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Downregulation of extraembryonic tension controls body axis formation in avian embryos.


ABSTRACT: Embryonic tissues undergoing shape change draw mechanical input from extraembryonic substrates. In avian eggs, the early blastoderm disk is under the tension of the vitelline membrane (VM). Here we report that the chicken VM characteristically downregulates tension and stiffness to facilitate stage-specific embryo morphogenesis. Experimental relaxation of the VM early in development impairs blastoderm expansion, while maintaining VM tension in later stages resists the convergence of the posterior body causing stalled elongation, failure of neural tube closure, and axis rupture. Biochemical and structural analysis shows that VM weakening is associated with the reduction of outer-layer glycoprotein fibers, which is caused by an increasing albumen pH due to CO2 release from the egg. Our results identify a previously unrecognized potential cause of body axis defects through mis-regulation of extraembryonic tissue tension.

SUBMITTER: Kunz D 

PROVIDER: S-EPMC10241863 | biostudies-literature | 2023 Jun

REPOSITORIES: biostudies-literature

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Downregulation of extraembryonic tension controls body axis formation in avian embryos.

Kunz Daniele D   Wang Anfu A   Chan Chon U CU   Pritchard Robyn H RH   Wang Wenyu W   Gallo Filomena F   Bradshaw Charles R CR   Terenzani Elisa E   Müller Karin H KH   Huang Yan Yan Shery YYS   Xiong Fengzhu F  

Nature communications 20230605 1


Embryonic tissues undergoing shape change draw mechanical input from extraembryonic substrates. In avian eggs, the early blastoderm disk is under the tension of the vitelline membrane (VM). Here we report that the chicken VM characteristically downregulates tension and stiffness to facilitate stage-specific embryo morphogenesis. Experimental relaxation of the VM early in development impairs blastoderm expansion, while maintaining VM tension in later stages resists the convergence of the posterio  ...[more]

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