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Coevolution of enamel, ganoin, enameloid, and their matrix SCPP genes in osteichthyans

We resolve debate over the evolution of vertebrate hypermineralized tissues through analyses of matrix protein-encoding secretory calcium-binding phosphoprotein (SCPP) genes and phylogenetic inference of hypermineralized tissues. Among these genes, AMBN and ENAM are found in both sarcopterygians and...

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Autores principales: Kawasaki, Kazuhiko, Keating, Joseph N., Nakatomi, Mitsushiro, Welten, Monique, Mikami, Masato, Sasagawa, Ichiro, Puttick, Mark N., Donoghue, Philip C.J., Ishiyama, Mikio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7814152/
https://www.ncbi.nlm.nih.gov/pubmed/33506188
http://dx.doi.org/10.1016/j.isci.2020.102023
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author Kawasaki, Kazuhiko
Keating, Joseph N.
Nakatomi, Mitsushiro
Welten, Monique
Mikami, Masato
Sasagawa, Ichiro
Puttick, Mark N.
Donoghue, Philip C.J.
Ishiyama, Mikio
author_facet Kawasaki, Kazuhiko
Keating, Joseph N.
Nakatomi, Mitsushiro
Welten, Monique
Mikami, Masato
Sasagawa, Ichiro
Puttick, Mark N.
Donoghue, Philip C.J.
Ishiyama, Mikio
author_sort Kawasaki, Kazuhiko
collection PubMed
description We resolve debate over the evolution of vertebrate hypermineralized tissues through analyses of matrix protein-encoding secretory calcium-binding phosphoprotein (SCPP) genes and phylogenetic inference of hypermineralized tissues. Among these genes, AMBN and ENAM are found in both sarcopterygians and actinopterygians, whereas AMEL and SCPP5 are found only in sarcopterygians and actinopterygians, respectively. Actinopterygian AMBN, ENAM, and SCPP5 are expressed during the formation of hypermineralized tissues on scales and teeth: ganoin, acrodin, and collar enamel in gar, and acrodin and collar enameloid in zebrafish. Our phylogenetic analyses indicate the emergence of an ancestral enamel in stem-osteichthyans, whereas ganoin emerged in stem-actinopterygians and true enamel in stem-sarcopterygians. Thus, AMBN and ENAM originated in concert with ancestral enamel, SCPP5 evolved in association with ganoin, and AMEL evolved with true enamel. Shifts in gene expression domain and timing explain the evolution of different hypermineralized tissues. We propose that hypermineralized tissues in osteichthyans coevolved with matrix SCPP genes.
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spelling pubmed-78141522021-01-26 Coevolution of enamel, ganoin, enameloid, and their matrix SCPP genes in osteichthyans Kawasaki, Kazuhiko Keating, Joseph N. Nakatomi, Mitsushiro Welten, Monique Mikami, Masato Sasagawa, Ichiro Puttick, Mark N. Donoghue, Philip C.J. Ishiyama, Mikio iScience Article We resolve debate over the evolution of vertebrate hypermineralized tissues through analyses of matrix protein-encoding secretory calcium-binding phosphoprotein (SCPP) genes and phylogenetic inference of hypermineralized tissues. Among these genes, AMBN and ENAM are found in both sarcopterygians and actinopterygians, whereas AMEL and SCPP5 are found only in sarcopterygians and actinopterygians, respectively. Actinopterygian AMBN, ENAM, and SCPP5 are expressed during the formation of hypermineralized tissues on scales and teeth: ganoin, acrodin, and collar enamel in gar, and acrodin and collar enameloid in zebrafish. Our phylogenetic analyses indicate the emergence of an ancestral enamel in stem-osteichthyans, whereas ganoin emerged in stem-actinopterygians and true enamel in stem-sarcopterygians. Thus, AMBN and ENAM originated in concert with ancestral enamel, SCPP5 evolved in association with ganoin, and AMEL evolved with true enamel. Shifts in gene expression domain and timing explain the evolution of different hypermineralized tissues. We propose that hypermineralized tissues in osteichthyans coevolved with matrix SCPP genes. Elsevier 2021-01-01 /pmc/articles/PMC7814152/ /pubmed/33506188 http://dx.doi.org/10.1016/j.isci.2020.102023 Text en © 2020 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Kawasaki, Kazuhiko
Keating, Joseph N.
Nakatomi, Mitsushiro
Welten, Monique
Mikami, Masato
Sasagawa, Ichiro
Puttick, Mark N.
Donoghue, Philip C.J.
Ishiyama, Mikio
Coevolution of enamel, ganoin, enameloid, and their matrix SCPP genes in osteichthyans
title Coevolution of enamel, ganoin, enameloid, and their matrix SCPP genes in osteichthyans
title_full Coevolution of enamel, ganoin, enameloid, and their matrix SCPP genes in osteichthyans
title_fullStr Coevolution of enamel, ganoin, enameloid, and their matrix SCPP genes in osteichthyans
title_full_unstemmed Coevolution of enamel, ganoin, enameloid, and their matrix SCPP genes in osteichthyans
title_short Coevolution of enamel, ganoin, enameloid, and their matrix SCPP genes in osteichthyans
title_sort coevolution of enamel, ganoin, enameloid, and their matrix scpp genes in osteichthyans
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7814152/
https://www.ncbi.nlm.nih.gov/pubmed/33506188
http://dx.doi.org/10.1016/j.isci.2020.102023
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