Background: The plant-specific transcriptional activator LEAFY (LFY) is a central regulator of the transition to reproductive development in Arabidopsis. LFY has a second, later role in the induction of floral homeotic gene expression. Available data suggests that, while LFY activity is controlled via interaction with tissue-specific coactivators, other mechanisms exist that regulate LFY activity, the identity of which are not known. Results: We have identified a novel component in the temporal control of the switch from vegetative to reproductive development in Arabidopsis thaliana. The SPLAYED (SYD) gene product acts with LFY to regulate shoot apical meristem identity. SYD is also involved in the regulation of floral homeotic gene expr...
Chromatin remodeling is emerging as a central mechanism for patterning and differentiation in multic...
The switch from producing vegetative structures--branches and leaves--to producing reproductive stru...
SummaryWhen to form flowers is a developmental decision that profoundly impacts the fitness of flowe...
Background: The plant-specific transcriptional activator LEAFY (LFY) is a central regulator of the t...
AbstractBackground: The plant-specific transcriptional activator LEAFY (LFY) is a central regulator ...
The transition from vegetative growth to flower formation is critical for the survival of flowering ...
SummaryThe transition from vegetative growth to flower formation is critical for the survival of flo...
International audienceThe transition from vegetative growth to flower formation is critical for the ...
International audienceThe Arabidopsis LEAFY (LFY) transcription factor is a key regulator of floral ...
Sarnowski TJ, Ríos G, Jásik J, et al. SWI3 subunits of putative SWI/SNF chromatin-remodeling complex...
The switch from producing vegetative structures--branches and leaves--to producing reproductive stru...
The switch from producing vegetative structures—branches and leaves—to producing reproductive struct...
The development of flower meristems and fruits are two extremely important agronomical traits. MADS-...
The plant specific transcription factor LEAFY (LFY) plays a pivotal role in the developmental switch...
Leaves start to develop at the peripheral zone of the shoot apical meristem. Thereafter, symmetric a...
Chromatin remodeling is emerging as a central mechanism for patterning and differentiation in multic...
The switch from producing vegetative structures--branches and leaves--to producing reproductive stru...
SummaryWhen to form flowers is a developmental decision that profoundly impacts the fitness of flowe...
Background: The plant-specific transcriptional activator LEAFY (LFY) is a central regulator of the t...
AbstractBackground: The plant-specific transcriptional activator LEAFY (LFY) is a central regulator ...
The transition from vegetative growth to flower formation is critical for the survival of flowering ...
SummaryThe transition from vegetative growth to flower formation is critical for the survival of flo...
International audienceThe transition from vegetative growth to flower formation is critical for the ...
International audienceThe Arabidopsis LEAFY (LFY) transcription factor is a key regulator of floral ...
Sarnowski TJ, Ríos G, Jásik J, et al. SWI3 subunits of putative SWI/SNF chromatin-remodeling complex...
The switch from producing vegetative structures--branches and leaves--to producing reproductive stru...
The switch from producing vegetative structures—branches and leaves—to producing reproductive struct...
The development of flower meristems and fruits are two extremely important agronomical traits. MADS-...
The plant specific transcription factor LEAFY (LFY) plays a pivotal role in the developmental switch...
Leaves start to develop at the peripheral zone of the shoot apical meristem. Thereafter, symmetric a...
Chromatin remodeling is emerging as a central mechanism for patterning and differentiation in multic...
The switch from producing vegetative structures--branches and leaves--to producing reproductive stru...
SummaryWhen to form flowers is a developmental decision that profoundly impacts the fitness of flowe...