Three decades of mobile RNA silencing within plants: what have we learnt?


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Author / Producer

Date

2026-01-27

Publication Type

Review Article

ETH Bibliography

yes

Citations

Web of Science:
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Data

Abstract

In plant RNA silencing, siRNAs and miRNAs guide ARGONAUTE (AGO) effector proteins to silence sequence-complementary RNA/DNA. This helps regulate developmental patterning, adaptation to stress, antiviral defense, or genome integrity/maintenance. Remarkably, these regulations not only occur intracellularly, but may also manifest in remote tissues. Here, I summarize the evidence that RNA silencing moves from cell to cell and via the phloem, the long-distance extension of the symplasm-the cytosolic connection network between cells through plasmodesmata (PDs). I then illustrate several biological functions linked to movement of RNA silencing. Besides a still largely putative role for mobile virus-derived (v)siRNAs in conferring immunity, several endogenous small RNAs (sRNAs) act as systemic signals orchestrating organismal responses to abiotic stress or symbiosis. Other mobile sRNAs act as morphogens and generate gene expression gradients by moving from cell to cell. If RNA silencing indeed moves symplasmically via PDs, then various processes probably regulate its transport; discovering these processes was expected to shed light on macromolecular trafficking in general. In a final part of this perspective, I describe several forward genetic systems set in Arabidopsis to specifically tackle the above issue. Some were instrumental in revealing hitherto unknown AGO-mediated mechanisms that modulate movement of silencing within silencing-incipient, traversed, or recipient cells. Somewhat disappointingly, however, the systems fell short of identifying factors impacting the silencing cell-to cell-trafficking channels or their regulation. I discuss here plausible reasons for these shortcomings, what could be learnt from them, how they could be remedied, and how a better understanding of their physiological foundations might shed light on so far overlooked aspects of movement of plant RNA silencing. This perspective presents the state-of-the-art of the mechanisms and roles of movement of RNA silencing in plants, together with the limitations and pitfalls of the current approaches used to investigate this phenomenon.

Publication status

published

Editor

Book title

Volume

77 (3)

Pages / Article No.

799 - 817

Publisher

Oxford University Press

Event

Edition / version

Methods

Software

Geographic location

Date collected

Date created

Subject

Genetic screen; microRNA; movement; plants; plasmodesmata; RNA silencing; siRNA

Organisational unit

03876 - Voinnet, Olivier / Voinnet, Olivier check_circle

Notes

Funding

197832 - Genome-scale, functional and mechanistic investigation of plant microRNA cell-to-cell and vascular movement (SNF)

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