The Gonium pectorale genome demonstrates co-option of cell cycle regulation during the evolution of multicellularity

The undifferentiated Gonium pectorale represents the initial transition to multicellularity. Here, Bradley Olson, Erik Hanschen and colleagues describe the genome of Gonium pectorale, demonstrating that co-option of the retinoblastoma cell cycle regulatory pathway was a key genetic change in the evo...

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Autores principales: Erik R. Hanschen, Tara N. Marriage, Patrick J. Ferris, Takashi Hamaji, Atsushi Toyoda, Asao Fujiyama, Rafik Neme, Hideki Noguchi, Yohei Minakuchi, Masahiro Suzuki, Hiroko Kawai-Toyooka, David R. Smith, Halle Sparks, Jaden Anderson, Robert Bakarić, Victor Luria, Amir Karger, Marc W. Kirschner, Pierre M. Durand, Richard E. Michod, Hisayoshi Nozaki, Bradley J. S. C. Olson
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Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/992e5a79e84e4946ab532b4d08cda741
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spelling oai:doaj.org-article:992e5a79e84e4946ab532b4d08cda7412021-12-02T16:49:25ZThe Gonium pectorale genome demonstrates co-option of cell cycle regulation during the evolution of multicellularity10.1038/ncomms113702041-1723https://doaj.org/article/992e5a79e84e4946ab532b4d08cda7412016-04-01T00:00:00Zhttps://doi.org/10.1038/ncomms11370https://doaj.org/toc/2041-1723The undifferentiated Gonium pectorale represents the initial transition to multicellularity. Here, Bradley Olson, Erik Hanschen and colleagues describe the genome of Gonium pectorale, demonstrating that co-option of the retinoblastoma cell cycle regulatory pathway was a key genetic change in the evolution of multicellularity.Erik R. HanschenTara N. MarriagePatrick J. FerrisTakashi HamajiAtsushi ToyodaAsao FujiyamaRafik NemeHideki NoguchiYohei MinakuchiMasahiro SuzukiHiroko Kawai-ToyookaDavid R. SmithHalle SparksJaden AndersonRobert BakarićVictor LuriaAmir KargerMarc W. KirschnerPierre M. DurandRichard E. MichodHisayoshi NozakiBradley J. S. C. OlsonNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-10 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Erik R. Hanschen
Tara N. Marriage
Patrick J. Ferris
Takashi Hamaji
Atsushi Toyoda
Asao Fujiyama
Rafik Neme
Hideki Noguchi
Yohei Minakuchi
Masahiro Suzuki
Hiroko Kawai-Toyooka
David R. Smith
Halle Sparks
Jaden Anderson
Robert Bakarić
Victor Luria
Amir Karger
Marc W. Kirschner
Pierre M. Durand
Richard E. Michod
Hisayoshi Nozaki
Bradley J. S. C. Olson
The Gonium pectorale genome demonstrates co-option of cell cycle regulation during the evolution of multicellularity
description The undifferentiated Gonium pectorale represents the initial transition to multicellularity. Here, Bradley Olson, Erik Hanschen and colleagues describe the genome of Gonium pectorale, demonstrating that co-option of the retinoblastoma cell cycle regulatory pathway was a key genetic change in the evolution of multicellularity.
format article
author Erik R. Hanschen
Tara N. Marriage
Patrick J. Ferris
Takashi Hamaji
Atsushi Toyoda
Asao Fujiyama
Rafik Neme
Hideki Noguchi
Yohei Minakuchi
Masahiro Suzuki
Hiroko Kawai-Toyooka
David R. Smith
Halle Sparks
Jaden Anderson
Robert Bakarić
Victor Luria
Amir Karger
Marc W. Kirschner
Pierre M. Durand
Richard E. Michod
Hisayoshi Nozaki
Bradley J. S. C. Olson
author_facet Erik R. Hanschen
Tara N. Marriage
Patrick J. Ferris
Takashi Hamaji
Atsushi Toyoda
Asao Fujiyama
Rafik Neme
Hideki Noguchi
Yohei Minakuchi
Masahiro Suzuki
Hiroko Kawai-Toyooka
David R. Smith
Halle Sparks
Jaden Anderson
Robert Bakarić
Victor Luria
Amir Karger
Marc W. Kirschner
Pierre M. Durand
Richard E. Michod
Hisayoshi Nozaki
Bradley J. S. C. Olson
author_sort Erik R. Hanschen
title The Gonium pectorale genome demonstrates co-option of cell cycle regulation during the evolution of multicellularity
title_short The Gonium pectorale genome demonstrates co-option of cell cycle regulation during the evolution of multicellularity
title_full The Gonium pectorale genome demonstrates co-option of cell cycle regulation during the evolution of multicellularity
title_fullStr The Gonium pectorale genome demonstrates co-option of cell cycle regulation during the evolution of multicellularity
title_full_unstemmed The Gonium pectorale genome demonstrates co-option of cell cycle regulation during the evolution of multicellularity
title_sort gonium pectorale genome demonstrates co-option of cell cycle regulation during the evolution of multicellularity
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/992e5a79e84e4946ab532b4d08cda741
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