Systematic comparison of sea urchin and sea star developmental gene regulatory networks explains how novelty is incorporated in early development

It is unclear how a gene regulatory network (GRN) incorporates novelty whilst still maintaining overall stability. Here, the authors provide a comprehensive GRN for endomesoderm specification in the sea star from zygote stage to gastrulation, showing conserved network kernels stabilize evolutionary...

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Autores principales: Gregory A. Cary, Brenna S. McCauley, Olga Zueva, Joseph Pattinato, William Longabaugh, Veronica F. Hinman
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/f9896b6049de47a5a5a06fb0398c126b
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spelling oai:doaj.org-article:f9896b6049de47a5a5a06fb0398c126b2021-12-02T15:39:26ZSystematic comparison of sea urchin and sea star developmental gene regulatory networks explains how novelty is incorporated in early development10.1038/s41467-020-20023-42041-1723https://doaj.org/article/f9896b6049de47a5a5a06fb0398c126b2020-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-20023-4https://doaj.org/toc/2041-1723It is unclear how a gene regulatory network (GRN) incorporates novelty whilst still maintaining overall stability. Here, the authors provide a comprehensive GRN for endomesoderm specification in the sea star from zygote stage to gastrulation, showing conserved network kernels stabilize evolutionary changes in signaling modes.Gregory A. CaryBrenna S. McCauleyOlga ZuevaJoseph PattinatoWilliam LongabaughVeronica F. HinmanNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-9 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Gregory A. Cary
Brenna S. McCauley
Olga Zueva
Joseph Pattinato
William Longabaugh
Veronica F. Hinman
Systematic comparison of sea urchin and sea star developmental gene regulatory networks explains how novelty is incorporated in early development
description It is unclear how a gene regulatory network (GRN) incorporates novelty whilst still maintaining overall stability. Here, the authors provide a comprehensive GRN for endomesoderm specification in the sea star from zygote stage to gastrulation, showing conserved network kernels stabilize evolutionary changes in signaling modes.
format article
author Gregory A. Cary
Brenna S. McCauley
Olga Zueva
Joseph Pattinato
William Longabaugh
Veronica F. Hinman
author_facet Gregory A. Cary
Brenna S. McCauley
Olga Zueva
Joseph Pattinato
William Longabaugh
Veronica F. Hinman
author_sort Gregory A. Cary
title Systematic comparison of sea urchin and sea star developmental gene regulatory networks explains how novelty is incorporated in early development
title_short Systematic comparison of sea urchin and sea star developmental gene regulatory networks explains how novelty is incorporated in early development
title_full Systematic comparison of sea urchin and sea star developmental gene regulatory networks explains how novelty is incorporated in early development
title_fullStr Systematic comparison of sea urchin and sea star developmental gene regulatory networks explains how novelty is incorporated in early development
title_full_unstemmed Systematic comparison of sea urchin and sea star developmental gene regulatory networks explains how novelty is incorporated in early development
title_sort systematic comparison of sea urchin and sea star developmental gene regulatory networks explains how novelty is incorporated in early development
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/f9896b6049de47a5a5a06fb0398c126b
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