Abstract
ABSTRACTIn early embryos of the neogastropodIlyanassa obsoleta, cytoplasmic segregation of a polar lobe is required for establishment of the D macromere, empowering its great-granddaughter macromere 3D to act as a single-celled organizer that induces body patterning along the secondary axis. We present evidence that polar lobe inheritance is not sufficient to specify 3D potential, but rather makes the D macromere lineage responsive to some intercellular signal(s) required for activating the special properties of 3D. Experimental removal of micromeres results in loss of organizer-linked MAPK activation, complete and specific defects of organizer-dependent larval organs, and progressive cell cycle retardation leading to equalization of the normally accelerated division schedule of 3D. Ablation of the second-quartet micromere 2d greatly potentiates the effects of first-quartet micromere ablation. Our findings link 3D establishment inI. obsoletato the putative ancestral spiralian mechanism in which a signal from micromeres leads to specification of 3D among four initially equivalent macromeres.Summary StatementCell ablation experiments on embryos of the snailIlyanassareveal that specification of the organizer cell 3D depends on cell-extrinsic cues as well as polar lobe inheritance.
Publisher
Cold Spring Harbor Laboratory
Reference36 articles.
1. Spatial aspects of cell interactions involved in the determination of dorsoventral polarity in equally cleaving gastropods and regulative abilities of their embryos, as studied by micromere deletions in Lymnaea and Patella;Roux”s Arch. Dev. Biol,1983
2. Organogenesis in normal and lobeless embryos of the marine prosobranch gastropodIlyanassa obsoleta
3. Cell-cell interactions determine the dorsoventral axis in embryos of an equally cleaving opisthobranch mollusc;Dev. Biol,1989
4. The role of the first quartet micromeres in the development of the polyclad Hoploplana inquilina;Biol. Bull,1989
5. The development of Bithynia tentaculata (Prosobranchia, Gastropoda) after removal of the polar lobe;J. Embryol. Exp. Morphol,1974