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Updated: Sep 17, 2025

Visualizing Neuroblast Cytokinesis During C. elegans Embryogenesis
Published on: March 12, 2014
Repeated extrinsic and anisotropic mechanical inputs promote C. elegans polarized adherens junction elongation
Xinyi Yang1, Teresa Ferraro2, Kelly Molnar2
1Laboratoire de Biologie du Développement - Institut de Biologie Paris Seine, UMR7622, Sorbonne Université, 7-9 quai Saint Bernard, 75005 Paris, France; Development and Stem Cell Program, IGBMC, UMR7104, U964, Université de Strasbourg, 1 rue Laurent Fries, BP10142, 67400 Illkirch, France.
Abstract:
A key challenge in development is understanding how complex organisms physically coordinate the morphogenesis of multiple tissues. Here, using biophysical approaches, we investigate how muscles under the epidermis specifically stimulate the extension of anterior-posterior (AP)-oriented epidermal adherens junctions during late C. elegans embryonic elongation. First, light-sheet imaging shows that asynchronous patterns of muscle contractions drive embryo rotations. In turn, junctions between the lateral and dorso-ventral epidermis repeatedly oscillate between a folded, hypotensed state and an extended, hypertensed state. Second, fluorescence recovery after photobleaching (FRAP) analysis of an E-cadherin::GFP construct shows that muscle contractions stimulate E-cadherin turnover. Moreover, a mechano-chemical model backed by genetic tests suggests that E-cadherin trafficking controls junction elongation due to lower line tension. Altogether, our results illustrate how muscle contractions fluidize epidermal adherens junctions, which, combined with anisotropic tension in the epidermis, drive their polarized extension.
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