The Dynamics of Cambial Stem Cell Activity

Urs Fischer, Melis Kucukoglu, Yrjö Eero Helariutta, Rishikesh P. Bhalerao

Research output: Contribution to journalReview Articlepeer-review

Abstract

Stem cell populations in meristematic tissues at distinct locations in the plant body provide the potency of continuous plant growth. Primary meristems, at the apices of the plant body, contribute mainly to the elongation of the main plant axes, whereas secondary meristems in lateral positions are responsible for the thickening of these axes. The stem cells of the vascular cambium-a secondary lateral meristem-produce the secondary phloem (bast) and secondary xylem (wood). The sites of primary and secondary growth are spatially separated, and mobile signals are expected to coordinate growth rates between apical and lateral stem cell populations. Although the underlying mechanisms have not yet been uncovered, it seems likely that hormones, peptides, and mechanical cues orchestrate primary and secondary growth. In this review, we highlight the current knowledge and recent discoveries of how cambial stem cell activity is regulated with foci on mobile signals and the response of cambial activity to environmental and stress factors.
Original languageEnglish
JournalAnnual Review of Plant Biology
Volume70
Pages (from-to)293-319
Number of pages27
ISSN1543-5008
DOIs
Publication statusPublished - 29 Apr 2019
MoE publication typeA2 Review article in a scientific journal

Fields of Science

  • ARABIDOPSIS
  • AUXIN POLAR TRANSPORT
  • BOX PROTEIN TIR1
  • CLE PEPTIDES
  • HYBRID ASPEN
  • JUVENILE WOOD
  • RECEPTOR KINASE
  • SECONDARY GROWTH
  • TENSION WOOD
  • WOOD FORMATION
  • auxin
  • cytokinin
  • gibberellin
  • peptides
  • stem cells
  • vascular cambium
  • 1183 Plant biology, microbiology, virology

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