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ZEITLUPE facilitates the rhythmic movements of Nicotiana attenuata flowers

  • Lucas Cortés Llorca
  • , Ran Li
  • , Felipe Yon
  • , Martin Schäfer
  • , Rayko Halitschke
  • , Christelle A.M. Robert
  • , Sang Gyu Kim
  • , Ian T. Baldwin
  • Max Planck Institute for Chemical Ecology
  • Institute of Insect Sciences
  • University of Münster
  • Universität Bern
  • Korea Advanced Institute of Science and Technology

Research output: Contribution to journalArticlepeer-review

2 Scopus citations

Abstract

Circadian organ movements are ubiquitous in plants. These rhythmic outputs are thought to be regulated by the circadian clock and auxin signalling, but the underlying mechanisms have not been clarified. Flowers of Nicotiana attenuata change their orientation during the daytime through a 140° arc to balance the need for pollinators and the protection of their reproductive organs. This rhythmic trait is under the control of the circadian clock and results from bending and re-straightening movements of the pedicel, stems that connect flowers to the inflorescence. Using an explant system that allowed pedicel growth and curvature responses to be characterized with high spatial and temporal resolution, we demonstrated that this movement is organ autonomous and mediated by auxin. Changes in the growth curvature of the pedicel are accompanied by an auxin gradient and dorsiventral asymmetry in auxin-dependent transcriptional responses; application of auxin transport inhibitors influenced the normal movements of this organ. Silencing the expression of the circadian clock component ZEITLUPE (ZTL) arrested changes in the growth curvature of the pedicel and altered auxin signalling and responses. IAA19-like, an Aux/IAA transcriptional repressor that is circadian regulated and differentially expressed between opposite tissues of the pedicel, and therefore possibly involved in the regulation of changes in organ curvature, physically interacted with ZTL. Together, these results are consistent with a direct link between the circadian clock and the auxin signalling pathway in the regulation of this rhythmic floral movement.

Original languageEnglish
Pages (from-to)308-322
Number of pages15
JournalPlant Journal
Volume103
Issue number1
DOIs
StatePublished - 1 Jul 2020

Keywords

  • Nicotiana attenuata
  • auxin signalling
  • circadian clock
  • plant movement

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