Mobile virus-derived siRNAs drive plant antiviral silencing through reiterated 3–4 cell immunization

The movement of virus-derived small interfering RNAs (vsiRNAs) between plant cells has prompted the widely held assumption that they help immunize as-yet-uninfected tissues. Ascertaining this role is challenging because it requires uncoupling vsiRNA mobility from viral movement while preserving viral virulence. Consequently, the contribution of non-cell-autonomous RNAi to plant antiviral immunity remains essentially unknown. Here, we investigate the naturally phloem-restricted infection of turnip yellows virus (TuYV) in the stereotypical Arabidopsis root system at cellular resolution. We uncover intertwined, complex mechanisms operating in both vsiRNA-emitting and -recipient cells, which drive reiterated short-range (∼3–4 cell) immunization events. We find that, while intracellular antiviral RNAi is essentially nullified by TuYV, non-cell-autonomous immunization by vsiRNAs accounts mainly—if not exclusively—for the containment of viral titers and tissue invasion at the whole-plant scale. Mobile vsiRNA-mediated immunization likewise spatially confines a TuYV-unrelated virus over ∼3–4 cells, uncovering a generic, essential, yet previously unrecognized component of plant antiviral defense.

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Publication Details

Journal
Cell Host & Microbe
Published
2026-09-01
DOI
https://doi.org/10.1016/j.chom.2026.08.005
Primary Topic
Plant Virus Research Studies
Type
article
Field-Weighted Citation Impact
0.00

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article

Mobile virus-derived siRNAs drive plant antiviral silencing through reiterated 3–4 cell immunization

Olivier Voinnet, Emanuel A. Devers, Rajendran Rajeswaran, Daniele Albertini et al.
Cell Host & Microbe
Plant Virus Research Studies
article

Mobile virus-derived siRNAs drive plant antiviral silencing through reiterated 3–4 cell immunization

Olivier Voinnet, Emanuel A. Devers, Rajendran Rajeswaran, Daniele Albertini, Maëlle Jacquemettaz, Gregory Schott
article en

Abstract

The movement of virus-derived small interfering RNAs (vsiRNAs) between plant cells has prompted the widely held assumption that they help immunize as-yet-uninfected tissues. Ascertaining this role is challenging because it requires uncoupling vsiRNA mobility from viral movement while preserving viral virulence. Consequently, the contribution of non-cell-autonomous RNAi to plant antiviral immunity remains essentially unknown. Here, we investigate the naturally phloem-restricted infection of turnip yellows virus (TuYV) in the stereotypical Arabidopsis root system at cellular resolution. We uncover intertwined, complex mechanisms operating in both vsiRNA-emitting and -recipient cells, which drive reiterated short-range (∼3–4 cell) immunization events. We find that, while intracellular antiviral RNAi is essentially nullified by TuYV, non-cell-autonomous immunization by vsiRNAs accounts mainly—if not exclusively—for the containment of viral titers and tissue invasion at the whole-plant scale. Mobile vsiRNA-mediated immunization likewise spatially confines a TuYV-unrelated virus over ∼3–4 cells, uncovering a generic, essential, yet previously unrecognized component of plant antiviral defense.

Cell Host & Microbe
ETH Zurich (CH)
Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung, Eidgenössische Technische Hochschule Zürich
Openalex Percentile: Top 16%
Plant Virus Research Studies
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