bioRxiv · 10.1101/2022.03.04.482910
RNA G-quadruplex structure contributes to cold adaptation in plants
Abstract
Nucleotide composition is suggested to infer gene functionality and ecological adaptation of species to distinct environments. However, the underlying biological function of nucleotide composition dictating environmental adaptations is largely unknown. Here, we systematically analyzed the nucleotide compositions of transcriptomes across 1000 plants (1KP) and their corresponding habitats. Intriguingly, we found that plants growing in cold climates have guanine (G)-enriched transcriptomes, which are prone to forming RNA G-quadruplex structures. Both immunofluorescence detection and in vivo structure profiling revealed that RNA G-quadruplex formation in plants was globally enhanced in response to cold. Cold-responsive RNA G-quadruplexes strongly enhanced mRNA stability, rather than affecting translation. Disruption of individual RNA G-quadruplex promoted mRNA decay in the cold, leading to impaired plant cold response. Therefore, we propose that plants adopted RNA G-quadruplex structure as a molecular marker to facilitate their adaptation to the cold during evolution.
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Yang, X., Yu, H., Duncan, S., Zhang, Y., Cheema, J., Miller, J. B., Zhang, J., Kwok, C. K., Zhang, H., DING, Y.. 2022-03-04. RNA G-quadruplex structure contributes to cold adaptation in plants. https://doi.org/10.1101/2022.03.04.482910
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