Cell lineage in the development of invertebrate nervous systems.

@article{Stent1985CellLI,
  title={Cell lineage in the development of invertebrate nervous systems.},
  author={Gunther Siegmund Stent and David A. Weisblat},
  journal={Annual review of neuroscience},
  year={1985},
  volume={8},
  pages={
          45-70
        }
}
Studies of developmental cell lineage, i.e. of the fate of individual blastomeres that arise in an embryo, were begun in the 1 870s , in the context of the con­ troversy then raging about the "biogenetic," or "recapitulation," law promul­ gated by Ernst Haeckel . The biogenetic law seemed to imply that the early, pre-gastrula stages of metazoan embryogenesis recapitulate the nondifferen­ tiated condition of a remote colonial ancestor. Hence, prior to gastrulation, all blastomeres should be of… 
Eutely, cell lineage, and fate within the ascidian larval nervous system: determinacy or to be determined?
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The larval central nervous system of the ascidian Ciona intestinalis arises from an embryonic neural plate and contains sufficiently few cells, about 330, to enable definitive counts, and there is evidence both for cell constancy in the larval CNS and for small variations in the overall numbers of cells and among defined cell types within this total.
Segregation of fate during cleavage of frog (Xenopus laevis) blastomeres
TLDR
Semiquantitative lineage diagrams demonstrate that as cleavage proceeds from the 2- to the 32-cell stage, the progenitors for particular organs or for specific regions of organs segregate into defined regions of the blastula.
A single cell approach to problems of cell lineage and commitment during embryogenesis of Drosophila melanogaster.
TLDR
A method has been devised to study cell lineage in Drosophila embryos at the single cell level and the state of commitment of single cell progenitors from various ectodermal, mesodermal and endodermal anlagen and of the pole cells.
Lineage analysis of transplanted individual cells in embryos of Drosophila melanogaster
TLDR
The results of cell transplantation experiments performed to investigate mesodermal lineages in Drosophila melanogaster, particularly the lineages of the somatic muscles, the visceral muscles and the fat body, show that clones were difficult to interpret and the organization of the other organs is poorly understood.
Programs of cell division in the lateral line system
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References

SHOWING 1-10 OF 117 REFERENCES
Cell lineage and the induction of second nervous systems in amphibian development
TLDR
It is shown that surgically induced second nervous systems are made by host cells which have lineages separate from those that contribute to the original CNS from the 32-cell stage, and the implications for the recent proposals about early compartmentation in vertebrate development.
The embryonic cell lineage of the nematode Caenorhabditis elegans.
Positional determination of supernumerary blast cell death in the leech embryo
TLDR
It is shown here that the survival or death of ectodermal blast cells is determined by position independent of their cell lineage identities, implying that the final number of segments is imposed on the ectoderm by interactions with the other embryonic tissues.
Cell determination and regulation during development of neuroblasts and neurones in grasshopper embryo
TLDR
The results suggest the importance of cell–cell interactions in the determination of ectodermal cells to become identified neuroblasts, and the role of cell lineage appears to play an important role in its stereotyped family of neuronal progeny once a neuroblast begins to divide.
Embryonic development of identified neurons: segment-specific differences in the H cell homologues
TLDR
Cells that are the progeny of the same precursor cell in different segments can either live or die and, if they survive, can develop different morphological and physiological properties.
Embryonic Development of Identified Neurons in the Grasshopper
TLDR
The results demonstrate how segmental specializations in the nervous system can arise by segment-specific differentiation and segment- specific cell death of identified neurons of known lineage.
Clonal organization of the central nervous system of the frog. II. Clones stemming from individual blastomeres of the 32- and 64-cell stages
  • M. Jacobson, G. Hirose
  • Biology
    The Journal of neuroscience : the official journal of the Society for Neuroscience
  • 1981
TLDR
The constant relationship between the position of each of the initially labeled blastomeres and the final spatial distribution of the labeled descendants in the CNS provided a detailed fate map of the main regions of the CNS in the 32- and 64-cell embryo.
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