Qiang Zhang, Jingyao Zhang, Gang Chang, Kun Zhao, Yujun Yao, Li Liu, Zihuan Du, Yanping Wang, Xingrong Guo, Zongsheng Zhao, Weibin Zeng, Shuai Gao
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Transcriptome profiling identified three types of oocytes (small, medium, and large) that underwent different developmental trajectories, with large oocytes exhibiting the largest average follicle size and characteristics resembling metaphase-II oocytes. Differential expression analysis and real-time polymerase chain reaction assay showed that most replication-dependent histone genes were highly expressed in large oocytes. The joint analysis of multi-omics data revealed that the transcription of 20 differentially expressed genes in large oocytes was associated with both DNA methylation and chromatin accessibility. In addition, oocyte-cumulus interaction analysis showed that inflammation, DNA damage, and p53 signaling pathways were active in small oocytes, which had the smallest average follicle sizes. We further confirmed that p53 pathway inhibition in the in vitro maturation experiments using oocytes obtained from small antral follicles could improve the quality of oocytes and increased the blastocyte rate after in vitro fertilization and culture. Our work provides new insights into the intricate orchestration of bovine oocyte fate determination during antral folliculogenesis, which is instrumental for optimizing in vitro maturation techniques to optimize oocyte quality.</p>","PeriodicalId":3,"journal":{"name":"ACS Applied Electronic Materials","volume":null,"pages":null},"PeriodicalIF":4.3000,"publicationDate":"2024-10-14","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Decoding molecular features of bovine oocyte fate during antral follicle growth via single-cell multi-omics analysis†.\",\"authors\":\"Qiang Zhang, Jingyao Zhang, Gang Chang, Kun Zhao, Yujun Yao, Li Liu, Zihuan Du, Yanping Wang, Xingrong Guo, Zongsheng Zhao, Weibin Zeng, Shuai Gao\",\"doi\":\"10.1093/biolre/ioae114\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Antral follicle size is a useful predictive marker of the competency of enclosed oocytes for yielding an embryo following in vitro maturation and fertilization. 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引用次数: 0
摘要
前腔卵泡大小是体外成熟和受精后封闭卵母细胞能否产生胚胎的有效预测指标。然而,牛前卵泡生长过程中支撑卵母细胞发育潜能的分子机制仍不清楚。在这里,我们使用一种改进的单细胞多组学方法,平行分析了从不同大小的牛前卵泡中收集的卵母细胞和积层细胞的转录组、DNA甲基化组和染色质可及性。转录组分析确定了三种类型的卵母细胞(小、中、大),它们经历了不同的发育轨迹,其中大卵母细胞的平均卵泡体积最大,其特征类似于第二期卵母细胞。差异表达分析和实时聚合酶链式反应(real-time PCR)检测显示,大多数依赖于复制的组蛋白基因在大卵母细胞中高度表达。多组学数据联合分析显示,大卵母细胞中 20 个差异表达基因的转录与 DNA 甲基化和染色质可及性有关。此外,卵母细胞-卵丘相互作用分析表明,炎症、DNA损伤和p53信号通路在平均卵泡尺寸最小的小卵母细胞中非常活跃。我们进一步证实,在体外成熟实验中使用小前卵泡获得的卵母细胞抑制 p53 通路,可以提高卵母细胞的质量,并增加体外受精和培养后的囊胚率。我们的工作为了解牛前卵泡发生过程中卵母细胞命运决定的复杂过程提供了新的视角,有助于优化体外成熟技术,从而优化卵母细胞质量。
Decoding molecular features of bovine oocyte fate during antral follicle growth via single-cell multi-omics analysis†.
Antral follicle size is a useful predictive marker of the competency of enclosed oocytes for yielding an embryo following in vitro maturation and fertilization. However, the molecular mechanisms underpinning oocyte developmental potential during bovine antral follicle growth are still unclear. Here, we used a modified single-cell multi-omics approach to analyze the transcriptome, DNA methylome, and chromatin accessibility in parallel for oocytes and cumulus cells collected from bovine antral follicles of different sizes. Transcriptome profiling identified three types of oocytes (small, medium, and large) that underwent different developmental trajectories, with large oocytes exhibiting the largest average follicle size and characteristics resembling metaphase-II oocytes. Differential expression analysis and real-time polymerase chain reaction assay showed that most replication-dependent histone genes were highly expressed in large oocytes. The joint analysis of multi-omics data revealed that the transcription of 20 differentially expressed genes in large oocytes was associated with both DNA methylation and chromatin accessibility. In addition, oocyte-cumulus interaction analysis showed that inflammation, DNA damage, and p53 signaling pathways were active in small oocytes, which had the smallest average follicle sizes. We further confirmed that p53 pathway inhibition in the in vitro maturation experiments using oocytes obtained from small antral follicles could improve the quality of oocytes and increased the blastocyte rate after in vitro fertilization and culture. Our work provides new insights into the intricate orchestration of bovine oocyte fate determination during antral folliculogenesis, which is instrumental for optimizing in vitro maturation techniques to optimize oocyte quality.