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Publication : Molecular regionalization of the developing amphioxus neural tube challenges major partitions of the vertebrate brain.

First Author  Albuixech-Crespo B Year  2017
Journal  PLoS Biol Volume  15
Issue  4 Pages  e2001573
PubMed ID  28422959 Mgi Jnum  J:243846
Mgi Id  MGI:5912625 Doi  10.1371/journal.pbio.2001573
Citation  Albuixech-Crespo B, et al. (2017) Molecular regionalization of the developing amphioxus neural tube challenges major partitions of the vertebrate brain. PLoS Biol 15(4):e2001573
abstractText  All vertebrate brains develop following a common Bauplan defined by anteroposterior (AP) and dorsoventral (DV) subdivisions, characterized by largely conserved differential expression of gene markers. However, it is still unclear how this Bauplan originated during evolution. We studied the relative expression of 48 genes with key roles in vertebrate neural patterning in a representative amphioxus embryonic stage. Unlike nonchordates, amphioxus develops its central nervous system (CNS) from a neural plate that is homologous to that of vertebrates, allowing direct topological comparisons. The resulting genoarchitectonic model revealed that the amphioxus incipient neural tube is unexpectedly complex, consisting of several AP and DV molecular partitions. Strikingly, comparison with vertebrates indicates that the vertebrate thalamus, pretectum, and midbrain domains jointly correspond to a single amphioxus region, which we termed Di-Mesencephalic primordium (DiMes). This suggests that these domains have a common developmental and evolutionary origin, as supported by functional experiments manipulating secondary organizers in zebrafish and mice.
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