메뉴 건너뛰기




Volumn 404, Issue 2, 2015, Pages 2-20

Origin and development of neuropil glia of the Drosophila larval and adult brain: Two distinct glial populations derived from separate progenitors

Author keywords

Astrocyte like glia; Brain; Drosophila; Ensheathing glia; Repo

Indexed keywords

ADULT; ANIMAL TISSUE; APOPTOSIS; ARTICLE; ASTROCYTE LIKE GLIA; BRAIN DEVELOPMENT; CELL MIGRATION; CONTROLLED STUDY; DROSOPHILA; EMBRYO; ENSHEATHING LIKE GLIA; GLIA; LARVA; METAMORPHOSIS; MORPHOGENESIS; NERVE CELL DIFFERENTIATION; NERVE CELL NECROSIS; NEURAL STEM CELL; NEUROPIL; NEUROPIL GLIA; NONHUMAN; OPTIC LOBE; PRIMORDIUM; PRIORITY JOURNAL; PUPA; ANIMAL; ASTROCYTE; BRAIN; CELL LINEAGE; CELL MOTION; CYTOLOGY; EMBRYOLOGY; GROWTH, DEVELOPMENT AND AGING; NERVOUS SYSTEM DEVELOPMENT; PHYSIOLOGY;

EID: 84929277003     PISSN: 00121606     EISSN: 1095564X     Source Type: Journal    
DOI: 10.1016/j.ydbio.2015.03.004     Document Type: Article
Times cited : (40)

References (68)
  • 1
    • 0003455528 scopus 로고
    • Cold Spring Harbor Laboratory Press, Cold Spring Harbor, NY
    • Ashburner M. Drosophila. A laboratory manual 1989, 214-217. Cold Spring Harbor Laboratory Press, Cold Spring Harbor, NY.
    • (1989) Drosophila. A laboratory manual , pp. 214-217
    • Ashburner, M.1
  • 2
    • 84866786740 scopus 로고    scopus 로고
    • Concerted control of gliogenesis by InR/TOR and FGF signalling in the Drosophila post-embryonic brain
    • Avet-Rochex A., Kaul A.K., Gatt A.P., McNeill H., Bateman J.M. Concerted control of gliogenesis by InR/TOR and FGF signalling in the Drosophila post-embryonic brain. Development 2012, 139:2763-2772.
    • (2012) Development , vol.139 , pp. 2763-2772
    • Avet-Rochex, A.1    Kaul, A.K.2    Gatt, A.P.3    McNeill, H.4    Bateman, J.M.5
  • 3
    • 58149396831 scopus 로고    scopus 로고
    • Organization and postembryonic development of glial cells in the adult central brain of Drosophila
    • Awasaki T., Lai S.L., Ito K., Lee T. Organization and postembryonic development of glial cells in the adult central brain of Drosophila. J. Neurosci. 2008, 28:13742-13753.
    • (2008) J. Neurosci. , vol.28 , pp. 13742-13753
    • Awasaki, T.1    Lai, S.L.2    Ito, K.3    Lee, T.4
  • 4
    • 0023000973 scopus 로고
    • Guidance of neuronal growth cones in the grasshopper embryo. III. Recognition of specific glial pathways
    • Bastiani M.J., Goodman C.S. Guidance of neuronal growth cones in the grasshopper embryo. III. Recognition of specific glial pathways. J. Neurosci. 1986, 6:3542-3551.
    • (1986) J. Neurosci. , vol.6 , pp. 3542-3551
    • Bastiani, M.J.1    Goodman, C.S.2
  • 5
    • 77957190649 scopus 로고    scopus 로고
    • Drosophila type II neuroblast lineages keep Prospero levels low to generate large clones that contribute to the adult brain central complex
    • Bayraktar O.A., Boone J.Q., Drummond M.L., Doe C.Q. Drosophila type II neuroblast lineages keep Prospero levels low to generate large clones that contribute to the adult brain central complex. Neural Dev. 2010, 5:26.
    • (2010) Neural Dev. , vol.5 , pp. 26
    • Bayraktar, O.A.1    Boone, J.Q.2    Drummond, M.L.3    Doe, C.Q.4
  • 6
    • 84879689781 scopus 로고    scopus 로고
    • Combinatorial temporal patterning in progenitors expands neural diversity
    • Bayraktar O.A., Doe C.Q. Combinatorial temporal patterning in progenitors expands neural diversity. Nature 2013, 498:449-455.
    • (2013) Nature , vol.498 , pp. 449-455
    • Bayraktar, O.A.1    Doe, C.Q.2
  • 7
    • 41949090199 scopus 로고    scopus 로고
    • Subtypes of glial cells in the Drosophila embryonic ventral nerve cord as related to lineage and gene expression
    • Beckervordersandforth R.M., Rickert C., Altenhein B., Technau G.M. Subtypes of glial cells in the Drosophila embryonic ventral nerve cord as related to lineage and gene expression. Mech. Dev. 2008, 125:542-557.
    • (2008) Mech. Dev. , vol.125 , pp. 542-557
    • Beckervordersandforth, R.M.1    Rickert, C.2    Altenhein, B.3    Technau, G.M.4
  • 8
    • 0028246732 scopus 로고
    • The fate of the CNS midline progenitors in Drosophila as revealed by a new method for single cell labelling
    • Bossing T., Technau G.M. The fate of the CNS midline progenitors in Drosophila as revealed by a new method for single cell labelling. Development 1994, 120:1895-1906.
    • (1994) Development , vol.120 , pp. 1895-1906
    • Bossing, T.1    Technau, G.M.2
  • 9
    • 80052459948 scopus 로고    scopus 로고
    • Astrocyte-like glia associated with the embryonic development of the central complex in the grasshopper Schistocerca gregaria
    • Boyan G., Loser M., Williams L., Liu Y. Astrocyte-like glia associated with the embryonic development of the central complex in the grasshopper Schistocerca gregaria. Dev. Genes Evol. 2011, 221:141-155.
    • (2011) Dev. Genes Evol. , vol.221 , pp. 141-155
    • Boyan, G.1    Loser, M.2    Williams, L.3    Liu, Y.4
  • 10
    • 84881233392 scopus 로고    scopus 로고
    • Postembryonic development of astrocyte-like glia of the central complex in the grasshopper Schistocerca gregaria
    • Boyan G., Williams L., Götz S. Postembryonic development of astrocyte-like glia of the central complex in the grasshopper Schistocerca gregaria. Cell Tissue Res. 2013, 351:361-372.
    • (2013) Cell Tissue Res. , vol.351 , pp. 361-372
    • Boyan, G.1    Williams, L.2    Götz, S.3
  • 11
    • 0027481073 scopus 로고
    • Glial cells in adult and developing prothoracic ganglion of the hawk moth Manduca sexta
    • Cantera R. Glial cells in adult and developing prothoracic ganglion of the hawk moth Manduca sexta. Cell Tissue Res. 1992, 272:93-108.
    • (1992) Cell Tissue Res. , vol.272 , pp. 93-108
    • Cantera, R.1
  • 12
    • 33747655165 scopus 로고    scopus 로고
    • Glial cells phagocytose neuronal debris during the metamorphosis of the central nervous system in Drosophila melanogaster
    • Cantera R., Technau G.M. Glial cells phagocytose neuronal debris during the metamorphosis of the central nervous system in Drosophila melanogaster. Dev. Genes Evol. 1996, 206:277-280.
    • (1996) Dev. Genes Evol. , vol.206 , pp. 277-280
    • Cantera, R.1    Technau, G.M.2
  • 14
    • 0142106383 scopus 로고    scopus 로고
    • Antagonistic relationship between Dpp and EGFR signaling in Drosophila head patterning
    • Chang T., Shy D., Hartenstein V. Antagonistic relationship between Dpp and EGFR signaling in Drosophila head patterning. Dev. Biol. 2003, 263:103-113.
    • (2003) Dev. Biol. , vol.263 , pp. 103-113
    • Chang, T.1    Shy, D.2    Hartenstein, V.3
  • 15
    • 84876668625 scopus 로고    scopus 로고
    • Emerging roles of astrocytes in neural circuit development
    • Clarke L.E., Barres B.A. Emerging roles of astrocytes in neural circuit development. Nat. Rev. Neurosci. 2013, 14:311-321.
    • (2013) Nat. Rev. Neurosci. , vol.14 , pp. 311-321
    • Clarke, L.E.1    Barres, B.A.2
  • 16
    • 79959952037 scopus 로고    scopus 로고
    • Physiologic and anatomic characterization of the brain surface glia barrier in Drosophila
    • DeSalvo M.K., Mayer N., Mayer F., Bainton R.J. Physiologic and anatomic characterization of the brain surface glia barrier in Drosophila. Glia 2011, 59:1322-1340.
    • (2011) Glia , vol.59 , pp. 1322-1340
    • DeSalvo, M.K.1    Mayer, N.2    Mayer, F.3    Bainton, R.J.4
  • 17
    • 65549154978 scopus 로고    scopus 로고
    • Ensheathing glia function as phagocytes in the adult Drosophila brain
    • Doherty J., Logan M.A., Taşdemir O.E., Freeman M.R. Ensheathing glia function as phagocytes in the adult Drosophila brain. J. Neurosci. 2009, 29:4768-4781.
    • (2009) J. Neurosci. , vol.29 , pp. 4768-4781
    • Doherty, J.1    Logan, M.A.2    Taşdemir, O.E.3    Freeman, M.R.4
  • 18
    • 0037658967 scopus 로고    scopus 로고
    • Role of DE-cadherin in neuroblast proliferation, neural morphogenesis, and axon tract formation in Drosophila larval brain development
    • Dumstrei K., Wang F., Hartenstein V. Role of DE-cadherin in neuroblast proliferation, neural morphogenesis, and axon tract formation in Drosophila larval brain development. J. Neurosci. 2003, 23:3325-3335.
    • (2003) J. Neurosci. , vol.23 , pp. 3325-3335
    • Dumstrei, K.1    Wang, F.2    Hartenstein, V.3
  • 19
    • 77950857749 scopus 로고    scopus 로고
    • The functional organisation of glia in the adult brain of Drosophila and other insects
    • Edwards T.N., Meinertzhagen I.A. The functional organisation of glia in the adult brain of Drosophila and other insects. Prog. Neurobiol. 2010, 90:471-497.
    • (2010) Prog. Neurobiol. , vol.90 , pp. 471-497
    • Edwards, T.N.1    Meinertzhagen, I.A.2
  • 20
    • 84859510169 scopus 로고    scopus 로고
    • Activation of glial FGFRs is essential in glial migration, proliferation, and survival and in glia-neuron signaling during olfactory system development
    • Gibson N.J., Tolbert L.P., Oland L.A. Activation of glial FGFRs is essential in glial migration, proliferation, and survival and in glia-neuron signaling during olfactory system development. PLoS ONE 2012, 7(4):e33828. 10.1371/journal.pone.0033828.
    • (2012) PLoS ONE , vol.7 , Issue.4 , pp. e33828
    • Gibson, N.J.1    Tolbert, L.P.2    Oland, L.A.3
  • 21
    • 3242711295 scopus 로고    scopus 로고
    • Prospero maintains the mitotic potential of glial precursors enabling them to respond to neurons
    • Griffiths R.L., Hidalgo A. Prospero maintains the mitotic potential of glial precursors enabling them to respond to neurons. EMBO J. 2004, 23:2440-2450.
    • (2004) EMBO J. , vol.23 , pp. 2440-2450
    • Griffiths, R.L.1    Hidalgo, A.2
  • 23
    • 84891669058 scopus 로고    scopus 로고
    • Astrocytes play a key role in Drosophila mushroom body axon pruning
    • Hakim Y., Yaniv S.P., Schuldiner O. Astrocytes play a key role in Drosophila mushroom body axon pruning. PLoS ONE 2014, 9(1):e86178. 10.1371/journal.pone.0086178.
    • (2014) PLoS ONE , vol.9 , Issue.1 , pp. e86178
    • Hakim, Y.1    Yaniv, S.P.2    Schuldiner, O.3
  • 24
    • 79959999314 scopus 로고    scopus 로고
    • Morphological diversity and development of glia in Drosophila
    • Hartenstein V. Morphological diversity and development of glia in Drosophila. Glia 2011, 59:1237-1252.
    • (2011) Glia , vol.59 , pp. 1237-1252
    • Hartenstein, V.1
  • 25
    • 0032495071 scopus 로고    scopus 로고
    • Embryonic development of the Drosophila brain. II. Pattern of glial cells
    • Hartenstein V., Nassif C., Lekven A. Embryonic development of the Drosophila brain. II. Pattern of glial cells. J. Comp. Neurol. 1998, 402:32-47.
    • (1998) J. Comp. Neurol. , vol.402 , pp. 32-47
    • Hartenstein, V.1    Nassif, C.2    Lekven, A.3
  • 26
    • 79959993856 scopus 로고    scopus 로고
    • The evolutionary origins of glia
    • Hartline D.K. The evolutionary origins of glia. Glia 2011, 59:1215-1236.
    • (2011) Glia , vol.59 , pp. 1215-1236
    • Hartline, D.K.1
  • 27
    • 0033980152 scopus 로고    scopus 로고
    • Glia dictate pioneer axon trajectories in the Drosophila embryonic CNS
    • Hidalgo A., Booth G.E. Glia dictate pioneer axon trajectories in the Drosophila embryonic CNS. Development 2000, 127:393-402.
    • (2000) Development , vol.127 , pp. 393-402
    • Hidalgo, A.1    Booth, G.E.2
  • 28
    • 0028803421 scopus 로고
    • Targeted ablation of glia disrupts axon tract formation in the Drosophila CNS
    • Hidalgo A., Urban J., Brand A.H. Targeted ablation of glia disrupts axon tract formation in the Drosophila CNS. Development 1995, 121:3703-3712.
    • (1995) Development , vol.121 , pp. 3703-3712
    • Hidalgo, A.1    Urban, J.2    Brand, A.H.3
  • 29
    • 0029087476 scopus 로고
    • Glial cells missing: a binary switch between neuronal and glial determination in Drosophila
    • Hosoya T., Takizawa K., Nitta K., Hotta Y. Glial cells missing: a binary switch between neuronal and glial determination in Drosophila. Cell 1995, 82:1025-1036.
    • (1995) Cell , vol.82 , pp. 1025-1036
    • Hosoya, T.1    Takizawa, K.2    Nitta, K.3    Hotta, Y.4
  • 30
    • 0022547374 scopus 로고
    • Glial cells of an insect ganglion
    • Hoyle G. Glial cells of an insect ganglion. J. Comp. Neurol. 1986, 246:85-103.
    • (1986) J. Comp. Neurol. , vol.246 , pp. 85-103
    • Hoyle, G.1
  • 31
    • 0022485116 scopus 로고
    • Functional morphology of insect neuronal cell-surface/glial contacts: the trophospongium
    • Hoyle G., Williams M., Phillips C. Functional morphology of insect neuronal cell-surface/glial contacts: the trophospongium. J. Comp. Neurol. 1986, 246:113-128.
    • (1986) J. Comp. Neurol. , vol.246 , pp. 113-128
    • Hoyle, G.1    Williams, M.2    Phillips, C.3
  • 32
    • 0026570363 scopus 로고
    • Proliferation pattern of postembryonic neuroblasts in the brain of Drosophila melanogaster
    • Ito K., Hotta Y. Proliferation pattern of postembryonic neuroblasts in the brain of Drosophila melanogaster. Dev. Biol. 1992, 149:134-148.
    • (1992) Dev. Biol. , vol.149 , pp. 134-148
    • Ito, K.1    Hotta, Y.2
  • 33
    • 0029011452 scopus 로고
    • Distribution, classification, and development of Drosophila glial cells in the late embryonic and early larval ventral nerve cord
    • Ito K., Urban J., Technau G.M. Distribution, classification, and development of Drosophila glial cells in the late embryonic and early larval ventral nerve cord. Roux's Arch. Dev. Biol. 1995, 204:284-307.
    • (1995) Roux's Arch. Dev. Biol. , vol.204 , pp. 284-307
    • Ito, K.1    Urban, J.2    Technau, G.M.3
  • 34
    • 74849118490 scopus 로고    scopus 로고
    • Postembryonic development of transit amplifying neuroblast lineages in the Drosophila brain
    • Izergina N., Balmer J., Bello B., Reichert H. Postembryonic development of transit amplifying neuroblast lineages in the Drosophila brain. Neural. Dev. 2009, 4:44.
    • (2009) Neural. Dev. , vol.4 , pp. 44
    • Izergina, N.1    Balmer, J.2    Bello, B.3    Reichert, H.4
  • 35
    • 64549084482 scopus 로고    scopus 로고
    • Glial cell regulation of neurotransmission and behavior in Drosophila
    • Jackson F.R., Haydon P.G. Glial cell regulation of neurotransmission and behavior in Drosophila. Neuron Glia Biol. 2008, 4:11-17.
    • (2008) Neuron Glia Biol. , vol.4 , pp. 11-17
    • Jackson, F.R.1    Haydon, P.G.2
  • 36
    • 0024414044 scopus 로고
    • Embryonic development of axon pathways in the Drosophila CNS. I. A glial scaffold appears before the first growth cones
    • Jacobs J.R., Goodman C.S. Embryonic development of axon pathways in the Drosophila CNS. I. A glial scaffold appears before the first growth cones. J. Neurosci. 1989, 9:2402-2411.
    • (1989) J. Neurosci. , vol.9 , pp. 2402-2411
    • Jacobs, J.R.1    Goodman, C.S.2
  • 37
    • 0024675107 scopus 로고
    • Lineage, migration, and morphogenesis of longitudinal glia in the Drosophila CNS as revealed by a molecular lineage marker
    • Jacobs J.R., Hiromi Y., Patel N.H., Goodman C.S. Lineage, migration, and morphogenesis of longitudinal glia in the Drosophila CNS as revealed by a molecular lineage marker. Neuron 1989, 2:1625-1631.
    • (1989) Neuron , vol.2 , pp. 1625-1631
    • Jacobs, J.R.1    Hiromi, Y.2    Patel, N.H.3    Goodman, C.S.4
  • 38
    • 0029084787 scopus 로고
    • Glial cells missing: a genetic switch that controls glial versus neuronal fate
    • Jones B.W., Fetter R.D., Tear G., Goodman C.S. Glial cells missing: a genetic switch that controls glial versus neuronal fate. Cell 1995, 82:1013-1023.
    • (1995) Cell , vol.82 , pp. 1013-1023
    • Jones, B.W.1    Fetter, R.D.2    Tear, G.3    Goodman, C.S.4
  • 39
    • 70350152735 scopus 로고    scopus 로고
    • Lineage-specific cell death in postembryonic brain development of Drosophila
    • Kumar A., Bello B., Reichert H. Lineage-specific cell death in postembryonic brain development of Drosophila. Development 2009, 136:3433-3442.
    • (2009) Development , vol.136 , pp. 3433-3442
    • Kumar, A.1    Bello, B.2    Reichert, H.3
  • 40
    • 70349832430 scopus 로고    scopus 로고
    • Arborization pattern of engrailed-positive neural lineages reveal neuromere boundaries in the Drosophila brain neuropil
    • Kumar A., Fung S., Lichtneckert R., Reichert H., Hartenstein V. Arborization pattern of engrailed-positive neural lineages reveal neuromere boundaries in the Drosophila brain neuropil. J. Comp. Neurol. 2009, 517:87-104.
    • (2009) J. Comp. Neurol. , vol.517 , pp. 87-104
    • Kumar, A.1    Fung, S.2    Lichtneckert, R.3    Reichert, H.4    Hartenstein, V.5
  • 41
    • 84879549934 scopus 로고    scopus 로고
    • Glia associated with central complex lineages in the embryonic brain of the grasshopper Schistocerca gregaria
    • Liu Y., Boyan G. Glia associated with central complex lineages in the embryonic brain of the grasshopper Schistocerca gregaria. Dev. Genes Evol. 2013, 223:213-223.
    • (2013) Dev. Genes Evol. , vol.223 , pp. 213-223
    • Liu, Y.1    Boyan, G.2
  • 42
    • 84921755691 scopus 로고    scopus 로고
    • Activity-dependent regulation of astrocyte GAT levels during synaptogenesis
    • Muthukumar A.K., Stork T., Freeman M.R. Activity-dependent regulation of astrocyte GAT levels during synaptogenesis. Nat. Neurosci. 2014, 17:1340-1350.
    • (2014) Nat. Neurosci. , vol.17 , pp. 1340-1350
    • Muthukumar, A.K.1    Stork, T.2    Freeman, M.R.3
  • 43
    • 48249133339 scopus 로고    scopus 로고
    • Glial investment of the adult and developing antennal lobe of Drosophila
    • Oland L.A., Biebelhausen J.P., Tolbert L.P. Glial investment of the adult and developing antennal lobe of Drosophila. J. Comp. Neurol. 2008, 509:526-550.
    • (2008) J. Comp. Neurol. , vol.509 , pp. 526-550
    • Oland, L.A.1    Biebelhausen, J.P.2    Tolbert, L.P.3
  • 44
    • 77949408977 scopus 로고    scopus 로고
    • Localization of a GABA transporter to glial cells in the developing and adult olfactory pathway of the moth Manduca sexta
    • Oland L.A., Gibson N.J., Tolbert L.P. Localization of a GABA transporter to glial cells in the developing and adult olfactory pathway of the moth Manduca sexta. J. Comp. Neurol. 2010, 518:815-838.
    • (2010) J. Comp. Neurol. , vol.518 , pp. 815-838
    • Oland, L.A.1    Gibson, N.J.2    Tolbert, L.P.3
  • 45
    • 0032824905 scopus 로고    scopus 로고
    • Glial cells in the developing and adult olfactory lobe of the moth Manduca sexta
    • Oland L.A., Marrero H.G., Burger I. Glial cells in the developing and adult olfactory lobe of the moth Manduca sexta. Cell Tissue Res. 1999, 297:527-545.
    • (1999) Cell Tissue Res. , vol.297 , pp. 527-545
    • Oland, L.A.1    Marrero, H.G.2    Burger, I.3
  • 46
    • 33745003460 scopus 로고    scopus 로고
    • Neural lineages of the Drosophila brain: a three-dimensional digital atlas of the pattern of lineage location and projection at the late larval stage
    • Pereanu W., Hartenstein V. Neural lineages of the Drosophila brain: a three-dimensional digital atlas of the pattern of lineage location and projection at the late larval stage. J. Neurosci. 2006, 26:5534-5553.
    • (2006) J. Neurosci. , vol.26 , pp. 5534-5553
    • Pereanu, W.1    Hartenstein, V.2
  • 48
    • 20444468903 scopus 로고    scopus 로고
    • Morphogenesis and proliferation of the larval brain glia in Drosophila
    • Pereanu W., Shy D., Hartenstein V. Morphogenesis and proliferation of the larval brain glia in Drosophila. Dev. Biol. 2005, 283:191-203.
    • (2005) Dev. Biol. , vol.283 , pp. 191-203
    • Pereanu, W.1    Shy, D.2    Hartenstein, V.3
  • 49
    • 0028020316 scopus 로고
    • BrdU incorporation reveals DNA replication in non dividing glial cells in the larval abdominal CNS of Drosophila
    • Prokop A., Technau G.M. BrdU incorporation reveals DNA replication in non dividing glial cells in the larval abdominal CNS of Drosophila. Roux's Arch. Dev. Biol. 1994, 204:54-61.
    • (1994) Roux's Arch. Dev. Biol. , vol.204 , pp. 54-61
    • Prokop, A.1    Technau, G.M.2
  • 50
    • 80755184833 scopus 로고    scopus 로고
    • Regulation of Drosophila glial cell proliferation by Merlin-Hippo signaling
    • Reddy B.V., Irvine K.D. Regulation of Drosophila glial cell proliferation by Merlin-Hippo signaling. Development 2011, 138:5201-5212.
    • (2011) Development , vol.138 , pp. 5201-5212
    • Reddy, B.V.1    Irvine, K.D.2
  • 52
    • 0031572234 scopus 로고    scopus 로고
    • The embryonic central nervous system lineages of Drosophila melanogaster. II. Neuroblast lineages derived from the dorsal part of the neuroectoderm
    • Schmidt H., Rickert C., Bossing T., Vef O., Urban J., Technau G.M. The embryonic central nervous system lineages of Drosophila melanogaster. II. Neuroblast lineages derived from the dorsal part of the neuroectoderm. Dev. Biol. 1997, 189:186-204.
    • (1997) Dev. Biol. , vol.189 , pp. 186-204
    • Schmidt, H.1    Rickert, C.2    Bossing, T.3    Vef, O.4    Urban, J.5    Technau, G.M.6
  • 53
    • 77950522925 scopus 로고    scopus 로고
    • Dynamics of glutamatergic signaling in the mushroom body of young adult Drosophila
    • Sinakevitch I., Grau Y., Strausfeld N.J., Birman S. Dynamics of glutamatergic signaling in the mushroom body of young adult Drosophila. Neural Dev. 2010, 5:10.
    • (2010) Neural Dev. , vol.5 , pp. 10
    • Sinakevitch, I.1    Grau, Y.2    Strausfeld, N.J.3    Birman, S.4
  • 54
    • 0344549453 scopus 로고    scopus 로고
    • Metamorphosis of the central nervous system of Drosophila melanogaster Meigen (Diptera: Drosophilidae) during pupation
    • Singh K., Singh R.N. Metamorphosis of the central nervous system of Drosophila melanogaster Meigen (Diptera: Drosophilidae) during pupation. J. Biosci. 1999, 24:345-360.
    • (1999) J. Biosci. , vol.24 , pp. 345-360
    • Singh, K.1    Singh, R.N.2
  • 55
    • 70349296750 scopus 로고    scopus 로고
    • Drosophila cortex and neuropile glia influence secondary axon tract growth, pathfinding, and fasciculation in the developing larval brain
    • Spindler S.R., Ortiz I., Fung S., Takashima S., Hartenstein V. Drosophila cortex and neuropile glia influence secondary axon tract growth, pathfinding, and fasciculation in the developing larval brain. Dev. Biol. 2009, 334:335-368.
    • (2009) Dev. Biol. , vol.334 , pp. 335-368
    • Spindler, S.R.1    Ortiz, I.2    Fung, S.3    Takashima, S.4    Hartenstein, V.5
  • 56
    • 78049334011 scopus 로고    scopus 로고
    • Drosophila glial glutamate transporter Eaat1 is regulated by fringe-mediated notch signaling and is essential for larval locomotion
    • Stacey S.M., Muraro N.I., Peco E., Labbé A., Thomas G.B., Baines R.A., van Meyel D.J. Drosophila glial glutamate transporter Eaat1 is regulated by fringe-mediated notch signaling and is essential for larval locomotion. J. Neurosci. 2010, 30:14446-14457.
    • (2010) J. Neurosci. , vol.30 , pp. 14446-14457
    • Stacey, S.M.1    Muraro, N.I.2    Peco, E.3    Labbé, A.4    Thomas, G.B.5    Baines, R.A.6    van Meyel, D.J.7
  • 58
    • 84904354254 scopus 로고    scopus 로고
    • Neuron-glia interactions through the Heartless FGF receptor signaling pathway mediate morphogenesis of Drosophila astrocytes
    • Stork T., Sheehan A., Tasdemir-Yilmaz O.E., Freeman M.R. Neuron-glia interactions through the Heartless FGF receptor signaling pathway mediate morphogenesis of Drosophila astrocytes. Neuron 2014, 83:388-403.
    • (2014) Neuron , vol.83 , pp. 388-403
    • Stork, T.1    Sheehan, A.2    Tasdemir-Yilmaz, O.E.3    Freeman, M.R.4
  • 59
    • 84891719841 scopus 로고    scopus 로고
    • Astrocytes engage unique molecular programs to engulf pruned neuronal debris from distinct subsets of neurons
    • Tasdemir-Yilmaz O.E., Freeman M.R. Astrocytes engage unique molecular programs to engulf pruned neuronal debris from distinct subsets of neurons. Genes Dev. 2014, 28:20-33.
    • (2014) Genes Dev. , vol.28 , pp. 20-33
    • Tasdemir-Yilmaz, O.E.1    Freeman, M.R.2
  • 60
    • 33847415462 scopus 로고    scopus 로고
    • The glycosyltransferase Fringe promotes Delta-Notch signaling between neurons and glia, and is required for subtype-specific glial gene expression
    • Thomas G.B., van Meyel D.J. The glycosyltransferase Fringe promotes Delta-Notch signaling between neurons and glia, and is required for subtype-specific glial gene expression. Development 2007, 134:591-600.
    • (2007) Development , vol.134 , pp. 591-600
    • Thomas, G.B.1    van Meyel, D.J.2
  • 61
    • 84855303330 scopus 로고    scopus 로고
    • Polyploidization of glia in neural development links tissue growth to blood-brain barrier integrity
    • Unhavaithaya Y., Orr-Weaver T.L. Polyploidization of glia in neural development links tissue growth to blood-brain barrier integrity. Genes Dev. 2012, 26:31-36.
    • (2012) Genes Dev. , vol.26 , pp. 31-36
    • Unhavaithaya, Y.1    Orr-Weaver, T.L.2
  • 62
    • 0042536462 scopus 로고    scopus 로고
    • Molecular markers for identified neuroblasts in the developing brain of Drosophila
    • Urbach R., Technau G.M. Molecular markers for identified neuroblasts in the developing brain of Drosophila. Development 2003, 130:3621-3637.
    • (2003) Development , vol.130 , pp. 3621-3637
    • Urbach, R.1    Technau, G.M.2
  • 63
    • 79960559412 scopus 로고    scopus 로고
    • Multipotent neural stem cells generate glial cells of the central complex through transit amplifying intermediate progenitors in Drosophila brain development
    • Viktorin G., Riebli N., Popkova A., Giangrande A., Reichert H. Multipotent neural stem cells generate glial cells of the central complex through transit amplifying intermediate progenitors in Drosophila brain development. Dev. Biol. 2011, 356:553-565.
    • (2011) Dev. Biol. , vol.356 , pp. 553-565
    • Viktorin, G.1    Riebli, N.2    Popkova, A.3    Giangrande, A.4    Reichert, H.5
  • 64
    • 84878861831 scopus 로고    scopus 로고
    • A multipotent transit-amplifying neuroblast lineage in the central brain gives rise to optic lobe glial cells in Drosophila
    • Viktorin G., Riebli N., Reichert H. A multipotent transit-amplifying neuroblast lineage in the central brain gives rise to optic lobe glial cells in Drosophila. Dev. Biol. 2013, 379:182-194.
    • (2013) Dev. Biol. , vol.379 , pp. 182-194
    • Viktorin, G.1    Riebli, N.2    Reichert, H.3
  • 65
    • 0029671191 scopus 로고    scopus 로고
    • Glide directs glial fate commitment and cell fate switch between neurones and glia
    • Vincent S., Vonesch J.L., Giangrande A. Glide directs glial fate commitment and cell fate switch between neurones and glia. Development 1996, 122:131-139.
    • (1996) Development , vol.122 , pp. 131-139
    • Vincent, S.1    Vonesch, J.L.2    Giangrande, A.3
  • 66
    • 0028281992 scopus 로고
    • Repo encodes a glial-specific homeo domain protein required in the Drosophila nervous system
    • Xiong W.C., Okano H., Patel N.H., Blendy J.A., Montell C. repo encodes a glial-specific homeo domain protein required in the Drosophila nervous system. Genes Dev. 1994, 8:981-994.
    • (1994) Genes Dev. , vol.8 , pp. 981-994
    • Xiong, W.C.1    Okano, H.2    Patel, N.H.3    Blendy, J.A.4    Montell, C.5
  • 68
    • 0036336652 scopus 로고    scopus 로고
    • Subdivision of the Drosophila wing imaginal disc by EGFR-mediated signaling
    • Zecca M., Struhl G. Subdivision of the Drosophila wing imaginal disc by EGFR-mediated signaling. Development 2002, 129:1357-1368.
    • (2002) Development , vol.129 , pp. 1357-1368
    • Zecca, M.1    Struhl, G.2


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.