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Single cell transcriptome sequencing reveals key molecules and pathways underlying the development of in vitro fertilized and pathenogenetically activated early embryos in pigs

GSE164812 Sus scrofa Expression profiling by high throughput sequencing 42 samples Submitted 2021/07/19 Platform GPL22918
Summary
Successful early embryo development requires the correct reprogramming and configuration of gene networks by the timely and faithful execution of zygotic genome activation (ZGA). However, the regulatory principle of molecular elements and circuits fundamental to embryo development remains largely obscure. Here, we profiled the transcriptomes of single oocytes and blastomeres, obtained from in vitro fertilized (IVF) or parthenogenetically activated (PA) porcine early embryos (1- to 8-cell), focusing on the gene expression dynamics and regulatory networks associated with maternal-to-zygote transition (MZT) (e.g. maternal RNA clearance and ZGA). We found that minor and major ZGAs occur at 1-cell and 4-cell stages for both IVF and PA embryos, respectively. Maternal RNAs gradually decay from 1- to 8-cell embryos. Top abundantly expressed genes (CDV3, PCNA, CDR1, YWHAE, DNMT1, IGF2BP3, ARMC1, BTG4, UHRF2 and gametocyte-specific factor 1-like) in both IVF and PA early embryos identified are of vital roles for embryo development. Differently expressed genes within IVF groups are different from that within PA groups, indicating bi-parental and maternal-only embryos have specific sets of mRNAs distinctly decayed and activated. Pathways enriched from DEGs showed that RNA associated pathways (RNA biding, processing, transport and degradation) could be important. Moreover, mitochondrial RNAs were found to be actively transcribed and dynamically changed. DNA/H3K4 methylation and transcription factors also showed dynamic expression patterns. Taken together, our findings provide an important resource to investigate further the epigenetic and genome regulation of MZT events in early embryos of pigs.
Published in
Single cell RNA-seq reveals genes vital to in vitro fertilized embryos and parthenotes in pigs
Du ZQ, Liang H, Liu XM et al. · Scientific reports 2021 · PMID 34257377 · doi:10.1038/s41598-021-93904-3
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Also filed as BioProject PRJNA692116 and SRA study SRP301735. Searching any of these in the dataset finder brings you back here.

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