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February 12, 2026International Journal of Molecular Sciences0 citationsOpen Access

Coding Transcript-Derived Small Interfering RNAs: Their Biogenesis and Molecular Function in Arabidopsis

XXXintong XuNCNier ChenXQXinwen Qing

Key Points

  • The aim is to summarize the biogenesis, molecular function, and impact of ct-siRNAs on plant growth and stress adaptation.
  • Review current knowledge of ct-siRNA biogenesis and functions in plants.
  • Analyze the role of RNA metabolic pathways and RQC system in ct-siRNA accumulation.
  • Discuss the effects of ct-siRNA length and genetic background on gene regulation.
  • Ct-siRNAs are produced from defective RNA metabolism and influence gene expression.
  • Their accumulation is associated with altered plant growth and stress responses.
  • Ct-siRNAs regulate gene expression primarily through translation inhibition and mRNA cleavage.

Abstract

Coding transcripts-derived small interfering RNAs (ct-siRNAs) have emerged as a special class of endogenous siRNAs and have been implicated in the regulation of gene expression in plants, particularly under conditions where RNA metabolic pathways are perturbed. When the RNA quality control (RQC) system is impaired, the aberrant mRNA fragments were converted to double stranded forms by RNA-directed RNA polymerase 6 (RDR6) with the assistance of Suppressor of Gene Silencing 3 (SGS3) and subsequently processed by DICER-LIKE proteins into 21-nt and 22-nt ct-siRNAs. The accumulation of ct-siRNAs and the resulting suppression of their cognate genes are usually associated with altered plant growth and stress response. In this review, we summarize our current understanding of the ct-siRNAs, particularly their biogenesis under different RNA metabolic defective conditions. Comparative analysis of these genetic contexts indicates that ct-siRNAs act through translation inhibition and/or mRNA cleavage, with regulatory outcomes influenced by siRNA length and genetic background. We further summarize the biological consequence of ct-siRNA accumulation, which are frequently associated with impaired plant growth and stress adaptation. Finally, we discuss current controversies on ct-siRNAs research and highlight key unsolved questions for future investigation. Collectively, this review highlights ct-siRNAs as a link between impaired RNA metabolisms and post-transcriptional gene silencing, with context-dependent effects on plant growth and stress responses.

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Cite This Study

Xu et al. (2026) studied this question.

synapsesocial.com/papers/698d6d9f5be6419ac0d52b1fhttps://doi.org/10.3390/ijms27041701
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