Requirement of CHROMOMETHYLASE3 for somatic inheritance of the spontaneous tomato epimutation Colourless non-ripening

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作者
Weiwei Chen
Junhua Kong
Cheng Qin
Sheng Yu
Jinjuan Tan
Yun-ru Chen
Chaoqun Wu
Hui Wang
Yan Shi
Chunyang Li
Bin Li
Pengcheng Zhang
Ying Wang
Tongfei Lai
Zhiming Yu
Xian Zhang
Nongnong Shi
Huizhong Wang
Toba Osman
Yule Liu
Kenneth Manning
Stephen Jackson
Dominique Rolin
Silin Zhong
Graham B. Seymour
Philippe Gallusci
Yiguo Hong
机构
[1] Hangzhou Normal University,Research Centre for Plant RNA Signalling, College of Life and Environmental Sciences
[2] The Chinese University of Hong Kong,State Key Laboratory of Agrobiotechnology, School of Life Sciences
[3] University of Warwick,School of Life Sciences
[4] Tsinghua University,MOE Key Laboratory of Bioinformatics, Centre for Plant Biology, School of Life Sciences
[5] Bordeaux University,UMR Fruit Biology and Pathology
[6] INRA,Plant and Crop Science Division, School of Biosciences
[7] University of Nottingham,undefined
来源
Scientific Reports | / 5卷
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摘要
Naturally-occurring epimutants are rare and have mainly been described in plants. However how these mutants maintain their epigenetic marks and how they are inherited remain unknown. Here we report that CHROMOMETHYLASE3 (SlCMT3) and other methyltransferases are required for maintenance of a spontaneous epimutation and its cognate Colourless non-ripening (Cnr) phenotype in tomato. We screened a series of DNA methylation-related genes that could rescue the hypermethylated Cnr mutant. Silencing of the developmentally-regulated SlCMT3 gene results in increased expression of LeSPL-CNR, the gene encodes the SBP-box transcription factor residing at the Cnr locus and triggers Cnr fruits to ripen normally. Expression of other key ripening-genes was also up-regulated. Targeted and whole-genome bisulfite sequencing showed that the induced ripening of Cnr fruits is associated with reduction of methylation at CHG sites in a 286-bp region of the LeSPL-CNR promoter and a decrease of DNA methylation in differentially-methylated regions associated with the LeMADS-RIN binding sites. Our results indicate that there is likely a concerted effect of different methyltransferases at the Cnr locus and the plant-specific SlCMT3 is essential for sustaining Cnr epi-allele. Maintenance of DNA methylation dynamics is critical for the somatic stability of Cnr epimutation and for the inheritance of tomato non-ripening phenotype.
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