m<sup>6</sup>A modification plays an integral role in mRNA stability and translation during pattern-triggered immunity.

Chen, Tianyuan; Greene, George H; Motley, Jonathan; Mwimba, Musoki; Luo, Guan-Zheng; Xu, Guoyong; Karapetyan, Sargis; Xiang, Yezi et al. · Proc Natl Acad Sci U S A · 2024

basic_science · Level V

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Abstract

Plants employ distinct mechanisms to respond to environmental changes. Modification of mRNA by <i>N</i><sup> 6</sup>-methyladenosine (m<sup>6</sup>A), known to affect the fate of mRNA, may be one such mechanism to reprogram mRNA processing and translatability upon stress. However, it is difficult to distinguish a direct role from a pleiotropic effect for this modification due to its prevalence in RNA. Through characterization of the transient knockdown-mutants of m<sup>6</sup>A writer components and mutants of specific m<sup>6</sup>A readers, we demonstrate the essential role that m<sup>6</sup>A plays in basal resistance and pattern-triggered immunity (PTI). A global m<sup>6</sup>A profiling of mock and PTI-induced <i>Arabidopsis</i> plants as well as formaldehyde fixation and cross-linking immunoprecipitation-sequencing of the m<sup>6</sup>A reader, EVOLUTIONARILY CONSERVED C-TERMINAL REGION2 (ECT2) showed that while dynamic changes in m<sup>6</sup>A modification and binding by ECT2 were detected upon PTI induction, most of the m<sup>6</sup>A sites and their association with ECT2 remained static. Interestingly, RNA degradation assay identified a dual role of m<sup>6</sup>A in stabilizing the overall transcriptome while facilitating rapid turnover of immune-induced mRNAs during PTI. Moreover, polysome profiling showed that m<sup>6</sup>A enhances immune-associated translation by binding to the ECT2/3/4 readers. We propose that m<sup>6</sup>A plays a positive role in plant immunity by destabilizing defense mRNAs while enhancing their translation efficiency to create a transient surge in the production of defense proteins.

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