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The auxin signalling network translates dynamic input into robust patterning at the shoot apex

The plant hormone auxin is thought to provide positional information for patterning during development. It is still unclear, however, precisely how auxin is distributed across tissues and how the hormone is sensed in space and time. The control of gene expression in response to auxin involves a comp...

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Autores principales: Vernoux, Teva, Brunoud, Géraldine, Farcot, Etienne, Morin, Valérie, Van den Daele, Hilde, Legrand, Jonathan, Oliva, Marina, Das, Pradeep, Larrieu, Antoine, Wells, Darren, Guédon, Yann, Armitage, Lynne, Picard, Franck, Guyomarc'h, Soazig, Cellier, Coralie, Parry, Geraint, Koumproglou, Rachil, Doonan, John H, Estelle, Mark, Godin, Christophe, Kepinski, Stefan, Bennett, Malcolm, De Veylder, Lieven, Traas, Jan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: European Molecular Biology Organization 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3167386/
https://www.ncbi.nlm.nih.gov/pubmed/21734647
http://dx.doi.org/10.1038/msb.2011.39
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author Vernoux, Teva
Brunoud, Géraldine
Farcot, Etienne
Morin, Valérie
Van den Daele, Hilde
Legrand, Jonathan
Oliva, Marina
Das, Pradeep
Larrieu, Antoine
Wells, Darren
Guédon, Yann
Armitage, Lynne
Picard, Franck
Guyomarc'h, Soazig
Cellier, Coralie
Parry, Geraint
Koumproglou, Rachil
Doonan, John H
Estelle, Mark
Godin, Christophe
Kepinski, Stefan
Bennett, Malcolm
De Veylder, Lieven
Traas, Jan
author_facet Vernoux, Teva
Brunoud, Géraldine
Farcot, Etienne
Morin, Valérie
Van den Daele, Hilde
Legrand, Jonathan
Oliva, Marina
Das, Pradeep
Larrieu, Antoine
Wells, Darren
Guédon, Yann
Armitage, Lynne
Picard, Franck
Guyomarc'h, Soazig
Cellier, Coralie
Parry, Geraint
Koumproglou, Rachil
Doonan, John H
Estelle, Mark
Godin, Christophe
Kepinski, Stefan
Bennett, Malcolm
De Veylder, Lieven
Traas, Jan
author_sort Vernoux, Teva
collection PubMed
description The plant hormone auxin is thought to provide positional information for patterning during development. It is still unclear, however, precisely how auxin is distributed across tissues and how the hormone is sensed in space and time. The control of gene expression in response to auxin involves a complex network of over 50 potentially interacting transcriptional activators and repressors, the auxin response factors (ARFs) and Aux/IAAs. Here, we perform a large-scale analysis of the Aux/IAA-ARF pathway in the shoot apex of Arabidopsis, where dynamic auxin-based patterning controls organogenesis. A comprehensive expression map and full interactome uncovered an unexpectedly simple distribution and structure of this pathway in the shoot apex. A mathematical model of the Aux/IAA-ARF network predicted a strong buffering capacity along with spatial differences in auxin sensitivity. We then tested and confirmed these predictions using a novel auxin signalling sensor that reports input into the signalling pathway, in conjunction with the published DR5 transcriptional output reporter. Our results provide evidence that the auxin signalling network is essential to create robust patterns at the shoot apex.
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spelling pubmed-31673862011-09-07 The auxin signalling network translates dynamic input into robust patterning at the shoot apex Vernoux, Teva Brunoud, Géraldine Farcot, Etienne Morin, Valérie Van den Daele, Hilde Legrand, Jonathan Oliva, Marina Das, Pradeep Larrieu, Antoine Wells, Darren Guédon, Yann Armitage, Lynne Picard, Franck Guyomarc'h, Soazig Cellier, Coralie Parry, Geraint Koumproglou, Rachil Doonan, John H Estelle, Mark Godin, Christophe Kepinski, Stefan Bennett, Malcolm De Veylder, Lieven Traas, Jan Mol Syst Biol Article The plant hormone auxin is thought to provide positional information for patterning during development. It is still unclear, however, precisely how auxin is distributed across tissues and how the hormone is sensed in space and time. The control of gene expression in response to auxin involves a complex network of over 50 potentially interacting transcriptional activators and repressors, the auxin response factors (ARFs) and Aux/IAAs. Here, we perform a large-scale analysis of the Aux/IAA-ARF pathway in the shoot apex of Arabidopsis, where dynamic auxin-based patterning controls organogenesis. A comprehensive expression map and full interactome uncovered an unexpectedly simple distribution and structure of this pathway in the shoot apex. A mathematical model of the Aux/IAA-ARF network predicted a strong buffering capacity along with spatial differences in auxin sensitivity. We then tested and confirmed these predictions using a novel auxin signalling sensor that reports input into the signalling pathway, in conjunction with the published DR5 transcriptional output reporter. Our results provide evidence that the auxin signalling network is essential to create robust patterns at the shoot apex. European Molecular Biology Organization 2011-07-05 /pmc/articles/PMC3167386/ /pubmed/21734647 http://dx.doi.org/10.1038/msb.2011.39 Text en Copyright © 2011, EMBO and Macmillan Publishers Limited https://creativecommons.org/licenses/by-nc-nd/3.0/This is an open-access article distributed under the terms of the Creative Commons Attribution Noncommercial No Derivative Works 3.0 Unported License, which permits distribution and reproduction in any medium, provided the original author and source are credited. This license does not permit commercial exploitation or the creation of derivative works without specific permission.
spellingShingle Article
Vernoux, Teva
Brunoud, Géraldine
Farcot, Etienne
Morin, Valérie
Van den Daele, Hilde
Legrand, Jonathan
Oliva, Marina
Das, Pradeep
Larrieu, Antoine
Wells, Darren
Guédon, Yann
Armitage, Lynne
Picard, Franck
Guyomarc'h, Soazig
Cellier, Coralie
Parry, Geraint
Koumproglou, Rachil
Doonan, John H
Estelle, Mark
Godin, Christophe
Kepinski, Stefan
Bennett, Malcolm
De Veylder, Lieven
Traas, Jan
The auxin signalling network translates dynamic input into robust patterning at the shoot apex
title The auxin signalling network translates dynamic input into robust patterning at the shoot apex
title_full The auxin signalling network translates dynamic input into robust patterning at the shoot apex
title_fullStr The auxin signalling network translates dynamic input into robust patterning at the shoot apex
title_full_unstemmed The auxin signalling network translates dynamic input into robust patterning at the shoot apex
title_short The auxin signalling network translates dynamic input into robust patterning at the shoot apex
title_sort auxin signalling network translates dynamic input into robust patterning at the shoot apex
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3167386/
https://www.ncbi.nlm.nih.gov/pubmed/21734647
http://dx.doi.org/10.1038/msb.2011.39
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