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Updated: Apr 21, 2026

Large-scale Zebrafish Embryonic Heart Dissection for Transcriptional Analysis
Published on: January 12, 2015
Time-resolved single-cell transcriptomics maps zebrafish heart development
Marco Tarasco1, Thomas Juan1, Yousef Alayoubi2
1Department of Developmental Genetics, Max Planck Institute for Heart and Lung Research, Bad Nauheim, Germany; DZHK German Centre for Cardiovascular Research, Partner Site Rhine-Main, Bad Nauheim, Germany; Cardio-Pulmonary Institute (CPI), Bad Nauheim, Germany.
None:
Cardiac development is a process where bilateral precursors come together to form a tube that matures into a complex multi-chambered organ. Despite advances in single-cell RNA sequencing technology, a comprehensive analysis of zebrafish heart development from early to late stages is still lacking. We profiled over 34,000 cells from zebrafish hearts spanning ten developmental stages from 25 h to 60 days post-fertilization. We identified and subclustered all known cardiac cell types, revealing distinct proliferation dynamics and uncovering an additional peak in cardiomyocyte proliferation at 14 days post-fertilization. We analyzed the cardiac interactome, focusing on ligand-receptor interactions between the myocardium and endocardium. By investigating later stages, we discovered several marker genes that are enriched in compact or trabecular layer cardiomyocytes including bcam, kcnj14, and kcnj5. We also identified kcnj3b as a specific pacemaker gene. This zebrafish heart atlas enhances our understanding of vertebrate heart development and represents a valuable resource for future studies.

