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Genetic induction and mechanochemical propagation of a morphogenetic wave
- Source :
- Nature. August, 2019, Vol. 572 Issue 7770, 467
- Publication Year :
- 2019
-
Abstract
- Tissue morphogenesis arises from coordinated changes in cell shape driven by actomyosin contractions. Patterns of gene expression regionalize cell behaviours by controlling actomyosin contractility. Here we report two modes of control over Rho1 and myosin II (MyoII) activation in the Drosophila endoderm. First, Rho1-MyoII are induced in a spatially restricted primordium via localized transcription of the G-protein-coupled receptor ligand Fog. Second, a tissue-scale wave of Rho1-MyoII activation and cell invagination progresses anteriorly away from the primordium. The wave does not require sustained gene transcription, and is not governed by regulated Fog delivery. Instead, MyoII inhibition blocks Rho1 activation and propagation, revealing a mechanical feedback driven by MyoII. We find that MyoII activation and invagination in each row of cells drives adhesion to the vitelline membrane mediated by integrins, apical spreading, MyoII activation and invagination in the next row. Endoderm morphogenesis thus emerges from local transcriptional initiation and a mechanically driven cycle of cell deformation. Tissue shape changes in the posterior endoderm of the early Drosophila embryo are driven by actomyosin contractions emerging from a transcriptional induction followed by a mechanically-driven propagation of RhoI-myosin II activation.<br />Author(s): Anaïs Bailles [sup.1] [sup.2] , Claudio Collinet [sup.1] [sup.2] , Jean-Marc Philippe [sup.1] [sup.2] , Pierre-François Lenne [sup.1] [sup.2] , Edwin Munro [sup.3] , Thomas Lecuit [sup.1] [sup.2] [sup.4] [...]
Details
- Language :
- English
- ISSN :
- 00280836
- Volume :
- 572
- Issue :
- 7770
- Database :
- Gale General OneFile
- Journal :
- Nature
- Publication Type :
- Academic Journal
- Accession number :
- edsgcl.597078836
- Full Text :
- https://doi.org/10.1038/s41586-019-1492-9