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Homeostasis of DNA Hemi-Methylation in Arabidopsis through Methylation Maintenance, DNA Replication, and Nucleosome
Hengye Chen1,2, Chenhuan Xu1,2
1China National Center for Bioinformation, Beijing, 100101, China.
Abstract:
The DNA methylome in eukaryotes is an equilibrium contributed by maintenance methylation, de novo methylation, demethylation, and DNA replication processes. The asymmetric hemi-methylation status is thought of as a transient intermediate state en route to full-methylation. However, the recent studies in mammalian cells suggest that hemi-methylated CG dyads in certain regions can be stably maintained and may serve as epigenetic marks. Compared to mammals, plants have more diversified methylomes often including non-CG dyads. In this work, hairpin BS-seq is performed to acquire dyad-resolution methylomes from Arabidopsis wildtype and methylation-deficient mutant lines. Analyses of methylomes across multiple lines reveal how different DNA methyltransferases influence the equilibrium of hemi- and full-methylation in vivo. The results suggest that nucleosomes may protect hemi-methylated dyads from being further methylated, resulting in relatively higher hemi-methylation frequencies in nucleosome-occupied than -depleted regions. Adjacent hemi-methylated dyads tend to have a strong strand-specificity, indicating that DNA replication is a driving force for the homeostasis of hemi-methylation. Overall, comprehensive multi-line and dyad-resolved DNA methylation maps in Arabidopsis is presented to reveal that the homeostasis of DNA hemi-methylation in plants is achieved through diverse methylation regulatory and chromatin-related activities.
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