Atypical molecular features of RNA silencing against the phloem-restricted polerovirus TuYV

Author:

Clavel Marion1ORCID,Lechner Esther1,Incarbone Marco1ORCID,Vincent Timothée1,Cognat Valerie1,Smirnova Ekaterina1,Lecorbeiller Maxime1,Brault Véronique2,Ziegler-Graff Véronique1,Genschik Pascal1ORCID

Affiliation:

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

2. SVQV, INRA UMR1131, Université de Strasbourg, Colmar, France

Abstract

Abstract In plants and some animal lineages, RNA silencing is an efficient and adaptable defense mechanism against viruses. To counter it, viruses encode suppressor proteins that interfere with RNA silencing. Phloem-restricted viruses are spreading at an alarming rate and cause substantial reduction of crop yield, but how they interact with their hosts at the molecular level is still insufficiently understood. Here, we investigate the antiviral response against phloem-restricted turnip yellows virus (TuYV) in the model plant Arabidopsis thaliana. Using a combination of genetics, deep sequencing, and mechanical vasculature enrichment, we show that the main axis of silencing active against TuYV involves 22-nt vsiRNA production by DCL2, and their preferential loading into AGO1. Moreover, we identify vascular secondary siRNA produced from plant transcripts and initiated by DCL2-processed AGO1-loaded vsiRNA. Unexpectedly, and despite the viral encoded VSR P0 previously shown to mediate degradation of AGO proteins, vascular AGO1 undergoes specific post-translational stabilization during TuYV infection. Collectively, our work uncovers the complexity of antiviral RNA silencing against phloem-restricted TuYV and prompts a re-assessment of the role of its suppressor of silencing P0 during genuine infection.

Funder

European Research Council

ERC

IdEx Unistra

SFRI-STRAT’US

EUR

Labex

Publisher

Oxford University Press (OUP)

Subject

Genetics

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