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A Dof-CLE circuit controls phloem organization.

Pingping QianWen SongMiki Zaizen-IidaSawa KumeGuodong WangYe ZhangKaori Kinoshita-TsujimuraJijie ChaiTatsuo Kakimoto
Published in: Nature plants (2022)
The phloem consists of sieve elements (SEs) and companion cells (CCs). Here we show that Dof-class transcription factors preferentially expressed in the phloem (phloem-Dofs) are not only necessary and sufficient for SE and CC differentiation, but also induce negative regulators of phloem development, CLAVATA3/EMBRYO SURROUNDING REGION-RELATED25 (CLE25), CLE26 and CLE45 secretory peptides. CLEs were perceived by BARELY ANY MERISTEM (BAM)-class receptors and CLAVATA3 INSENSITIVE RECEPTOR KINASE (CIK) co-receptors, and post-transcriptionally decreased phloem-Dof proteins and repressed SE and CC formation. Multiple mutations in CLE-, BAM- or CIK-class genes caused ectopic formation of SEs and CCs, producing an SE/CC cluster at each phloem region. We propose that while phloem-Dofs induce phloem cell formation, they inhibit excess phloem cell formation by inducing CLEs. Normal-positioned SE and CC precursor cells appear to overcome the effect of CLEs by reinforcing the production of phloem-Dofs through a positive feedback transcriptional regulation.
Keyphrases
  • transcription factor
  • induced apoptosis
  • single cell
  • cell cycle arrest
  • cell therapy
  • physical activity
  • pregnant women
  • gene expression
  • oxidative stress
  • bone marrow
  • cell death