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PMID: 21149702 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Spatio-temporal sequence of cross-regulatory events in root meristem growth.

Scacchi E, Salinas P, Gujas B, Santuari L, Krogan N, Ragni L, Berleth T, Hardtke CS

Abstract

A central question in developmental biology is how multicellular organisms coordinate cell division and differentiation to determine organ size. In Arabidopsis roots, this balance is controlled by cytokinin-induced expression of SHORT HYPOCOTYL 2 (SHY2) in the so-called transition zone of the meristem, where SHY2 negatively regulates auxin response factors (ARFs) by protein-protein interaction. The resulting down-regulation of PIN-FORMED (PIN) auxin efflux carriers is considered the key event in promoting differentiation of meristematic cells. Here we show that this regulation involves additional, intermediary factors and is spatio-temporally constrained. We found that the described cytokinin-auxin crosstalk antagonizes BREVIS RADIX (BRX) activity in the developing protophloem. BRX is an auxin-responsive target of the prototypical ARF MONOPTEROS (MP), a key promoter of vascular development, and transiently enhances PIN3 expression to promote meristem growth in young roots. At later stages, cytokinin induction of SHY2 in the vascular transition zone restricts BRX expression to down-regulate PIN3 and thus limit meristem growth. Interestingly, proper SHY2 expression requires BRX, which could reflect feedback on the auxin responsiveness of SHY2 because BRX protein can directly interact with MP, likely acting as a cofactor. Thus, cross-regulatory antagonism between BRX and SHY2 could determine ARF activity in the protophloem. Our data suggest a model in which the regulatory interactions favor BRX expression in the early proximal meristem and SHY2 prevails because of supplementary cytokinin induction in the later distal meristem. The complex equilibrium of this regulatory module might represent a universal switch in the transition toward differentiation in various developmental contexts.

MeSH Terms
Arabidopsis/genetics,growth & development,metabolism Arabidopsis Proteins/genetics,metabolism Blotting, Western Cytokinins/pharmacology DNA-Binding Proteins/genetics,metabolism Gene Expression Regulation, Developmental/drug effects Gene Expression Regulation, Plant/drug effects Glucuronidase/genetics,metabolism Green Fluorescent Proteins/genetics,metabolism Indoleacetic Acids/pharmacology Meristem/genetics,growth & development,metabolism Microscopy, Confocal Mutation Nuclear Proteins/genetics,metabolism Plant Growth Regulators/pharmacology Plant Roots/genetics,growth & development,metabolism Plants, Genetically Modified Reverse Transcriptase Polymerase Chain Reaction Time Factors Transcription Factors/genetics,metabolism
Chemicals
Arabidopsis Proteins BREVIS RADIX protein, Arabidopsis Cytokinins DNA-Binding Proteins Indoleacetic Acids MONOPTEROS protein, Arabidopsis Nuclear Proteins PIN3 protein, Arabidopsis Plant Growth Regulators SHY2 protein, Arabidopsis Transcription Factors Green Fluorescent Proteins Glucuronidase
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Scacchi Emanuele
Department of Plant Molecular Biology, University of Lausanne, CH-1015 Lausanne, Switzerland.
Salinas Paula
Gujas Bojan
Santuari Luca
Krogan Naden
Ragni Laura
Berleth Thomas
Hardtke Christian S
References (32)
32 references, click to expand
  1. MONOPTEROS controls embryonic root initiation by regulating a mobile transcription factor.
    Nature. 2010 Apr 8;464(7290):913-6 PMID: 20220754
  2. Auxin response factors.
    Curr Opin Plant Biol. 2007 Oct;10(5):453-60 PMID: 17900969
  3. Auxin transport is sufficient to generate a maximum and gradient guiding root growth.
    Nature. 2007 Oct 25;449(7165):1008-13 PMID: 17960234
  4. Auxin: the looping star in plant development.
    Annu Rev Plant Biol. 2008;59:443-65 PMID: 18444904
  5. Cytokinins determine Arabidopsis root-meristem size by controlling cell differentiation.
    Curr Biol. 2007 Apr 17;17(8):678-82 PMID: 17363254
  6. Cytokinin-auxin crosstalk.
    Trends Plant Sci. 2009 Oct;14(10):557-62 PMID: 19734082
  7. A hyperactive quantitative trait locus allele of Arabidopsis BRX contributes to natural variation in root growth vigor.
    Proc Natl Acad Sci U S A. 2010 May 4;107(18):8475-80 PMID: 20404146
  8. HY5 stability and activity in arabidopsis is regulated by phosphorylation in its COP1 binding domain.
    EMBO J. 2000 Sep 15;19(18):4997-5006 PMID: 10990463
  9. Natural genetic variation in Arabidopsis identifies BREVIS RADIX, a novel regulator of cell proliferation and elongation in the root.
    Genes Dev. 2004 Mar 15;18(6):700-14 PMID: 15031265
  10. Functional redundancy of PIN proteins is accompanied by auxin-dependent cross-regulation of PIN expression.
    Development. 2005 Oct;132(20):4521-31 PMID: 16192309
  11. Interdependency of brassinosteroid and auxin signaling in Arabidopsis.
    PLoS Biol. 2004 Sep;2(9):E258 PMID: 15328536
  12. Brassinosteroids stimulate plant tropisms through modulation of polar auxin transport in Brassica and Arabidopsis.
    Plant Cell. 2005 Oct;17(10):2738-53 PMID: 16141452
  13. The rate of cell differentiation controls the Arabidopsis root meristem growth phase.
    Curr Biol. 2010 Jun 22;20(12):1138-43 PMID: 20605455
  14. Dynamic, auxin-responsive plasma membrane-to-nucleus movement of Arabidopsis BRX.
    Development. 2009 Jun;136(12):2059-67 PMID: 19465596
  15. Protophloem differentiation in early Arabidopsis thaliana development.
    Plant Cell Physiol. 2007 Jan;48(1):97-109 PMID: 17135286
  16. A gene expression map of the Arabidopsis root.
    Science. 2003 Dec 12;302(5652):1956-60 PMID: 14671301
  17. Flowering as a condition for xylem expansion in Arabidopsis hypocotyl and root.
    Curr Biol. 2008 Mar 25;18(6):458-63 PMID: 18356049
  18. High-resolution whole-mount imaging of three-dimensional tissue organization and gene expression enables the study of Phloem development and structure in Arabidopsis.
    Plant Cell. 2008 Jun;20(6):1494-503 PMID: 18523061
  19. Developmental specificity of auxin response by pairs of ARF and Aux/IAA transcriptional regulators.
    EMBO J. 2005 May 18;24(10):1874-85 PMID: 15889151
  20. BRX mediates feedback between brassinosteroid levels and auxin signalling in root growth.
    Nature. 2006 Sep 28;443(7110):458-61 PMID: 17006513
  21. An auxin-dependent distal organizer of pattern and polarity in the Arabidopsis root.
    Cell. 1999 Nov 24;99(5):463-72 PMID: 10589675
  22. Local, efflux-dependent auxin gradients as a common module for plant organ formation.
    Cell. 2003 Nov 26;115(5):591-602 PMID: 14651850
  23. Cellular organisation of the Arabidopsis thaliana root.
    Development. 1993 Sep;119(1):71-84 PMID: 8275865
  24. The Arabidopsis gene MONOPTEROS encodes a transcription factor mediating embryo axis formation and vascular development.
    EMBO J. 1998 Mar 2;17(5):1405-11 PMID: 9482737
  25. Brassinosteroid transport.
    J Exp Bot. 2008;59(1):17-24 PMID: 17709326
  26. BRX promotes Arabidopsis shoot growth.
    New Phytol. 2010 Oct;188(1):23-9 PMID: 20649916
  27. Transcriptional auxin-brassinosteroid crosstalk: who's talking?
    Bioessays. 2007 Nov;29(11):1115-23 PMID: 17935219
  28. Regulation of preprocambial cell state acquisition by auxin signaling in Arabidopsis leaves.
    Development. 2009 Oct;136(19):3235-46 PMID: 19710171
  29. Brassinosteroids interact with auxin to promote lateral root development in Arabidopsis.
    Plant Physiol. 2004 Apr;134(4):1624-31 PMID: 15047895
  30. The short-rooted phenotype of the brevis radix mutant partly reflects root abscisic acid hypersensitivity.
    Plant Physiol. 2009 Apr;149(4):1917-28 PMID: 19201913
  31. APL regulates vascular tissue identity in Arabidopsis.
    Nature. 2003 Nov 13;426(6963):181-6 PMID: 14614507
  32. A genetic framework for the control of cell division and differentiation in the root meristem.
    Science. 2008 Nov 28;322(5906):1380-4 PMID: 19039136
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
1091-6490
Published
2010-12-28
Epub
2010-00-13
Pages
22734-9
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC3012524
Subset
IM
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