Absence of Tangentially Migrating Glutamatergic Neurons in the Developing Avian Brain
Author(s) -
Fernando GarcíaMoreno,
Edward Anderton,
Marta Jankowska,
Jo Begbie,
Juan Manuel Encinas,
Manuel Irimia,
Zoltán Molnár
Publication year - 2018
Publication title -
cell reports
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.264
H-Index - 154
eISSN - 2639-1856
pISSN - 2211-1247
DOI - 10.1016/j.celrep.2017.12.032
Subject(s) - glutamatergic , neocortex , biology , neuroscience , neurogenesis , subplate , amniote , cerebrum , neuronal migration , soma , anatomy , cerebral cortex , vertebrate , central nervous system , glutamate receptor , biochemistry , receptor , gene
Several neuronal populations orchestrate neocortical development during mammalian embryogenesis. These include the glutamatergic subplate-, Cajal-Retzius-, and ventral pallium-derived populations, which coordinate cortical wiring, migration, and proliferation, respectively. These transient populations are primarily derived from other non-cortical pallial sources that migrate to the dorsal pallium. Are these migrations to the dorsal pallium conserved in amniotes or are they specific to mammals? Using in ovo electroporation, we traced the entire lineage of defined chick telencephalic progenitors. We found that several pallial sources that produce tangential migratory neurons in mammals only produced radially migrating neurons in the avian brain. Moreover, ectopic expression of VP-specific mammalian Dbx1 in avian brains altered neurogenesis but did not convert the migration into a mammal-like tangential movement. Together, these data indicate that tangential cellular contributions of glutamatergic neurons originate from outside the dorsal pallium and that pallial Dbx1 expression may underlie the generation of the mammalian neocortex during evolution.
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