BACKGROUND: Throughout their lives plants produce new organs from groups of pluripotent cells called meristems, located at the tips of the shoot and the root. The size of the shoot meristem is tightly controlled by a feedback loop, which involves the homeodomain transcription factor WUSCHEL (WUS) and the CLAVATA (CLV) proteins. This regulatory circuit is further fine-tuned by morphogenic signals such as hormones and sugars. RESULTS: Here we show that a family of four plant-specific proteins, encoded by the FANTASTIC FOUR (FAF) genes, has the potential to regulate shoot meristem size in Arabidopsis thaliana. FAF2 and FAF4 are expressed in the centre of the shoot meristem, overlapping with the site of WUS expression. Consistent with a regulat...
Models for the control of above-ground plant architectures show how meristems can be programmed to b...
AbstractThe higher-plant shoot meristem is a dynamic structure whose maintenance depends on the coor...
In the model plant Arabidopsis thaliana, the zinc-finger transcription factor KNUCKLES (KNU) plays a...
Background: Throughout their lives plants produce new organs from groups of pluripotent cells called...
Abstract Background Throughout their lives plants produce new organs from groups of pluripotent cell...
Plant meristems are responsible for the generation of all plant tissues and organs. Here we show tha...
The homeotic gene AGAMOUS (AG) has dual roles in specifying organ fate and limiting stem cell prolif...
Plants continuously maintain pools of totipotent stem cells in their apical meristems from which ela...
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 ...
The shoot apical meristem, a small dome-shaped structure at the shoot apex of higher plants, is esta...
The aerial plant body is derived from undifferentiated cells in the shoot apical meristem that in Ar...
Plant architecture is dictated by precise control of meristematic activity. In the shoot, an imbalan...
One of the most significant features of plant development is the way in which it can be elaborated a...
The ability to initiate organs throughout the lifecycle is a unique feature of plant development tha...
Models for the control of above-ground plant architectures show how meristems can be programmed to b...
AbstractThe higher-plant shoot meristem is a dynamic structure whose maintenance depends on the coor...
In the model plant Arabidopsis thaliana, the zinc-finger transcription factor KNUCKLES (KNU) plays a...
Background: Throughout their lives plants produce new organs from groups of pluripotent cells called...
Abstract Background Throughout their lives plants produce new organs from groups of pluripotent cell...
Plant meristems are responsible for the generation of all plant tissues and organs. Here we show tha...
The homeotic gene AGAMOUS (AG) has dual roles in specifying organ fate and limiting stem cell prolif...
Plants continuously maintain pools of totipotent stem cells in their apical meristems from which ela...
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 ...
The shoot apical meristem, a small dome-shaped structure at the shoot apex of higher plants, is esta...
The aerial plant body is derived from undifferentiated cells in the shoot apical meristem that in Ar...
Plant architecture is dictated by precise control of meristematic activity. In the shoot, an imbalan...
One of the most significant features of plant development is the way in which it can be elaborated a...
The ability to initiate organs throughout the lifecycle is a unique feature of plant development tha...
Models for the control of above-ground plant architectures show how meristems can be programmed to b...
AbstractThe higher-plant shoot meristem is a dynamic structure whose maintenance depends on the coor...
In the model plant Arabidopsis thaliana, the zinc-finger transcription factor KNUCKLES (KNU) plays a...