LEAFY (LFY) est un facteur de transcription central pour le développement des plantes, en particulier pour la floraison chez les angiospermes. LFY est très conservée, même chez les espèces ne portant pas de fleurs. On dispose de nombreuses données génétiques sur LFY et son réseau de régulation chez la plante modèle Arabidopsis thaliana, mais les mécanismes moléculaires impliqués dans son fonctionnement ne sont pas entièrement élucidés. LFY possède deux domaines conservés : un domaine de liaison à l'ADN et un domaine de fonction inconnue en position N-terminal. L'objectif a été de comprendre le rôle du domaine N-terminal et d'étudier l'évolution de la spécificité de liaison à l'ADN de LFY. Nous avons obtenu la structure cristallographique du...
A subset of eukaryotic transcription factors (TFs) possess the ability to reprogram one cell type in...
International audienceThe transition from vegetative growth to flower formation is critical for the ...
Despite great advances in sequencing technologies, generating functional information for nonmodel or...
LEAFY (LFY) est un facteur de transcription central pour le développement des plantes, en particulie...
La formation des fleurs comprend trois étapes successives. Tout d'abord, un méristème, contenant les...
LEAFY (LFY) protein is a key regulator of floral development. Its gradually increased expression gov...
LEAFY (LFY) is a unique transcription factor, highly conserved within land plants. LFY directly regu...
Flowers are a key innovation in plant evolution and their origin remains a mystery. LEAFY(LFY) is a ...
LEAFY (LFY) est un facteur de transcription unique et très conservé chez les plantes terrestres. Il ...
Flower development is crucial for the reproductive success of plants. This developmental step requir...
International audienceThe LEAFY (LFY) gene of Arabidopsis and its homologs in other angiosperms enco...
SummaryThe transition from vegetative growth to flower formation is critical for the survival of flo...
The LEAFY (LFY) gene of Arabidopsis and its homologs in other angiosperms encode a unique plant-spec...
Understanding how molecular mechanisms can be linked to evolution of organism form is the founding t...
International audienceThe LEAFY (LFY) protein is a key regulator of flower development in angiosperm...
A subset of eukaryotic transcription factors (TFs) possess the ability to reprogram one cell type in...
International audienceThe transition from vegetative growth to flower formation is critical for the ...
Despite great advances in sequencing technologies, generating functional information for nonmodel or...
LEAFY (LFY) est un facteur de transcription central pour le développement des plantes, en particulie...
La formation des fleurs comprend trois étapes successives. Tout d'abord, un méristème, contenant les...
LEAFY (LFY) protein is a key regulator of floral development. Its gradually increased expression gov...
LEAFY (LFY) is a unique transcription factor, highly conserved within land plants. LFY directly regu...
Flowers are a key innovation in plant evolution and their origin remains a mystery. LEAFY(LFY) is a ...
LEAFY (LFY) est un facteur de transcription unique et très conservé chez les plantes terrestres. Il ...
Flower development is crucial for the reproductive success of plants. This developmental step requir...
International audienceThe LEAFY (LFY) gene of Arabidopsis and its homologs in other angiosperms enco...
SummaryThe transition from vegetative growth to flower formation is critical for the survival of flo...
The LEAFY (LFY) gene of Arabidopsis and its homologs in other angiosperms encode a unique plant-spec...
Understanding how molecular mechanisms can be linked to evolution of organism form is the founding t...
International audienceThe LEAFY (LFY) protein is a key regulator of flower development in angiosperm...
A subset of eukaryotic transcription factors (TFs) possess the ability to reprogram one cell type in...
International audienceThe transition from vegetative growth to flower formation is critical for the ...
Despite great advances in sequencing technologies, generating functional information for nonmodel or...