4.8 Article

Local and Systemic Effects of Brassinosteroid Perception in Developing Phloem

期刊

CURRENT BIOLOGY
卷 30, 期 9, 页码 1626-+

出版社

CELL PRESS
DOI: 10.1016/j.cub.2020.02.029

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资金

  1. Swiss National Science Foundation [31003A_166394, 310030B_185379, GR 5009/1-1]
  2. Deutsche Forschungsgemeinschaft (DFG)
  3. [BRI1-GFP]
  4. Swiss National Science Foundation (SNF) [310030B_185379, 31003A_166394] Funding Source: Swiss National Science Foundation (SNF)

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The plant vasculature is an essential adaptation to terrestrial growth. Its phloem component permits efficient transfer of photosynthates between source and sink organs but also transports signals that systemically coordinate physiology and development. Here, we provide evidence that developing phloem orchestrates cellular behavior of adjacent tissues in the growth apices of plants, the meristems. Arabidopsis thaliana plants that lack the three receptor kinases BRASSINOSTEROID INSENSITIVE 1 (BRI1), BRI1-LIKE 1 (BRL1), and BRL3 (bri(3) mutants) can no longer sense brassinosteroid phytohormones and display severe dwarfism as well as patterning and differentiation defects, including disturbed phloem development. We found that, despite the ubiquitous expression of brassinosteroid receptors in growing plant tissues, exclusive expression of the BRI1 receptor in developing phloem is sufficient to systemically correct cellular growth and patterning defects that underlie the bri(3) phenotype. Although this effect is brassinosteroid-dependent, it cannot be reproduced with dominant versions of known downstream effectors of BRI1 signaling and therefore possibly involves a non-canonical signaling output. Interestingly, the rescue of bri(3) by phloem-specific BRI1 expression is associated with antagonism toward phloem-specific CLAVATA3/EMBRYO SURROUNDING REGION-RELATED 45 (CLE45) peptide signaling in roots. Hyperactive CLE45 signaling causes phloem sieve element differentiation defects, and consistently, knockout of CLE45 perception in bri(3) background restores proper phloem development. However, bri(3) dwarfism is retained in such lines. Our results thus reveal local and systemic effects of brassinosteroid perception in the phloem: whereas it locally antagonizes CLE45 signaling to permit phloem differentiation, it systemically instructs plant organ formation via a phloem-derived, non-cell-autonomous signal.

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