TitleNodal and FGF coordinate ascidian neural tube morphogenesis.
Publication TypeJournal Article
Year of Publication2016
AuthorsNavarrete, IA, Levine, M
JournalDevelopment
Volume143
Issue24
Pagination4665-4675
Date Published2016 Dec 15
ISSN1477-9129
KeywordsAnimals, Ciona intestinalis, Fibroblast Growth Factors, Gastrulation, Gene Expression Regulation, Developmental, Left-Right Determination Factors, MAP Kinase Signaling System, Morphogenesis, Neural Tube, Neurulation, Nodal Protein
Abstract

Formation of the vertebrate neural tube represents one of the premier examples of morphogenesis in animal development. Here, we investigate this process in the simple chordate Ciona intestinalis Previous studies have implicated Nodal and FGF signals in the specification of lateral and ventral neural progenitors. We show that these signals also control the detailed cellular behaviors underlying morphogenesis of the neural tube. Live-imaging experiments show that FGF controls the intercalary movements of ventral neural progenitors, whereas Nodal is essential for the characteristic stacking behavior of lateral cells. Ectopic activation of FGF signaling is sufficient to induce intercalary behaviors in cells that have not received Nodal. In the absence of FGF and Nodal, neural progenitors exhibit a default behavior of sequential cell divisions, and fail to undergo the intercalary and stacking behaviors essential for normal morphogenesis. Thus, cell specification events occurring prior to completion of gastrulation coordinate the morphogenetic movements underlying the organization of the neural tube.

DOI10.1242/dev.144733
Alternate JournalDevelopment
PubMed ID27827820
PubMed Central IDPMC5201037
Grant ListR01 NS076542 / NS / NINDS NIH HHS / United States