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Journal article

Dbx1-derived pyramidal neurons are generated locally in the developing murine neocortex

Abstract:
The neocortex (NCx) generates at the dorsal region of the pallium in the forebrain. Several adjacent structures also contribute with neurons to NCx. Ventral pallium (VP) is considered to generate several populations of neurons that arrive through tangential migration to the NCx. Amongst them are the Cajal-Retzius cells and some transient pyramidal neurons. However, the specific site and timing of generation, trajectory of migration and actual contribution to the pyramidal population remains elusive. Here, we investigate the spatio-temporal origin of neuronal populations from VP in an in vivo model, using a transposase mediated in utero electroporation method in embryonic mouse. From E11 to E14 cells born at the lateral corner of the neocortical neuroepithelium including the VP migrated ventro-laterally to settle all areas of the ventral telencephalon. Specifically, neurons migrated into amygdala (Ag), olfactory cortices, and claustrum (Cl). However, we found no evidence for any neurons migrating tangentially toward the NCx, regardless the antero-posterior level and developmental time of the electroporation. Our results challenge the described ventral-pallial origin of the transient pyramidal neuron population. In order to find the exact origin of cortical neurons that were previously Dbx1-fate mapped we used the promoter region of the murine Dbx1 locus to selectively target Dbx1-expressing progenitors and label their lineage. We found these progenitors in low numbers in all pallial areas, and not only in the ventral pallial ventricular zone. Our findings on the local cortical origin of the Dbx1-derived pyramidal neurons reconcile the observation of Dbx1-derived neurons in the cortex without evidence of dorsal tangential migration from VP and provide a new framework for the origin of the transient Dbx1-derived pyramidal neuron population. We conclude that these neurons are born locally within the dorsal pallial neuroepithelium.
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.3389/fnins.2018.00792

Authors


More by this author
Role:
Author
ORCID:
0000-0001-6849-7496
More by this author
Institution:
University of Oxford
Division:
MSD
Department:
Physiology Anatomy & Genetics
Role:
Author


Publisher:
Frontiers Media
Journal:
Frontiers in Neuroscience More from this journal
Volume:
12
Issue:
October 2018
Article number:
792
Publication date:
2018-10-31
Acceptance date:
2018-10-12
DOI:
EISSN:
1662-453X
ISSN:
1662-4548
Pmid:
30429769


Language:
English
Keywords:
Pubs id:
pubs:943720
UUID:
uuid:6246d901-4785-46d4-ae5d-a795f0411879
Local pid:
pubs:943720
Source identifiers:
943720
Deposit date:
2019-03-08

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