RNA G-quadruplex structure contributes to cold adaptation in plants

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作者
Xiaofei Yang
Haopeng Yu
Susan Duncan
Yueying Zhang
Jitender Cheema
Haifeng Liu
J. Benjamin Miller
Jie Zhang
Chun Kit Kwok
Huakun Zhang
Yiliang Ding
机构
[1] Northeast Normal University,Key Laboratory of Molecular Epigenetics of Ministry of Education
[2] Chinese Academy of Sciences,National Key Laboratory of Plant Molecular Genetics, CAS Center for Excellence in Molecular Plant Sciences, Institute of Plant Physiology and Ecology
[3] Chinese Academy of Sciences,CAS
[4] John Innes Centre,JIC Center of Excellence for Plant and Microbial Sciences, Institute of Plant Physiology and Ecology
[5] Norwich Research Park,Department of Cell and Developmental Biology
[6] Shandong Agricultural University,State Key Laboratory of Crop Biology, College of Agronomy
[7] University of East Anglia,School of Biological Sciences
[8] Norwich Research Park,Department of Chemistry and State Key Laboratory of Marine Pollution
[9] City University of Hong Kong,undefined
[10] Kowloon Tong,undefined
[11] Shenzhen Research Institute of City University of Hong Kong,undefined
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摘要
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 analyze the nucleotide composition of transcriptomes across 1000 plants (1KP) and their corresponding habitats. Intriguingly, we find 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 reveal that RNA G-quadruplex formation in plants is 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 promotes mRNA decay in the cold, leading to impaired plant cold response. Therefore, we propose that plants adopted RNA G-quadruplex structure as a molecular signature to facilitate their adaptation to the cold during evolution.
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