bioRxiv · 10.1101/2022.03.25.485737
m6A RNA methylation impairs gene expression variability and reproductive thermotolerance in Arabidopsis
Abstract
Plants are more susceptible to high temperature stress during reproductive development, which can cause drastic yield loss of fruit and seed crops. Unfortunately, the underlying mechanism remains largely unknown. Here we suggest that m6A RNA methylation level increases in the reproductive tissues of Arabidopsis and negatively regulates gene expression variability. It has been suggested that stochasticity of gene expression can be advantageous to fitness of living organisms under environmental challenges. Indeed, reduced gene expression variability in flowers was associated with compromised transcriptional activation of heat-responsive genes. Importantly, disruption of an RNA demethylase AtALKBH10B led to lower gene expression variability, hypo-responsiveness of heat-activated genes, and strong reduction of plant fertility. Overall, our work proposes a novel mechanism that m6A RNA modification mediates the bet-hedging strategy of plants challenged by heat stress.
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Wang, L., Zhuang, H., Fan, W., Zhang, X., Dong, H., Yang, H., Cho, J.. 2022-03-28. m6A RNA methylation impairs gene expression variability and reproductive thermotolerance in Arabidopsis. https://doi.org/10.1101/2022.03.25.485737
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