Comprehensive analysis of nonsurrounded nucleolus and surrounded nucleolus oocytes on chromatin accessibility using ATAC‐seq

Author:

Sun Xiaofan1,Wang Dayu1,Li Weijian1,Gao Qian2,Tao Jingli1,Liu Honglin1

Affiliation:

1. Department of Animal Genetics, Breeding and Reproduction, College of Animal Science and Technology Nanjing Agricultural University Nanjing China

2. Laboratory Animal Center, College of Veterinary Medicine Nanjing Agriculture University Nanjing China

Abstract

AbstractMouse germinal vesicle (GV) oocytes are divided into surrounded nucleolus (SN) and nonsurrounded nucleolus (NSN) oocytes based on chromatin morphology. NSN oocytes spontaneously transform into SN oocytes after accumulating enough maternal transcripts. SN oocytes show transcriptional silencing. When oocyte maturation is abnormal or takes place in vitro, NSN oocytes do not go through SN stage before proceeding to MII. Nontransitive oocytes show developmental retardation, a low fertilization rate, and arrest at the two‐cell embryo stage in mice. Here, chromatin‐binding ribonucleic acid polymerase II (RNAP II) activity, newly synthesized RNA, and chromatin accessibility in GV oocytes were examined. In SN oocytes, RNAP II did not bind to DNA, neo‐RNA was not generated in nuclei, and the phosphorylation state of RNAP II did not affect the chromatin‐binding activity. The number of accessible genes in SN oocytes was remarkably lower than that in NSN oocytes. The accessibility of different functional genes was also different between the two types of oocytes. Thus, low chromatin accessibility leads to transcriptional silencing in SN oocytes.

Funder

Jiangsu Agricultural Science and Technology Innovation Fund

National Natural Science Foundation of China

Publisher

Wiley

Subject

Cell Biology,Developmental Biology,Genetics

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