Meiqiu Xu, Feifan Zhang, Junjiang Chen, M. M. Zhang, Olivier Songue Same, Lunji Wang, Guillaume Legrand Ngolong Ngea
ABSTRACT Concerns about biotic stress in agriculture have recently increased with the emergence of persistent pathogens and pests. N 6 ‐methyladenosine (m 6 A) RNA is a conserved epitranscriptomic modification. Recent advances in plant biotechnology and m 6 A profiling have generated unprecedented knowledge. Our review emphasizes recent state‐of‐the‐art reports regarding m 6 A modulation of plant responses to biotic stress. We found that m 6 A modification plays a “master rheostat” role in plant immunity, potentially integrating signaling, transcription, protein turnover, and global metabolic pathways to achieve vigorous, as well as balanced, responses to biotic stress. This review highlights the potential for m 6 A to dynamically modulate interactions between plant defense hormones and defense pathways. m 6 A modulates the stability and activity of transcription factors, regulates defense proteins, antimicrobial metabolite production, antiviral defense, systemic acquired resistance, and the ubiquitin‐proteasome pathway. Our review examines contextual factors that coordinate the activity of m 6 A‐associated proteins and modulate global m 6 A dynamics. Importantly, we have addressed m 6 A in the context of promising trade‐offs between defense and growth, and in the role of m 6 A‐associated proteins in liquid–liquid phase separation to control hormonal transcript levels and fine‐tune the plant defense response. Overall, this review proposes a new horizon for developing more biotic‐stress‐resilient plants.