Synchronization of gene expression across eukaryotic communities through chemical rhythms

Synchronizing gene expression across eukaryotic communities presents complex challenges. Here the authors construct a compact synthetic system inspired by bacteria response to antibiotics that robustly converts chemical rhythms into synchronized gene expression across populations.

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Autores principales: Sara Pérez-García, Mario García-Navarrete, Diego Ruiz-Sanchis, Cristina Prieto-Navarro, Merisa Avdovic, Ornella Pucciariello, Krzysztof Wabnik
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/dcb5d7b0369b476f8203cac80ba0a257
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spelling oai:doaj.org-article:dcb5d7b0369b476f8203cac80ba0a2572021-12-02T14:34:12ZSynchronization of gene expression across eukaryotic communities through chemical rhythms10.1038/s41467-021-24325-z2041-1723https://doaj.org/article/dcb5d7b0369b476f8203cac80ba0a2572021-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-24325-zhttps://doaj.org/toc/2041-1723Synchronizing gene expression across eukaryotic communities presents complex challenges. Here the authors construct a compact synthetic system inspired by bacteria response to antibiotics that robustly converts chemical rhythms into synchronized gene expression across populations.Sara Pérez-GarcíaMario García-NavarreteDiego Ruiz-SanchisCristina Prieto-NavarroMerisa AvdovicOrnella PucciarielloKrzysztof WabnikNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-10 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Sara Pérez-García
Mario García-Navarrete
Diego Ruiz-Sanchis
Cristina Prieto-Navarro
Merisa Avdovic
Ornella Pucciariello
Krzysztof Wabnik
Synchronization of gene expression across eukaryotic communities through chemical rhythms
description Synchronizing gene expression across eukaryotic communities presents complex challenges. Here the authors construct a compact synthetic system inspired by bacteria response to antibiotics that robustly converts chemical rhythms into synchronized gene expression across populations.
format article
author Sara Pérez-García
Mario García-Navarrete
Diego Ruiz-Sanchis
Cristina Prieto-Navarro
Merisa Avdovic
Ornella Pucciariello
Krzysztof Wabnik
author_facet Sara Pérez-García
Mario García-Navarrete
Diego Ruiz-Sanchis
Cristina Prieto-Navarro
Merisa Avdovic
Ornella Pucciariello
Krzysztof Wabnik
author_sort Sara Pérez-García
title Synchronization of gene expression across eukaryotic communities through chemical rhythms
title_short Synchronization of gene expression across eukaryotic communities through chemical rhythms
title_full Synchronization of gene expression across eukaryotic communities through chemical rhythms
title_fullStr Synchronization of gene expression across eukaryotic communities through chemical rhythms
title_full_unstemmed Synchronization of gene expression across eukaryotic communities through chemical rhythms
title_sort synchronization of gene expression across eukaryotic communities through chemical rhythms
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/dcb5d7b0369b476f8203cac80ba0a257
work_keys_str_mv AT saraperezgarcia synchronizationofgeneexpressionacrosseukaryoticcommunitiesthroughchemicalrhythms
AT mariogarcianavarrete synchronizationofgeneexpressionacrosseukaryoticcommunitiesthroughchemicalrhythms
AT diegoruizsanchis synchronizationofgeneexpressionacrosseukaryoticcommunitiesthroughchemicalrhythms
AT cristinaprietonavarro synchronizationofgeneexpressionacrosseukaryoticcommunitiesthroughchemicalrhythms
AT merisaavdovic synchronizationofgeneexpressionacrosseukaryoticcommunitiesthroughchemicalrhythms
AT ornellapucciariello synchronizationofgeneexpressionacrosseukaryoticcommunitiesthroughchemicalrhythms
AT krzysztofwabnik synchronizationofgeneexpressionacrosseukaryoticcommunitiesthroughchemicalrhythms
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