Relationship between chromatin configuration and maturation ability of rat oocytes in vitro and in vivo
Abstract
Purpose Embryo engineering requires a large number of oocytes, which undergo in vitro maturation (IVM). Understanding how to select the best quality oocytes is key to improving IVM efficiency. Oocytes have different germinal vesicle (GV) chromatin configurations, which may explain the heterogeneity in oocyte quality during IVM. However, no reports have categorized, the chromatin configuration of rat GVs or evaluated, the association between the chromatin configuration and oocytes development. Methods The GV chromatin configuration of rat oocytes was divided into seven types according to the degree of chromatin compaction: non-surrounded nucleolus (NSN), prematurely condensed NSN, partly NSN, partly surrounded nucleolus (SN-1), SN-1, condensed SN-1, and aggregated (SN-2). The chromatin configuration distribution was compared during the different stages of oocyte growth and maturation. We also analyzed the changes in the chromatin configuration at different GV stages during IVM. Moreover, the factors affecting the chromatin configuration were analyzed. Results The SN-2 configuration increased with rat oocyte growth and maturation, suggesting that SN-2 facilitates oocyte development. RNA transcription activity in rat oocyte GVs was inversely correlated with oocyte IVM. Conclusions The SN-2 chromatin configuration was related to rat oocyte growth and maturation. RNA transcription activity in rat oocytes in the GV stage was inversely correlated with oocyte maturation.
Article Details
Authors (22)
Zhaoqing Gong
Yujie Wang
Shenyang National Laboratory for Materials Science, Institute of Metal Research
Jiayi Tang
College of Pharmaceutical Sciences
Yang Xu
Hongkai Wang
Institute of Chemical Biology
Yimiao Zhang
Lixin Xiong
Changzheng Sun
Yiyang Li
Wolfson Catalysis Centre, Department of Chemistry
Yan Yang
Minhua Yao
Heng Cai
Zengshuo Man
Siyu Xuan
Yangyang Tang
Ziao Zhao
Jiaxin Sun
Dongwei Liu
Chinese Academy of Sciences Key Laboratory of Forest Ecology and Silviculture, Institute of Applied Ecology, Chinese Academy of Sciences
Yanping Su
Xinghua Xu
Mingjiu Luo
Hongshu Sui