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March 3, 2026Trends in Genetics2 citationsOpen Access

Reproductive phasiRNAs are the piRNAs of plants

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MGMaría Ximena Anleu GilInstituto Nacional del CarbónBMBlake C. Meyers

Key Points

  • Reproductive phasiRNAs play a fundamental role in gene expression regulation, similar to piRNAs in animals.
  • Both phasiRNAs and piRNAs originate from Pol II-transcribed precursors, yet have different pathways of biogenesis.
  • PhasiRNA processing is Dicer-dependent, while piRNAs rely on PIWI-clade proteins, indicating functional divergence.
  • The similarity between reproductive phasiRNAs and piRNAs suggests underlying evolutionary strategies for reproductive success.

Abstract

Small RNAs are fundamental to gene expression regulation, with specialized classes playing critical roles in reproduction. This review compares animal PIWI-interacting RNAs (piRNAs) and plant reproductive phased small interfering RNAs (phasiRNAs), which show remarkable similarities. Both originate from Pol II-transcribed precursors but have distinct biogenesis pathways. piRNA processing in metazoans is Dicer-independent, involving PIWI-clade proteins for amplification via 'ping-pong' and phased cleavage. Reproductive phasiRNAs are Dicer-dependent and are initiated by miRNA-guided cleavage to generate phased sRNAs. A well-defined piRNA function is transposon silencing, but roles for nontransposon-targeting piRNAs and most reproductive phasiRNAs remain unresolved. Comparing these independently evolved systems reveals common strategies for reproductive success and highlights key unresolved questions regarding their molecular targets, functions, and evolutionary pressures that shaped them.

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Cite This Study

Gil et al. (2026) studied this question.

synapsesocial.com/papers/69a75b2ac6e9836116a21fachttps://doi.org/10.1016/j.tig.2025.12.002
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