Content area

Abstract

DNA methylation is a crucial layer of epigenetic regulation during mammalian embryonic development. Although the DNA methylome of early human embryos has been analyzed, some of the key features have not been addressed thus far. Here we performed single-cell DNA methylome sequencing for human preimplantation embryos and found that tens of thousands of genomic loci exhibited de novo DNA methylation. This finding indicates that genome-wide DNA methylation reprogramming during preimplantation development is a dynamic balance between strong global demethylation and drastic focused remethylation. Furthermore, demethylation of the paternal genome is much faster and thorough than that of the maternal genome. From the two-cell to the postimplantation stage, methylation of the paternal genome is consistently lower than that of the maternal genome. We also show that the genetic lineage of early blastomeres can be traced by DNA methylation analysis. Our work paves the way for deciphering the secrets of DNA methylation reprogramming in early human embryos.

Details

Title
Single-cell DNA methylome sequencing of human preimplantation embryos
Author
Zhu, Ping 1 ; Guo, Hongshan 1 ; Ren, Yixin 1 ; Hou, Yu 1 ; Dong, Ji 1 ; Li, Rong; Lian, Ying; Fan, Xiaoying; Hu, Boqiang; Gao, Yun; Wang, Xiaoye; Wei, Yuan; Liu, Ping; Yan, Jie; Ren, Xiulian; Yuan, Peng; Yuan, Yifeng; Yan, Zhiqiang; Wen, Lu; Yan, Liying; Qiao, Jie; Tang, Fuchou

 Beijing Advanced Innovation Center for Genomics, College of Life Sciences, Department of Obstetrics and Gynecology, Third Hospital, Peking University, Beijing, China 
Pages
12-19,19A-19B
Section
LETTERS
Publication year
2018
Publication date
Jan 2018
Publisher
Nature Publishing Group
ISSN
10614036
e-ISSN
15461718
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2131573946
Copyright
Copyright Nature Publishing Group Jan 2018