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Evolution of Axis Specification Mechanisms in Jawed Vertebrates: Insights from a Chondrichthyan

The genetic mechanisms that control the establishment of early polarities and their link with embryonic axis specification and patterning seem to substantially diverge across vertebrates. In amphibians and teleosts, the establishment of an early dorso-ventral polarity determines both the site of axi...

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Autores principales: Coolen, Marion, Sauka-Spengler, Tatjana, Nicolle, Delphine, Le-Mentec, Chantal, Lallemand, Yvan, Silva, Corinne Da, Plouhinec, Jean-Louis, Robert, Benoît, Wincker, Patrick, Shi, De-Li, Mazan, Sylvie
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1847705/
https://www.ncbi.nlm.nih.gov/pubmed/17440610
http://dx.doi.org/10.1371/journal.pone.0000374
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author Coolen, Marion
Sauka-Spengler, Tatjana
Nicolle, Delphine
Le-Mentec, Chantal
Lallemand, Yvan
Silva, Corinne Da
Plouhinec, Jean-Louis
Robert, Benoît
Wincker, Patrick
Shi, De-Li
Mazan, Sylvie
author_facet Coolen, Marion
Sauka-Spengler, Tatjana
Nicolle, Delphine
Le-Mentec, Chantal
Lallemand, Yvan
Silva, Corinne Da
Plouhinec, Jean-Louis
Robert, Benoît
Wincker, Patrick
Shi, De-Li
Mazan, Sylvie
author_sort Coolen, Marion
collection PubMed
description The genetic mechanisms that control the establishment of early polarities and their link with embryonic axis specification and patterning seem to substantially diverge across vertebrates. In amphibians and teleosts, the establishment of an early dorso-ventral polarity determines both the site of axis formation and its rostro-caudal orientation. In contrast, amniotes retain a considerable plasticity for their site of axis formation until blastula stages and rely on signals secreted by extraembryonic tissues, which have no clear equivalents in the former, for the establishment of their rostro-caudal pattern. The rationale for these differences remains unknown. Through detailed expression analyses of key development genes in a chondrichthyan, the dogfish Scyliorhinus canicula, we have reconstructed the ancestral pattern of axis specification in jawed vertebrates. We show that the dogfish displays compelling similarities with amniotes at blastula and early gastrula stages, including the presence of clear homologs of the hypoblast and extraembryonic ectoderm. In the ancestral state, these territories are specified at opposite poles of an early axis of bilateral symmetry, homologous to the dorso-ventral axis of amphibians or teleosts, and aligned with the later forming embryonic axis, from head to tail. Comparisons with amniotes suggest that a dorsal expansion of extraembryonic ectoderm, resulting in an apparently radial symmetry at late blastula stages, has taken place in their lineage. The synthesis of these results with those of functional analyses in model organisms supports an evolutionary link between the dorso-ventral polarity of amphibians and teleosts and the embryonic-extraembryonic organisation of amniotes. It leads to a general model of axis specification in gnathostomes, which provides a comparative framework for a reassessment of conservations both among vertebrates and with more distant metazoans.
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spelling pubmed-18477052007-04-18 Evolution of Axis Specification Mechanisms in Jawed Vertebrates: Insights from a Chondrichthyan Coolen, Marion Sauka-Spengler, Tatjana Nicolle, Delphine Le-Mentec, Chantal Lallemand, Yvan Silva, Corinne Da Plouhinec, Jean-Louis Robert, Benoît Wincker, Patrick Shi, De-Li Mazan, Sylvie PLoS One Research Article The genetic mechanisms that control the establishment of early polarities and their link with embryonic axis specification and patterning seem to substantially diverge across vertebrates. In amphibians and teleosts, the establishment of an early dorso-ventral polarity determines both the site of axis formation and its rostro-caudal orientation. In contrast, amniotes retain a considerable plasticity for their site of axis formation until blastula stages and rely on signals secreted by extraembryonic tissues, which have no clear equivalents in the former, for the establishment of their rostro-caudal pattern. The rationale for these differences remains unknown. Through detailed expression analyses of key development genes in a chondrichthyan, the dogfish Scyliorhinus canicula, we have reconstructed the ancestral pattern of axis specification in jawed vertebrates. We show that the dogfish displays compelling similarities with amniotes at blastula and early gastrula stages, including the presence of clear homologs of the hypoblast and extraembryonic ectoderm. In the ancestral state, these territories are specified at opposite poles of an early axis of bilateral symmetry, homologous to the dorso-ventral axis of amphibians or teleosts, and aligned with the later forming embryonic axis, from head to tail. Comparisons with amniotes suggest that a dorsal expansion of extraembryonic ectoderm, resulting in an apparently radial symmetry at late blastula stages, has taken place in their lineage. The synthesis of these results with those of functional analyses in model organisms supports an evolutionary link between the dorso-ventral polarity of amphibians and teleosts and the embryonic-extraembryonic organisation of amniotes. It leads to a general model of axis specification in gnathostomes, which provides a comparative framework for a reassessment of conservations both among vertebrates and with more distant metazoans. Public Library of Science 2007-04-18 /pmc/articles/PMC1847705/ /pubmed/17440610 http://dx.doi.org/10.1371/journal.pone.0000374 Text en Coolen 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Coolen, Marion
Sauka-Spengler, Tatjana
Nicolle, Delphine
Le-Mentec, Chantal
Lallemand, Yvan
Silva, Corinne Da
Plouhinec, Jean-Louis
Robert, Benoît
Wincker, Patrick
Shi, De-Li
Mazan, Sylvie
Evolution of Axis Specification Mechanisms in Jawed Vertebrates: Insights from a Chondrichthyan
title Evolution of Axis Specification Mechanisms in Jawed Vertebrates: Insights from a Chondrichthyan
title_full Evolution of Axis Specification Mechanisms in Jawed Vertebrates: Insights from a Chondrichthyan
title_fullStr Evolution of Axis Specification Mechanisms in Jawed Vertebrates: Insights from a Chondrichthyan
title_full_unstemmed Evolution of Axis Specification Mechanisms in Jawed Vertebrates: Insights from a Chondrichthyan
title_short Evolution of Axis Specification Mechanisms in Jawed Vertebrates: Insights from a Chondrichthyan
title_sort evolution of axis specification mechanisms in jawed vertebrates: insights from a chondrichthyan
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1847705/
https://www.ncbi.nlm.nih.gov/pubmed/17440610
http://dx.doi.org/10.1371/journal.pone.0000374
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