Strigolactones inhibit auxin feedback on PIN-dependent auxin transport canalization

Strigolactones are a newly identified, but incompletely characterized class of plant hormones play crucial roles in plant development. Here the authors show that strigolactones prevent an auxin feedback-effect on PIN-FORMED (PIN) polarity and trafficking, thereby regulating vascular tissue formation...

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Autores principales: Jing Zhang, Ewa Mazur, Jozef Balla, Michelle Gallei, Petr Kalousek, Zuzana Medveďová, Yang Li, Yaping Wang, Tomáš Prát, Mina Vasileva, Vilém Reinöhl, Stanislav Procházka, Rostislav Halouzka, Petr Tarkowski, Christian Luschnig, Philip B. Brewer, Jiří Friml
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/5d0917a8eb4546d2a963c55de682176d
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spelling oai:doaj.org-article:5d0917a8eb4546d2a963c55de682176d2021-12-02T17:01:30ZStrigolactones inhibit auxin feedback on PIN-dependent auxin transport canalization10.1038/s41467-020-17252-y2041-1723https://doaj.org/article/5d0917a8eb4546d2a963c55de682176d2020-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-17252-yhttps://doaj.org/toc/2041-1723Strigolactones are a newly identified, but incompletely characterized class of plant hormones play crucial roles in plant development. Here the authors show that strigolactones prevent an auxin feedback-effect on PIN-FORMED (PIN) polarity and trafficking, thereby regulating vascular tissue formation and regeneration.Jing ZhangEwa MazurJozef BallaMichelle GalleiPetr KalousekZuzana MedveďováYang LiYaping WangTomáš PrátMina VasilevaVilém ReinöhlStanislav ProcházkaRostislav HalouzkaPetr TarkowskiChristian LuschnigPhilip B. BrewerJiří FrimlNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-10 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Jing Zhang
Ewa Mazur
Jozef Balla
Michelle Gallei
Petr Kalousek
Zuzana Medveďová
Yang Li
Yaping Wang
Tomáš Prát
Mina Vasileva
Vilém Reinöhl
Stanislav Procházka
Rostislav Halouzka
Petr Tarkowski
Christian Luschnig
Philip B. Brewer
Jiří Friml
Strigolactones inhibit auxin feedback on PIN-dependent auxin transport canalization
description Strigolactones are a newly identified, but incompletely characterized class of plant hormones play crucial roles in plant development. Here the authors show that strigolactones prevent an auxin feedback-effect on PIN-FORMED (PIN) polarity and trafficking, thereby regulating vascular tissue formation and regeneration.
format article
author Jing Zhang
Ewa Mazur
Jozef Balla
Michelle Gallei
Petr Kalousek
Zuzana Medveďová
Yang Li
Yaping Wang
Tomáš Prát
Mina Vasileva
Vilém Reinöhl
Stanislav Procházka
Rostislav Halouzka
Petr Tarkowski
Christian Luschnig
Philip B. Brewer
Jiří Friml
author_facet Jing Zhang
Ewa Mazur
Jozef Balla
Michelle Gallei
Petr Kalousek
Zuzana Medveďová
Yang Li
Yaping Wang
Tomáš Prát
Mina Vasileva
Vilém Reinöhl
Stanislav Procházka
Rostislav Halouzka
Petr Tarkowski
Christian Luschnig
Philip B. Brewer
Jiří Friml
author_sort Jing Zhang
title Strigolactones inhibit auxin feedback on PIN-dependent auxin transport canalization
title_short Strigolactones inhibit auxin feedback on PIN-dependent auxin transport canalization
title_full Strigolactones inhibit auxin feedback on PIN-dependent auxin transport canalization
title_fullStr Strigolactones inhibit auxin feedback on PIN-dependent auxin transport canalization
title_full_unstemmed Strigolactones inhibit auxin feedback on PIN-dependent auxin transport canalization
title_sort strigolactones inhibit auxin feedback on pin-dependent auxin transport canalization
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/5d0917a8eb4546d2a963c55de682176d
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