Huihui Wang, Huiyuan Wang, Xiaoxia Jin, Yusen Wang, Liangzhen Zhao, Bochen Jiang, Lianfeng Gu
This review extends m6A regulation studies from model plants to tree species, highlighting its role in lignification and stress adaptation. m6A modulates lignification and stress adaptation in poplar, bamboo, and other tree species. m6A regulation has potential for improving tree traits.
N6-methyladenosine (m6A) is a pivotal post-transcriptional regulator in plants, but most mechanistic studies derive from arabidopsis (Arabidopsis thaliana) and annual crops. While core m6A machinery is conserved in plants, emerging studies in poplar, bamboo, and other tree species suggest that m6A modulates lignification and stress adaptation, likely reflecting perennial traits including long life cycle, secondary growth, seasonal developmental transitions. The major challenge of m6A research in trees is the shift from global m6A profiling to site-specific causal mechanism. New approaches like targets of RNA-binding proteins identified by editing, direct RNA sequencing, and dCas13-based programmable RNA epigenetic editors provide a practical resolution. In summary, this review extends m6A regulation from model plants to trees and highlights m6A's potential for improving tree traits.