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September 10, 2025Plant Communications17 citationsOpen Access

Antiviral RNA interference in plants: increasing complexity and intertwining with other biological processes

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FLFangfang LiXLXue LiSZSiwen Zhao

Key Points

  • Rna interference plays a critical role in combating viral infections in plants, integrating with various biological processes.
  • Recent findings highlight non-canonical rna pathways and the significance of small rnas in plant-virus-vector interactions.
  • The review discusses novel rna regulators and their implications on signal pathways associated with antiviral responses.
  • Increased understanding of rna interference may inform new strategies for managing plant virus diseases and co-evolution.

Abstract

RNA interference (RNAi, also known as RNA silencing) is one of the most important plant defense responses to combat viral invasions. Although the major components of the RNAi pathway, the steps leading to viral small interference RNA (siRNA) biogenesis, and the strategies of viral counter-defense via RNAi suppressors have been well studied, the broader roles of RNAi in virus infection and seed transmission remain less thoroughly reviewed. In particular, the increasing complexity of RNAi-associated mechanisms and their integration with other biological processes have not been comprehensively summarized. Meanwhile, an increasing number of papers report on the identification of non-canonical RNAi pathways, novel host factors involved in RNAi, and the possibility of small RNAs acting cross-kingdom and modulating plant-virus-vector tritrophic interactions. In this review, we briefly overview the roles of RNAi in plant viral infections, and describe recent advances with an emphasis on the discoveries of novel positive and negative RNAi regulators, potential upstream and downstream signaling pathways of antiviral RNAi, and the prospects and challenges of double-stranded RNA applications, either expressed from transgenes or exogenously provided by a spray. We will also discuss how these novel findings reshape our views on (antiviral) RNAi, highlight remaining knowledge gaps and examine how these advances influence plant-virus co-evolution and inform the strategies that can be utilized to manage plant virus diseases to reduce their impact.

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Cite This Study

Li et al. (2025) studied this question.

synapsesocial.com/papers/68c1d23054b1d3bfb60f7c86https://doi.org/10.1016/j.xplc.2025.101490
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