alimentation et l'environnement

Université de Strasbourg

French National Research Agency

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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