• search hit 49 of 5369
Back to Result List

WRKY23 is a component of the transcriptional network mediating auxin feedback on PIN polarity

  • Auxin is unique among plant hormones due to its directional transport that is mediated by the polarly distributed PIN auxin transporters at the plasma membrane. The canalization hypothesis proposes that the auxin feedback on its polar flow is a crucial, plant-specific mechanism mediating multiple self-organizing developmental processes. Here, we used the auxin effect on the PIN polar localization in Arabidopsis thaliana roots as a proxy for the auxin feedback on the PIN polarity during canalization. We performed microarray experiments to find regulators of this process that act downstream of auxin. We identified genes that were transcriptionally regulated by auxin in an AXR3/IAA17-and ARF7/ARF19-dependent manner. Besides the known components of the PIN polarity, such as PID and PIP5K kinases, a number of potential new regulators were detected, among which the WRKY23 transcription factor, which was characterized in more detail. Gain-and loss-of-function mutants confirmed a role for WRKY23 in mediating the auxin effect on the PINAuxin is unique among plant hormones due to its directional transport that is mediated by the polarly distributed PIN auxin transporters at the plasma membrane. The canalization hypothesis proposes that the auxin feedback on its polar flow is a crucial, plant-specific mechanism mediating multiple self-organizing developmental processes. Here, we used the auxin effect on the PIN polar localization in Arabidopsis thaliana roots as a proxy for the auxin feedback on the PIN polarity during canalization. We performed microarray experiments to find regulators of this process that act downstream of auxin. We identified genes that were transcriptionally regulated by auxin in an AXR3/IAA17-and ARF7/ARF19-dependent manner. Besides the known components of the PIN polarity, such as PID and PIP5K kinases, a number of potential new regulators were detected, among which the WRKY23 transcription factor, which was characterized in more detail. Gain-and loss-of-function mutants confirmed a role for WRKY23 in mediating the auxin effect on the PIN polarity. Accordingly, processes requiring auxin-mediated PIN polarity rearrangements, such as vascular tissue development during leaf venation, showed a higher WRKY23 expression and required the WRKY23 activity. Our results provide initial insights into the auxin transcriptional network acting upstream of PIN polarization and, potentially, canalization-mediated plant development.show moreshow less

Export metadata

Additional Services

Search Google Scholar Statistics
Metadaten
Author details:Tomas PratORCiD, Jakub HajnyORCiD, Wim GrunewaldORCiD, Mina Vasileva, Gergely MolnarORCiD, Ricardo TejosORCiD, Markus SchmidORCiD, Michael SauerORCiD, Jiří FrimlORCiD
DOI:https://doi.org/10.1371/journal.pgen.1007177
ISSN:1553-7404
Pubmed ID:https://pubmed.ncbi.nlm.nih.gov/29377885
Title of parent work (English):PLoS Genetics : a peer-reviewed, open-access journal
Publisher:PLoS
Place of publishing:San Fransisco
Publication type:Article
Language:English
Date of first publication:2018/01/29
Publication year:2018
Release date:2022/04/04
Volume:14
Issue:1
Number of pages:18
Funding institution:European Research CouncilEuropean Research Council (ERC) [ERC-2011-StG-20101109-PSDP]
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Biochemie und Biologie
DDC classification:5 Naturwissenschaften und Mathematik / 57 Biowissenschaften; Biologie / 570 Biowissenschaften; Biologie
6 Technik, Medizin, angewandte Wissenschaften / 61 Medizin und Gesundheit / 610 Medizin und Gesundheit
License (German):License LogoCC-BY-NC - Namensnennung, nicht kommerziell 4.0 International
External remark:Zweitveröffentlichung in der Schriftenreihe Postprints der Universität Potsdam : Postprints der Universität Potsdam : Mathematisch-Naturwissenschaftliche Reihe ; 1123
Accept ✔
This website uses technically necessary session cookies. By continuing to use the website, you agree to this. You can find our privacy policy here.