In plants, MYB transcription factors play important roles in many developmental processes including cell cycle progression, cell differentiation, and lateral organ polarity. It is shown here that the R2R3-MYB AtMYB11 gene is expressed in root and shoot meristems and also in young still meristematic leaf and flower primordia of Arabidopsis. Knock-out atmyb11-I mutants and RNAi plants germinate faster, show a faster hypocotyl and primary root elongation, develop more lateral and adventitious roots, show faster development of the inflorescence, and initiate more lateral inflorescences and fruits than wild-type plants. The opposite phenotype was displayed by plants overexpressing AtMYB11. De novo formation of root meristemoids and, consequently, macroscopic roots, from thin cell layers cultured in vitro was enhanced in explants from atmyb11-I and reduced in those from lines overexpressing AtMYB11. These findings indicate that AtMYB11 modulates overall growth in plants by reducing the proliferation activity of meristematic cells and delaying plant development.

Petroni, K., Falasca, G., Calvenzani, V., Allegra, D., Stolfi, C., Fabrizi, L., et al. (2008). The AtMYB11 gene from Arabidopsis is expressed in meristematic cells and modulates growth in planta and organogenesis in vitro. JOURNAL OF EXPERIMENTAL BOTANY, 59(6), 1201-1213 [10.1093/jxb/ern027].

The AtMYB11 gene from Arabidopsis is expressed in meristematic cells and modulates growth in planta and organogenesis in vitro

Stolfi, C.;
2008-01-01

Abstract

In plants, MYB transcription factors play important roles in many developmental processes including cell cycle progression, cell differentiation, and lateral organ polarity. It is shown here that the R2R3-MYB AtMYB11 gene is expressed in root and shoot meristems and also in young still meristematic leaf and flower primordia of Arabidopsis. Knock-out atmyb11-I mutants and RNAi plants germinate faster, show a faster hypocotyl and primary root elongation, develop more lateral and adventitious roots, show faster development of the inflorescence, and initiate more lateral inflorescences and fruits than wild-type plants. The opposite phenotype was displayed by plants overexpressing AtMYB11. De novo formation of root meristemoids and, consequently, macroscopic roots, from thin cell layers cultured in vitro was enhanced in explants from atmyb11-I and reduced in those from lines overexpressing AtMYB11. These findings indicate that AtMYB11 modulates overall growth in plants by reducing the proliferation activity of meristematic cells and delaying plant development.
2008
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore BIO/01 - BOTANICA GENERALE
English
arabidopsis
AtMYB11
growth rate
meristems
thin cell layers
Arabidopsis
Arabidopsis Proteins
Gene Expression Regulation, Plant
Gene Silencing
Genes, Reporter
Hypocotyl
Meristem
Plant Roots
Plants, Genetically Modified
RNA Interference
Transcription Factors
Petroni, K., Falasca, G., Calvenzani, V., Allegra, D., Stolfi, C., Fabrizi, L., et al. (2008). The AtMYB11 gene from Arabidopsis is expressed in meristematic cells and modulates growth in planta and organogenesis in vitro. JOURNAL OF EXPERIMENTAL BOTANY, 59(6), 1201-1213 [10.1093/jxb/ern027].
Petroni, K; Falasca, G; Calvenzani, V; Allegra, D; Stolfi, C; Fabrizi, L; Altamura, Mm; Tonelli, C
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/253622
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