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Arabidopsis SHR and SCR transcription factors and AUX1 auxin influx carrier control the switch between adventitious rooting and xylogenesis in planta and in in vitro cultured thin cell layers.
Della Rovere, F; Fattorini, L; D'Angeli, S; Veloccia, A; Del Duca, S; Cai, G; Falasca, G; Altamura, M M.
Afiliação
  • Della Rovere F; Department of Environmental Biology, Sapienza University of Rome, Italy, Department of Biological, Geological and Environmental Sciences, University of Bologna, Italy and Department of Life Sciences, University of Siena, Italy.
  • Fattorini L; Department of Environmental Biology, Sapienza University of Rome, Italy, Department of Biological, Geological and Environmental Sciences, University of Bologna, Italy and Department of Life Sciences, University of Siena, Italy.
  • D'Angeli S; Department of Environmental Biology, Sapienza University of Rome, Italy, Department of Biological, Geological and Environmental Sciences, University of Bologna, Italy and Department of Life Sciences, University of Siena, Italy.
  • Veloccia A; Department of Environmental Biology, Sapienza University of Rome, Italy, Department of Biological, Geological and Environmental Sciences, University of Bologna, Italy and Department of Life Sciences, University of Siena, Italy.
  • Del Duca S; Department of Environmental Biology, Sapienza University of Rome, Italy, Department of Biological, Geological and Environmental Sciences, University of Bologna, Italy and Department of Life Sciences, University of Siena, Italy.
  • Cai G; Department of Environmental Biology, Sapienza University of Rome, Italy, Department of Biological, Geological and Environmental Sciences, University of Bologna, Italy and Department of Life Sciences, University of Siena, Italy.
  • Falasca G; Department of Environmental Biology, Sapienza University of Rome, Italy, Department of Biological, Geological and Environmental Sciences, University of Bologna, Italy and Department of Life Sciences, University of Siena, Italy.
  • Altamura MM; Department of Environmental Biology, Sapienza University of Rome, Italy, Department of Biological, Geological and Environmental Sciences, University of Bologna, Italy and Department of Life Sciences, University of Siena, Italy mariamaddalena.altamura@uniroma1.it.
Ann Bot ; 115(4): 617-28, 2015 Mar.
Article em En | MEDLINE | ID: mdl-25617411
ABSTRACT
BACKGROUND AND

AIMS:

Adventitious roots (ARs) are essential for vegetative propagation. The Arabidopsis thaliana transcription factors SHORT ROOT (SHR) and SCARECROW (SCR) affect primary/lateral root development, but their involvement in AR formation is uncertain. LAX3 and AUX1 auxin influx carriers contribute to primary/lateral root development. LAX3 expression is regulated by SHR, and LAX3 contributes to AR tip auxin maximum. In contrast, AUX1 involvement in AR development is unknown. Xylogenesis is induced by auxin plus cytokinin as is AR formation, but the genes involved are largely unknown. Stem thin cell layers (TCLs) form ARs and undergo xylogenesis under the same auxin plus cytokinin input. The aim of this research was to investigate SHR, SCR, AUX1 and LAX3 involvement in AR formation and xylogenesis in intact hypocotyls and stem TCLs in arabidopsis.

METHODS:

Hypocotyls of scr-1, shr-1, lax3, aux1-21 and lax3/aux1-21 Arabidopsis thaliana null mutant seedlings grown with or without auxin plus cytokinin were examined histologically, as were stem TCLs cultured with auxin plus cytokinin. SCR and AUX1 expression was monitored using pSCRGFP and AUX1GUS lines, and LAX3 expression and auxin localization during xylogenesis were monitored by using LAX3GUS and DR5GUS lines. KEY

RESULTS:

AR formation was inhibited in all mutants, except lax3. SCR was expressed in pericycle anticlinally derived AR-forming cells of intact hypocotyls, and in cell clumps forming AR meristemoids of TCLs. The apex was anomalous in shr and scr ARs. In all mutant hypocotyls, the pericycle divided periclinally to produce xylogenesis. Xylary element maturation was favoured by auxin plus cytokinin in shr and aux1-21. Xylogenesis was enhanced in TCLs, and in aux1-21 and shr in particular. AUX1 was expressed before LAX3, i.e. in the early derivatives leading to either ARs or xylogenesis.

CONCLUSIONS:

AR formation and xylogenesis are developmental programmes that are inversely related, but they involve fine-tuning by the same proteins, namely SHR, SCR and AUX1. Pericycle activity is central for the equilibrium between xylary development and AR formation in the hypocotyl, with a role for AUX1 in switching between, and balancing of, the two developmental programmes.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Fatores de Transcrição / Arabidopsis / Proteínas de Arabidopsis Idioma: En Revista: Ann Bot Ano de publicação: 2015 Tipo de documento: Article País de afiliação: Itália

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Fatores de Transcrição / Arabidopsis / Proteínas de Arabidopsis Idioma: En Revista: Ann Bot Ano de publicação: 2015 Tipo de documento: Article País de afiliação: Itália