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April 19, 2026Cell Reports3 citationsOpen Access

OsALY4 acts as an m5C-mRNA reader facilitating mRNA export and contributing to chilling and salt tolerance in rice

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YGYing GaoYTYongyan TangSSShanshan Shen

Key Points

  • The aim is to understand OsALY4's role as an m5C reader in mRNA export and stress tolerance responses in rice.
  • Identified OsALY4's function in relation to m5C-mRNA
  • Examined interactions with RNA helicase OsAIP2
  • Analyzed target mRNA transport under normal and stress conditions
  • investigated the role of OsALY4 in chilling and salt tolerance
  • OsALY4 facilitates the export of m5C-modified mRNAs under normal conditions.
  • In osaly4 mutants, target mRNAs are better transported to the cytoplasm under stress.
  • High expression of OsALY2 and OsALY6 in osaly4 mutants contributes to increased chilling and salt tolerance.

Abstract

Summary RNA 5-methylcytosine (m5C) modification is involved in various developmental processes and stress tolerance. However, its role in abiotic stress responses remains largely unknown in rice. We previously demonstrated that the writer OsNSUN2 is required for heat adaptation by facilitating the translation of m5C-mRNAs. Herein, we identify OsALY4 as an m5C reader to modulate the chilling and salt tolerance in rice seedlings. The interaction between OsALY4 and RNA helicase OsAIP2 is essential for nucleocytoplasmic export of target mRNAs of OsALY4 under normal condition, including those of OsWRKY45, OsMDHAR3, and OsHAK13. In the osaly4 mutant, these target mRNAs are more efficiently transported to cytoplasm under stress conditions due to the high expression of OsALY2 and OsALY6, which affect chilling and salt tolerance through several pathways. Our findings uncover the critical function of m5C modification on mRNA transport and stress adaptation in rice, shedding new light on the intricate mechanisms underlying plant resilience.

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Cite This Study

Gao et al. (2026) studied this question.

synapsesocial.com/papers/69e47193010ef96374d8de35https://doi.org/10.1016/j.celrep.2026.117276
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