胚泡
生物
剂量补偿
西斯特
胚胎干细胞
SOX2
胚胎
转录组
内细胞团
遗传学
细胞生物学
胚胎发生
体细胞
谱系(遗传)
基因
染色体
X染色体
基因表达
X-失活
作者
Bingjie Hu,Hao Jin,Yan Shi,Haotian Yu,Xiaotong Wu,Shaohua Wang,Kun Zhang
标识
DOI:10.1096/fj.202302035rr
摘要
Abstract Lineage specification and X chromosome dosage compensation are two crucial biological processes that occur during preimplantation embryonic development. Although extensively studied in mice, the timing and regulation of these processes remain elusive in other species, including humans. Previous studies have suggested conserved principles of human and bovine early development. This study aims to provide fundamental insights into these programs and the regulation using a bovine embryo model by employing single‐cell transcriptomics and genome editing approaches. The study analyzes the transcriptomes of 286 individual cells and reveals that bovine trophectoderm/inner cell mass transcriptomes diverge at the early blastocyst stage, after cavitation but before blastocyst expansion. The study also identifies transcriptomic markers and provides the timing of lineage specification events in the bovine embryo. Importantly, we find that SOX2 is required for the first cell decision program in bovine embryos. Moreover, the study shows the occurrence of X chromosome dosage compensation from morula to late blastocyst and reveals that this compensation results from downregulation of X‐linked genes in female embryonic cells. The transcriptional atlas generated by this study is expected to be widely useful in improving our understanding of mammalian early embryo development.
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