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WOX4 Imparts Auxin Responsiveness to Cambium Cells in Arabidopsis

Stefanie Suer, Javier Agusti, Pablo Sanchez, Martina Schwarz, Thomas Greb
Stefanie Suer
Gregor Mendel Institute of Molecular Plant Biology, Austrian Academy of Sciences, 1030 Vienna, Austria
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Javier Agusti
Gregor Mendel Institute of Molecular Plant Biology, Austrian Academy of Sciences, 1030 Vienna, Austria
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Pablo Sanchez
Gregor Mendel Institute of Molecular Plant Biology, Austrian Academy of Sciences, 1030 Vienna, Austria
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Martina Schwarz
Gregor Mendel Institute of Molecular Plant Biology, Austrian Academy of Sciences, 1030 Vienna, Austria
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Thomas Greb
Gregor Mendel Institute of Molecular Plant Biology, Austrian Academy of Sciences, 1030 Vienna, Austria
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  • For correspondence: thomas.greb@gmi.oeaw.ac.at

Published September 2011. DOI: https://doi.org/10.1105/tpc.111.087874

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  • © 2011 American Society of Plant Biologists. All rights reserved.

Abstract

Multipotent stem cell populations, the meristems, are fundamental for the indeterminate growth of plant bodies. One of these meristems, the cambium, is responsible for extended root and stem thickening. Strikingly, although the pivotal role of the plant hormone auxin in promoting cambium activity has been known for decades, the molecular basis of auxin responsiveness on the level of cambium cells has so far been elusive. Here, we reveal that auxin-dependent cambium stimulation requires the homeobox transcription factor WOX4. In Arabidopsis thaliana inflorescence stems, 1-N-naphthylphthalamic acid–induced auxin accumulation stimulates cambium activity in the wild type but not in wox4 mutants, although basal cambium activity is not abolished. This conclusion is confirmed by the analysis of cellular markers and genome-wide transcriptional profiling, which revealed only a small overlap between WOX4-dependent and cambium-specific genes. Furthermore, the receptor-like kinase PXY is required for a stable auxin-dependent increase in WOX4 mRNA abundance and the stimulation of cambium activity, suggesting a concerted role of PXY and WOX4 in auxin-dependent cambium stimulation. Thus, in spite of large anatomical differences, our findings uncover parallels between the regulation of lateral and apical plant meristems by demonstrating the requirement for a WOX family member for auxin-dependent regulation of lateral plant growth.

  • Received June 2, 2011.
  • Revised August 4, 2011.
  • Accepted September 6, 2011.
  • Published September 16, 2011.

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WOX4 Imparts Auxin Responsiveness to Cambium Cells in Arabidopsis
Stefanie Suer, Javier Agusti, Pablo Sanchez, Martina Schwarz, Thomas Greb
The Plant Cell Sep 2011, 23 (9) 3247-3259; DOI: 10.1105/tpc.111.087874

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WOX4 Imparts Auxin Responsiveness to Cambium Cells in Arabidopsis
Stefanie Suer, Javier Agusti, Pablo Sanchez, Martina Schwarz, Thomas Greb
The Plant Cell Sep 2011, 23 (9) 3247-3259; DOI: 10.1105/tpc.111.087874
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The Plant Cell Online: 23 (9)
The Plant Cell
Vol. 23, Issue 9
Sep 2011
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