Cargando…

A molecular atlas of the developing ectoderm defines neural, neural crest, placode, and nonneural progenitor identity in vertebrates

During vertebrate neurulation, the embryonic ectoderm is patterned into lineage progenitors for neural plate, neural crest, placodes and epidermis. Here, we use Xenopus laevis embryos to analyze the spatial and temporal transcriptome of distinct ectodermal domains in the course of neurulation, durin...

Descripción completa

Detalles Bibliográficos
Autores principales: Plouhinec, Jean-Louis, Medina-Ruiz, Sofía, Borday, Caroline, Bernard, Elsa, Vert, Jean-Philippe, Eisen, Michael B., Harland, Richard M., Monsoro-Burq, Anne H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5663519/
https://www.ncbi.nlm.nih.gov/pubmed/29049289
http://dx.doi.org/10.1371/journal.pbio.2004045
_version_ 1783274823078641664
author Plouhinec, Jean-Louis
Medina-Ruiz, Sofía
Borday, Caroline
Bernard, Elsa
Vert, Jean-Philippe
Eisen, Michael B.
Harland, Richard M.
Monsoro-Burq, Anne H.
author_facet Plouhinec, Jean-Louis
Medina-Ruiz, Sofía
Borday, Caroline
Bernard, Elsa
Vert, Jean-Philippe
Eisen, Michael B.
Harland, Richard M.
Monsoro-Burq, Anne H.
author_sort Plouhinec, Jean-Louis
collection PubMed
description During vertebrate neurulation, the embryonic ectoderm is patterned into lineage progenitors for neural plate, neural crest, placodes and epidermis. Here, we use Xenopus laevis embryos to analyze the spatial and temporal transcriptome of distinct ectodermal domains in the course of neurulation, during the establishment of cell lineages. In order to define the transcriptome of small groups of cells from a single germ layer and to retain spatial information, dorsal and ventral ectoderm was subdivided along the anterior-posterior and medial-lateral axes by microdissections. Principal component analysis on the transcriptomes of these ectoderm fragments primarily identifies embryonic axes and temporal dynamics. This provides a genetic code to define positional information of any ectoderm sample along the anterior-posterior and dorsal-ventral axes directly from its transcriptome. In parallel, we use nonnegative matrix factorization to predict enhanced gene expression maps onto early and mid-neurula embryos, and specific signatures for each ectoderm area. The clustering of spatial and temporal datasets allowed detection of multiple biologically relevant groups (e.g., Wnt signaling, neural crest development, sensory placode specification, ciliogenesis, germ layer specification). We provide an interactive network interface, EctoMap, for exploring synexpression relationships among genes expressed in the neurula, and suggest several strategies to use this comprehensive dataset to address questions in developmental biology as well as stem cell or cancer research.
format Online
Article
Text
id pubmed-5663519
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-56635192017-11-08 A molecular atlas of the developing ectoderm defines neural, neural crest, placode, and nonneural progenitor identity in vertebrates Plouhinec, Jean-Louis Medina-Ruiz, Sofía Borday, Caroline Bernard, Elsa Vert, Jean-Philippe Eisen, Michael B. Harland, Richard M. Monsoro-Burq, Anne H. PLoS Biol Methods and Resources During vertebrate neurulation, the embryonic ectoderm is patterned into lineage progenitors for neural plate, neural crest, placodes and epidermis. Here, we use Xenopus laevis embryos to analyze the spatial and temporal transcriptome of distinct ectodermal domains in the course of neurulation, during the establishment of cell lineages. In order to define the transcriptome of small groups of cells from a single germ layer and to retain spatial information, dorsal and ventral ectoderm was subdivided along the anterior-posterior and medial-lateral axes by microdissections. Principal component analysis on the transcriptomes of these ectoderm fragments primarily identifies embryonic axes and temporal dynamics. This provides a genetic code to define positional information of any ectoderm sample along the anterior-posterior and dorsal-ventral axes directly from its transcriptome. In parallel, we use nonnegative matrix factorization to predict enhanced gene expression maps onto early and mid-neurula embryos, and specific signatures for each ectoderm area. The clustering of spatial and temporal datasets allowed detection of multiple biologically relevant groups (e.g., Wnt signaling, neural crest development, sensory placode specification, ciliogenesis, germ layer specification). We provide an interactive network interface, EctoMap, for exploring synexpression relationships among genes expressed in the neurula, and suggest several strategies to use this comprehensive dataset to address questions in developmental biology as well as stem cell or cancer research. Public Library of Science 2017-10-19 /pmc/articles/PMC5663519/ /pubmed/29049289 http://dx.doi.org/10.1371/journal.pbio.2004045 Text en © 2017 Plouhinec et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Methods and Resources
Plouhinec, Jean-Louis
Medina-Ruiz, Sofía
Borday, Caroline
Bernard, Elsa
Vert, Jean-Philippe
Eisen, Michael B.
Harland, Richard M.
Monsoro-Burq, Anne H.
A molecular atlas of the developing ectoderm defines neural, neural crest, placode, and nonneural progenitor identity in vertebrates
title A molecular atlas of the developing ectoderm defines neural, neural crest, placode, and nonneural progenitor identity in vertebrates
title_full A molecular atlas of the developing ectoderm defines neural, neural crest, placode, and nonneural progenitor identity in vertebrates
title_fullStr A molecular atlas of the developing ectoderm defines neural, neural crest, placode, and nonneural progenitor identity in vertebrates
title_full_unstemmed A molecular atlas of the developing ectoderm defines neural, neural crest, placode, and nonneural progenitor identity in vertebrates
title_short A molecular atlas of the developing ectoderm defines neural, neural crest, placode, and nonneural progenitor identity in vertebrates
title_sort molecular atlas of the developing ectoderm defines neural, neural crest, placode, and nonneural progenitor identity in vertebrates
topic Methods and Resources
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5663519/
https://www.ncbi.nlm.nih.gov/pubmed/29049289
http://dx.doi.org/10.1371/journal.pbio.2004045
work_keys_str_mv AT plouhinecjeanlouis amolecularatlasofthedevelopingectodermdefinesneuralneuralcrestplacodeandnonneuralprogenitoridentityinvertebrates
AT medinaruizsofia amolecularatlasofthedevelopingectodermdefinesneuralneuralcrestplacodeandnonneuralprogenitoridentityinvertebrates
AT bordaycaroline amolecularatlasofthedevelopingectodermdefinesneuralneuralcrestplacodeandnonneuralprogenitoridentityinvertebrates
AT bernardelsa amolecularatlasofthedevelopingectodermdefinesneuralneuralcrestplacodeandnonneuralprogenitoridentityinvertebrates
AT vertjeanphilippe amolecularatlasofthedevelopingectodermdefinesneuralneuralcrestplacodeandnonneuralprogenitoridentityinvertebrates
AT eisenmichaelb amolecularatlasofthedevelopingectodermdefinesneuralneuralcrestplacodeandnonneuralprogenitoridentityinvertebrates
AT harlandrichardm amolecularatlasofthedevelopingectodermdefinesneuralneuralcrestplacodeandnonneuralprogenitoridentityinvertebrates
AT monsoroburqanneh amolecularatlasofthedevelopingectodermdefinesneuralneuralcrestplacodeandnonneuralprogenitoridentityinvertebrates
AT plouhinecjeanlouis molecularatlasofthedevelopingectodermdefinesneuralneuralcrestplacodeandnonneuralprogenitoridentityinvertebrates
AT medinaruizsofia molecularatlasofthedevelopingectodermdefinesneuralneuralcrestplacodeandnonneuralprogenitoridentityinvertebrates
AT bordaycaroline molecularatlasofthedevelopingectodermdefinesneuralneuralcrestplacodeandnonneuralprogenitoridentityinvertebrates
AT bernardelsa molecularatlasofthedevelopingectodermdefinesneuralneuralcrestplacodeandnonneuralprogenitoridentityinvertebrates
AT vertjeanphilippe molecularatlasofthedevelopingectodermdefinesneuralneuralcrestplacodeandnonneuralprogenitoridentityinvertebrates
AT eisenmichaelb molecularatlasofthedevelopingectodermdefinesneuralneuralcrestplacodeandnonneuralprogenitoridentityinvertebrates
AT harlandrichardm molecularatlasofthedevelopingectodermdefinesneuralneuralcrestplacodeandnonneuralprogenitoridentityinvertebrates
AT monsoroburqanneh molecularatlasofthedevelopingectodermdefinesneuralneuralcrestplacodeandnonneuralprogenitoridentityinvertebrates