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DNA methylome of the 20-gigabase Norway spruce genome

  • Israel Ausin
  • , Suhua Feng
  • , Chaowei Yu
  • , Wanlu Liu
  • , Hsuan Yu Kuo
  • , Elise L. Jacobsen
  • , Jixian Zhai
  • , Javier Gallego-Bartolome
  • , Lin Wang
  • , Ulrika Egertsdotter
  • , Nathaniel R. Street
  • , Steven E. Jacobsen
  • , Haifeng Wang

Publication: Contribution to journalJournal articlepeer-review

Abstract

DNA methylation plays important roles in many biological processes, such as silencing of transposable elements, imprinting, and regulating gene expression. Many studies of DNA methylation have shown its essential roles in angiosperms (flowering plants). However, few studies have examined the roles and patterns of DNA methylation in gymnosperms. Here, we present genome-wide high coverage single-base resolution methylation maps of Norway spruce (Picea abies) from both needles and somatic embryogenesis culture cells via whole genome bisulfite sequencing. On average, DNA methylation levels of CG and CHG of Norway spruce were higher than most other plants studied. CHH methylation was found at a relatively low level; however, at least one copy of most of the RNA-directed DNA methylation pathway genes was found in Norway spruce, and CHH methylation was correlated with levels of siRNAs. In comparison with needles, somatic embryogenesis culture cells that are used for clonally propagating spruce trees showed lower levels of CG and CHG methylation but higher level of CHH methylation, suggesting that like in other species, these culture cells show abnormal methylation patterns.
Original languageEnglish
Pages (from-to)E8106-E8113
JournalProceedings of the National Academy of Sciences
Volume113
Issue number50
DOIs
Publication statusPublished - 2016

Keywords

  • gymnosperms
  • Norway spruce
  • DNA methylation
  • small RNA
  • genome size

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