Flowers develop from floral meristems, which harbor stem cells that support the growth of floral organs. The MADS domain transcription factor AGAMOUS (AG) plays a central role in floral patterning and is required not only for the specification of the two reproductive organ types, but also for termination of stem cell fate. Using a highly conserved cis-regulatory motif as bait, we identified the bZIP transcription factor PERIANTHIA (PAN) as a direct regulator of AG in Arabidopsis. PAN and AG expression domains overlap, and mutations in either the PAN-binding site or PAN itself abolish the activity of a reporter devoid of redundant elements. Whereas under long-day conditions pan mutants have merely altered floral organ number, they display in...
International audienceBackground and Aims The morphological variability of the flower in angiosperms...
The Arabidopsis TGA transcription factor (TF) PERIANTHIA (PAN) regulates the formation of the floral...
The Arabidopsis MADS box gene AGAMOUS (AG) controls reproductive organ identity and floral meristem ...
Flowers develop from floral meristems, which harbor stem cells that support the growth of floral org...
In Arabidopsis, the population of stem cells present in young flower buds is lost after the producti...
As sessile organisms, plants are exposed to extreme variations in environmental conditions over the ...
The homeotic gene AGAMOUS (AG) has dual roles in specifying organ fate and limiting stem cell prolif...
The homeotic gene AGAMOUS (AG) plays a central role during Arabidopsis thaliana flower development, ...
AbstractThe homeotic gene AGAMOUS (AG) has dual roles in specifying organ fate and limiting stem cel...
OAK-B135 The homeotic gene AGAMOUS (AG) has dual roles in specifying floral organ fate and limiting ...
Mutations in the PERIANTHIA (PAN) gene ofArabidopsis thaliana specifically transform flowers from te...
Mutations in the PERIANTHIA (PAN) gene ofArabidopsis thaliana specifically transform flowers from te...
The gynoecium is the female reproductive structure of angiosperm flowers. In Arabidopsis thaliana th...
AbstractThe homeotic gene AGAMOUS (AG) has dual roles in specifying organ fate and limiting stem cel...
The Arabidopsis TGA transcription factor (TF) PERIANTHIA (PAN) regulates the formation of the floral...
International audienceBackground and Aims The morphological variability of the flower in angiosperms...
The Arabidopsis TGA transcription factor (TF) PERIANTHIA (PAN) regulates the formation of the floral...
The Arabidopsis MADS box gene AGAMOUS (AG) controls reproductive organ identity and floral meristem ...
Flowers develop from floral meristems, which harbor stem cells that support the growth of floral org...
In Arabidopsis, the population of stem cells present in young flower buds is lost after the producti...
As sessile organisms, plants are exposed to extreme variations in environmental conditions over the ...
The homeotic gene AGAMOUS (AG) has dual roles in specifying organ fate and limiting stem cell prolif...
The homeotic gene AGAMOUS (AG) plays a central role during Arabidopsis thaliana flower development, ...
AbstractThe homeotic gene AGAMOUS (AG) has dual roles in specifying organ fate and limiting stem cel...
OAK-B135 The homeotic gene AGAMOUS (AG) has dual roles in specifying floral organ fate and limiting ...
Mutations in the PERIANTHIA (PAN) gene ofArabidopsis thaliana specifically transform flowers from te...
Mutations in the PERIANTHIA (PAN) gene ofArabidopsis thaliana specifically transform flowers from te...
The gynoecium is the female reproductive structure of angiosperm flowers. In Arabidopsis thaliana th...
AbstractThe homeotic gene AGAMOUS (AG) has dual roles in specifying organ fate and limiting stem cel...
The Arabidopsis TGA transcription factor (TF) PERIANTHIA (PAN) regulates the formation of the floral...
International audienceBackground and Aims The morphological variability of the flower in angiosperms...
The Arabidopsis TGA transcription factor (TF) PERIANTHIA (PAN) regulates the formation of the floral...
The Arabidopsis MADS box gene AGAMOUS (AG) controls reproductive organ identity and floral meristem ...