Low phosphate activates STOP1-ALMT1 to rapidly inhibit root cell elongation

Low Pi availability inhibits primary root growth, but the sensory mechanisms are not known. Here the authors uncover a signalling pathway regulating Pi-mediated root growth inhibition inArabidopsis, involving the transcription factor STOP1, its direct target ALMT1, a malate channel, and ferroxidase...

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Autores principales: Coline Balzergue, Thibault Dartevelle, Christian Godon, Edith Laugier, Claudia Meisrimler, Jean-Marie Teulon, Audrey Creff, Marie Bissler, Corinne Brouchoud, Agnès Hagège, Jens Müller, Serge Chiarenza, Hélène Javot, Noëlle Becuwe-Linka, Pascale David, Benjamin Péret, Etienne Delannoy, Marie-Christine Thibaud, Jean Armengaud, Steffen Abel, Jean-Luc Pellequer, Laurent Nussaume, Thierry Desnos
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/621827575e59479b852e748dfa9c636a
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spelling oai:doaj.org-article:621827575e59479b852e748dfa9c636a2021-12-02T17:06:20ZLow phosphate activates STOP1-ALMT1 to rapidly inhibit root cell elongation10.1038/ncomms153002041-1723https://doaj.org/article/621827575e59479b852e748dfa9c636a2017-05-01T00:00:00Zhttps://doi.org/10.1038/ncomms15300https://doaj.org/toc/2041-1723Low Pi availability inhibits primary root growth, but the sensory mechanisms are not known. Here the authors uncover a signalling pathway regulating Pi-mediated root growth inhibition inArabidopsis, involving the transcription factor STOP1, its direct target ALMT1, a malate channel, and ferroxidase LPR1.Coline BalzergueThibault DartevelleChristian GodonEdith LaugierClaudia MeisrimlerJean-Marie TeulonAudrey CreffMarie BisslerCorinne BrouchoudAgnès HagègeJens MüllerSerge ChiarenzaHélène JavotNoëlle Becuwe-LinkaPascale DavidBenjamin PéretEtienne DelannoyMarie-Christine ThibaudJean ArmengaudSteffen AbelJean-Luc PellequerLaurent NussaumeThierry DesnosNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-16 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Coline Balzergue
Thibault Dartevelle
Christian Godon
Edith Laugier
Claudia Meisrimler
Jean-Marie Teulon
Audrey Creff
Marie Bissler
Corinne Brouchoud
Agnès Hagège
Jens Müller
Serge Chiarenza
Hélène Javot
Noëlle Becuwe-Linka
Pascale David
Benjamin Péret
Etienne Delannoy
Marie-Christine Thibaud
Jean Armengaud
Steffen Abel
Jean-Luc Pellequer
Laurent Nussaume
Thierry Desnos
Low phosphate activates STOP1-ALMT1 to rapidly inhibit root cell elongation
description Low Pi availability inhibits primary root growth, but the sensory mechanisms are not known. Here the authors uncover a signalling pathway regulating Pi-mediated root growth inhibition inArabidopsis, involving the transcription factor STOP1, its direct target ALMT1, a malate channel, and ferroxidase LPR1.
format article
author Coline Balzergue
Thibault Dartevelle
Christian Godon
Edith Laugier
Claudia Meisrimler
Jean-Marie Teulon
Audrey Creff
Marie Bissler
Corinne Brouchoud
Agnès Hagège
Jens Müller
Serge Chiarenza
Hélène Javot
Noëlle Becuwe-Linka
Pascale David
Benjamin Péret
Etienne Delannoy
Marie-Christine Thibaud
Jean Armengaud
Steffen Abel
Jean-Luc Pellequer
Laurent Nussaume
Thierry Desnos
author_facet Coline Balzergue
Thibault Dartevelle
Christian Godon
Edith Laugier
Claudia Meisrimler
Jean-Marie Teulon
Audrey Creff
Marie Bissler
Corinne Brouchoud
Agnès Hagège
Jens Müller
Serge Chiarenza
Hélène Javot
Noëlle Becuwe-Linka
Pascale David
Benjamin Péret
Etienne Delannoy
Marie-Christine Thibaud
Jean Armengaud
Steffen Abel
Jean-Luc Pellequer
Laurent Nussaume
Thierry Desnos
author_sort Coline Balzergue
title Low phosphate activates STOP1-ALMT1 to rapidly inhibit root cell elongation
title_short Low phosphate activates STOP1-ALMT1 to rapidly inhibit root cell elongation
title_full Low phosphate activates STOP1-ALMT1 to rapidly inhibit root cell elongation
title_fullStr Low phosphate activates STOP1-ALMT1 to rapidly inhibit root cell elongation
title_full_unstemmed Low phosphate activates STOP1-ALMT1 to rapidly inhibit root cell elongation
title_sort low phosphate activates stop1-almt1 to rapidly inhibit root cell elongation
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/621827575e59479b852e748dfa9c636a
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