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 zygotes 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) (mainly 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. Differentially 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 binding, processing, transport and degradation) could be important. Moreover, mitochondrial RNAs are found to be actively transcribed, showing dynamic expression patterns, and for DNA/H3K4 methylation and transcription factors as well. Taken together, our findings provide an important resource to investigate further the epigenetic and genome regulation of MZT events in early embryos of pigs.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8277874PMC
http://dx.doi.org/10.1038/s41598-021-93904-3DOI Listing

Publication Analysis

Top Keywords

embryo development
12
early embryos
12
vitro fertilized
8
expressed genes
8
embryos
7
single cell
4
cell rna-seq
4
rna-seq reveals
4
reveals genes
4
genes vital
4

Similar Publications

Rational Fabrication of Functionally-Graded Surfaces for Biological and Biomedical Applications.

Acc Mater Res

December 2024

The Wallace H. Coulter Department of Biomedical Engineering, Georgia Institute of Technology and Emory University, Atlanta, Georgia 30332, United States.

As a ubiquitous feature of the biological world, gradation, in either composition or structure, is essential to many functions and processes. Taking protein gradation as an example, it plays a pivotal role in the development and evolution of human bodies, including stimulation and direction of the outgrowth of peripheral nerves in a developing fetus. It is also critically involved in wound healing by attracting and guiding immune cells to the site of injury or infection.

View Article and Find Full Text PDF

Ion channels play a crucial role in cardiac functions, and their activities exhibit dynamic changes during heart development. However, the precise function of ion channels in human heart development remains elusive. In this study, we utilized human embryonic stem cells (hESCs) as a model to mimic the process of human embryonic heart development.

View Article and Find Full Text PDF

Functional diversity of cardiac macrophages in health and disease.

Nat Rev Cardiol

January 2025

Center for Cardiovascular Research, Division of Cardiology, Department of Medicine, Washington University School of Medicine, Saint Louis, MO, USA.

Macrophages make up a substantial portion of the stromal compartment of the heart in health and disease. In the past decade, the origins of these cardiac macrophages have been established as two broad populations derived from either embryonic or definitive haematopoiesis and that can be distinguished by the expression of CC-motif chemokine receptor 2 (CCR2). These cardiac macrophage populations are transcriptionally distinct and have differing cell surface markers and divergent roles in cardiac homeostasis and disease.

View Article and Find Full Text PDF

Operating principles of interconnected feedback loops driving cell fate transitions.

NPJ Syst Biol Appl

January 2025

Department of Mathematics, University of Florida, Gainesville, 32601, FL, USA.

Interconnected feedback loops are prevalent across biological mechanisms, including cell fate transitions enabled by epigenetic mechanisms in carcinomas. However, the operating principles of these networks remain largely unexplored. Here, we identify numerous interconnected feedback loops implicated in cell lineage decisions, which we discover to be the hallmarks of lower- and higher-dimensional state space.

View Article and Find Full Text PDF

[Expression and Prognostic Significance of B-cell Development-Related Genes in Children with Acute B Lymphoblastic Leukemia].

Zhongguo Shi Yan Xue Ye Xue Za Zhi

December 2024

Shaanxi Institute for Pediatric Diseases, Shaanxi Provincial Key Laboratory of Children's Health and Diseases, Xi'an Children's Hospital, Shaanxi Province, China.

Objective: To analyze the expression of B-cell development-related genes in acute B lymphoblastic leukemia (B-ALL), and to explore the relationship between B-cell development-related genes and the prognosis of B-ALL patients.

Methods: The GEO and TARGET databases were integrated to analyze the differential expression of B-cell development-related genes between the healthy persons and B-ALL patients and their differential expression in the B-ALL relapse and non-relapse groups. Cox single factor regression and Lasso regression were used to constructe a B-ALL specific prognosis model of B-cell development-related genes.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!