Single-cell RNA-seq reveals the effects of the FecB mutation on the transcriptome profile in ovine cumulus cells

Author:

Guo Xiaofei,Fang Yi,Liang Rong,Wang Xiangyu,Zhang Jinlong,Dong Chunxiao,Wang Biao,Liu Yu,Chu Mingxing,Zhang Xiaoshen,Zhong Rongzhen

Abstract

AbstractGenetic variations in the ovine ovulation rate, which are associated with the FecB mutation, provide useful models by which to explore the mechanisms regulating the development of mammalian antral follicles. In order to study the effects of the FecB mutation on cumulus cell differentiation, preovulatory follicles were aspirated and cumulus cells were isolated from three FecB genotypes (homozygous, heterozygous and wild type) of Small Tail Han (STH) sheep superstimulated with FSH. Transcriptome information from tens of thousands of cumulus cells was determined with the 10 × Genomics single-cell RNA-seq technology. Under the superovulation treatment, the observed number of preovulatory follicles in the ovaries of FecB carriers was still significantly higher than that in the wild-type (P < 0.05). The expression patterns of cumulus cells differed between FecB carriers and wild-type ewes. The screened cumulus cells could also be further divided into different cell clusters, and the differentiation states and fates of each group of cumulus cells also remained different, which supports the notion that heterogeneity in gene expression is prevalent in single cells. The oxidative phosphorylation pathway was significantly enriched in differentially expressed genes among the cell differentiation branch nodes of cumulus cells and among the differentially expressed genes of cumulus cells from the three genotypes. Combined with the important role of oxidative phosphorylation in the maturation of COCs, we suggest that the oxidative phosphorylation pathway of cumulus cells plays a crucial role in the differentiation process of cumulus cells and the mutation effect of the FecB gene.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Jilin Province

China Postdoctoral Science Foundation

Jilin Province Youth Growth Technology Project

Natural Science Foundation of Tianjin

Strategic Priority Research Program of the Chinese Academy of Sciences

Jilin Science and technology development plan project

Tianjin Science and Technology Plan Project

Key Special Project of the “Science and Technology Revitalization of Mongolia” Action

Shennong Talent Plan of the Ministry of Agriculture and Rural Affairs

Publisher

Springer Science and Business Media LLC

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