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Genome-wide analysis of DNA methylation patterns in horse

  • Ja Rang Lee
  • , Chang P. Hong
  • , Jae Woo Moon
  • , Yi Deun Jung
  • , Dae Soo Kim
  • , Tae Hyung Kim
  • , Jeong An Gim
  • , Jin Han Bae
  • , Yuri Choi
  • , Jungwoo Eo
  • , Yun Jeong Kwon
  • , Sanghoon Song
  • , Junsu Ko
  • , Young M. Yang
  • , Hak Kyo Lee
  • , Kyung Do Park
  • , Kung Ahn
  • , Kyoung Tag Do
  • , Hong Seok Ha
  • , Kyudong Han
  • Joo M. Yi, Hee Jae Cha, Byung Wook Cho, Jong Bhak*, Heui Soo Kim
*Corresponding author for this work
  • Pusan National University
  • TBI
  • Korea Research Institute of Bioscience and Biotechnology
  • Konkuk University
  • Hankyong National University
  • Rutgers - The State University of New Jersey, New Brunswick
  • Dankook University
  • Dongnam Institute of Radiological and Medical Sciences (DIRAMS)
  • Kosin University

Research output: Contribution to journalJournal articlepeer-review

Abstract

Background: DNA methylation is an epigenetic regulatory mechanism that plays an essential role in mediating biological processes and determining phenotypic plasticity in organisms. Although the horse reference genome and whole transcriptome data are publically available the global DNA methylation data are yet to be known.Results: We report the first genome-wide DNA methylation characteristics data from skeletal muscle, heart, lung, and cerebrum tissues of thoroughbred (TH) and Jeju (JH) horses, an indigenous Korea breed, respectively by methyl-DNA immunoprecipitation sequencing. The analysis of the DNA methylation patterns indicated that the average methylation density was the lowest in the promoter region, while the density in the coding DNA sequence region was the highest. Among repeat elements, a relatively high density of methylation was observed in long interspersed nuclear elements compared to short interspersed nuclear elements or long terminal repeat elements. We also successfully identified differential methylated regions through a comparative analysis of corresponding tissues from TH and JH, indicating that the gene body regions showed a high methylation density.Conclusions: We provide report the first DNA methylation landscape and differentially methylated genomic regions (DMRs) of thoroughbred and Jeju horses, providing comprehensive DMRs maps of the DNA methylome. These data are invaluable resource to better understanding of epigenetics in the horse providing information for the further biological function analyses.

Original languageEnglish
Article number598
JournalBMC genomics
Volume15
Issue number1
DOIs
StatePublished - 2014.07.15

Keywords

  • Differential methylated region (DMR)
  • Genome-wide DNA methylation
  • Jeju horse
  • MeDIP-seq
  • Thoroughbred horse

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