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Updated: Mar 7, 2026

Generation of Naïve Blastoderm Explants from Zebrafish Embryos
Published on: July 30, 2021
The Physical Basis of Coordinated Tissue Spreading in Zebrafish Gastrulation
Hitoshi Morita1, Silvia Grigolon2, Martin Bock3
1Institute of Science and Technology Austria, Am Campus 1, 3400 Klosterneuburg, Austria.
Abstract:
Embryo morphogenesis relies on highly coordinated movements of different tissues. However, remarkably little is known about how tissues coordinate their movements to shape the embryo. In zebrafish embryogenesis, coordinated tissue movements first become apparent during "doming," when the blastoderm begins to spread over the yolk sac, a process involving coordinated epithelial surface cell layer expansion and mesenchymal deep cell intercalations. Here, we find that active surface cell expansion represents the key process coordinating tissue movements during doming. By using a combination of theory and experiments, we show that epithelial surface cells not only trigger blastoderm expansion by reducing tissue surface tension, but also drive blastoderm thinning by inducing tissue contraction through radial deep cell intercalations. Thus, coordinated tissue expansion and thinning during doming relies on surface cells simultaneously controlling tissue surface tension and radial tissue contraction.

