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Strigolactones inhibit auxin feedback on PIN-dependent auxin transport canalization

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posted on 2024-06-17, 20:18 authored by J Zhang, E Mazur, J Balla, M Gallei, P Kalousek, Z Medveďová, Y Li, Y Wang, T Prát, M Vasileva, V Reinöhl, S Procházka, R Halouzka, P Tarkowski, C Luschnig, Philip B Brewer, J Friml
Directional transport of the phytohormone auxin is a versatile, plant-specific mechanism regulating many aspects of plant development. The recently identified plant hormones, strigolactones (SLs), are implicated in many plant traits; among others, they modify the phenotypic output of PIN-FORMED (PIN) auxin transporters for fine-tuning of growth and developmental responses. Here, we show in pea and Arabidopsis that SLs target processes dependent on the canalization of auxin flow, which involves auxin feedback on PIN subcellular distribution. D14 receptor- and MAX2 F-box-mediated SL signaling inhibits the formation of auxin-conducting channels after wounding or from artificial auxin sources, during vasculature de novo formation and regeneration. At the cellular level, SLs interfere with auxin effects on PIN polar targeting, constitutive PIN trafficking as well as clathrin-mediated endocytosis. Our results identify a non-transcriptional mechanism of SL action, uncoupling auxin feedback on PIN polarity and trafficking, thereby regulating vascular tissue formation and regeneration.

Funding

Category 1 - Australian Competitive Grants (this includes ARC, NHMRC)

History

Volume

11

Issue

1

Start Page

1

End Page

10

Number of Pages

10

eISSN

2041-1723

ISSN

2041-1723

Publisher

Springer Science and Business Media LLC

Publisher License

CC BY

Additional Rights

CC BY 4.0

Language

en

Peer Reviewed

  • Yes

Open Access

  • Yes

Acceptance Date

2020-06-15

Author Research Institute

  • Institute for Future Farming Systems

Era Eligible

  • Yes

Medium

Electronic

Journal

Nature Communications

Article Number

3508

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