The Clock and Wavefront Self-Organizing model recreates the dynamics of mouse somitogenesis in vivo and in vitro

Author:

Klepstad Julie1ORCID,Marcon Luciano1ORCID

Affiliation:

1. Andalusian Center for Developmental Biology (CABD) CSIC-UPO-JA , Carretera de Utrera km 1, 41013 Seville , Spain

Abstract

ABSTRACT During mouse development, presomitic mesoderm cells synchronize Wnt and Notch oscillations, creating sequential phase waves that pattern somites. Traditional somitogenesis models attribute phase waves to a global modulation of the oscillation frequency. However, increasing evidence suggests that they could arise in a self-organizing manner. Here, we introduce the Sevilletor, a novel reaction-diffusion system that serves as a framework to compare different somitogenesis patterning hypotheses. Using this framework, we propose the Clock and Wavefront Self-Organizing model that considers an excitable self-organizing region where phase waves form independent of global frequency gradients. The model recapitulates the change in relative phase of Wnt and Notch observed during mouse somitogenesis and provides a theoretical basis for understanding the excitability of mouse presomitic mesoderm cells in vitro.

Funder

Ministerio de Ciencia e Innovación

Centro Andaluz de Biologia del Desarrollo

Publisher

The Company of Biologists

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