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Fog signaling has diverse roles in epithelial morphogenesis in insects.

Matthew Alan Benton | Nadine Frey | Rodrigo Nunes da Fonseca | Cornelia von Levetzow | Dominik Stappert | Muhammad Salim Hakeemi | Kai H Conrads | Matthias Pechmann | Kristen A Panfilio | Jeremy A Lynch | Siegfried Roth
eLife | 2019

The Drosophila Fog pathway represents one of the best-understood signaling cascades controlling epithelial morphogenesis. During gastrulation, Fog induces apical cell constrictions that drive the invagination of mesoderm and posterior gut primordia. The cellular mechanisms underlying primordia internalization vary greatly among insects and recent work has suggested that Fog signaling is specific to the fast mode of gastrulation found in some flies. On the contrary, here we show in the beetle Tribolium, whose development is broadly representative for insects, that Fog has multiple morphogenetic functions. It modulates mesoderm internalization and controls a massive posterior infolding involved in gut and extraembryonic development. In addition, Fog signaling affects blastoderm cellularization, primordial germ cell positioning, and cuboidal-to-squamous cell shape transitions in the extraembryonic serosa. Comparative analyses with two other distantly related insect species reveals that Fog's role during cellularization is widely conserved and therefore might represent the ancestral function of the pathway.

Pubmed ID: 31573513

Research resources used in this publication

None found

Antibodies used in this publication

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Associated grants

  • Agency: Boehringer Ingelheim Fonds, International
    Id: PhD fellowship
  • Agency: Deutsche Forschungsgemeinschaft, International
    Id: DFG Research Fellowship 407643416
  • Agency: Deutsche Forschungsgemeinschaft, International
    Id: CRC 680
  • Agency: University of Cologne, International
    Id: International Graduate School in Genetics and Functional Genomics
  • Agency: University of Cologne, International
    Id: Postdoctoral grant
  • Agency: Deutsche Forschungsgemeinschaft, International
    Id: RU 1234
  • Agency: NICHD NIH HHS, United States
    Id: R03 HD078578
  • Agency: Alexander von Humboldt Foundation, International
    Id: Postdoctoral Fellowship
  • Agency: NIH HHS, United States
    Id: R03 HD078578
  • Agency: Alexander von Humboldt Foundation, International
    Id: Postdoctoral Felloship
  • Agency: Deutsche Forschungsgemeinschaft, International
    Id: Emmy Noether Program PA 2044/1-1)

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