A Unique Class of Neural Progenitors in the Drosophila Optic Lobe Generates Both Migrating Neurons and Glia
How neuronal and glial fates are specified from neural precursor cells is an important question for developmental neurobiologists. We address this question in the Drosophila optic lobe, composed of the lamina, medulla, and lobula complex. We show that two gliogenic regions posterior to the prospecti...
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Published in | Cell reports (Cambridge) Vol. 15; no. 4; pp. 774 - 786 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
Published |
United States
Elsevier Inc
26.04.2016
Elsevier |
Subjects | |
Online Access | Get full text |
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Summary: | How neuronal and glial fates are specified from neural precursor cells is an important question for developmental neurobiologists. We address this question in the Drosophila optic lobe, composed of the lamina, medulla, and lobula complex. We show that two gliogenic regions posterior to the prospective lamina also produce lamina wide-field (Lawf) neurons, which share common progenitors with lamina glia. These progenitors express neither canonical neuroblast nor lamina precursor cell markers. They bifurcate into two sub-lineages in response to Notch signaling, generating lamina glia or Lawf neurons, respectively. The newly born glia and Lawfs then migrate tangentially over substantial distances to reach their target tissue. Thus, Lawf neurogenesis, which includes a common origin with glia, as well as neuronal migration, resembles several aspects of vertebrate neurogenesis.
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•Common progenitor cells generate Lawf neurons and lamina glia in bifurcating lineages•Common progenitor cells differ from typical Drosophila neuroblasts•Notch regulates the decision between lamina glial precursors and Lawf neuronal precursors•Lawf neurons migrate over long distances to assume their final positions in the medulla
Chen et al. report an unusual class of progenitor cells, which bifurcate into lineages of migrating lamina glia and migrating Lawf neurons. The common progenitors differ from typical Drosophila neuroblasts. The Notch pathway mediates the fate choice between the glial and neuronal precursors, resembling the glia/neuron fate choice in vertebrates. |
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Bibliography: | ObjectType-Article-1 SourceType-Scholarly Journals-1 ObjectType-Feature-2 content type line 23 Present address: Department of Biology, University of Toronto Mississauga, 3359 Mississauga Road, Mississauga, ON L5L 1C6, Canada Present address: Department of Cell and Developmental Biology, 601 South Goodwin Avenue, University of Illinois, Urbana-Champaign, IL 61801, USA |
ISSN: | 2211-1247 2211-1247 |
DOI: | 10.1016/j.celrep.2016.03.061 |