Proper floral patterning, including the number and position of floral organs in most plant species, is tightly controlled by the precise regulation of the persistence and size of floral meristems (FMs). In Arabidopsis, two known feedback pathways, one composed of WUSCHEL (WUS) and CLAVATA3 (CLV3) and the other composed of AGAMOUS (AG) and WUS, spatially and temporally control floral stem cells, respectively. However, mounting evidence suggests that other factors, including phytohormones, are also involved in floral meristem regulation. Here, we show that the boundary gene SUPERMAN (SUP) bridges floral organogenesis and floral meristem determinacy in another pathway that involves auxin signaling. SUP interacts with components of polycomb rep...
AbstractFloral meristems and shoot apical meristems (SAMs) are homologous, self-maintaining stem cel...
OAK-B135 The homeotic gene AGAMOUS (AG) has dual roles in specifying floral organ fate and limiting ...
The homeotic gene AGAMOUS (AG) has dual roles in specifying organ fate and limiting stem cell prolif...
Proper floral patterning, including the number and position of floral organs in most plant species, ...
During the course of flower development, floral homeotic genes are expressed in defined concentric r...
The Arabidopsis gene SUPERMAN (SUP) is necessary for the proper spatial development of reproductive ...
During the course of flower development, floral homeotic genes are expressed in defined concentric r...
The floral regulatory gene SUPERMAN (SUP) encodes a C2H2 type zinc finger protein that is required f...
AbstractStudies of floral organ development in two dicotyledonous plants, Arabidopsis thaliana and A...
Studies of floral organ development in two dicotyledonous plants, Arabidopsis thaliana and Antirrhin...
Arabidopsis thaliana SUPERMAN (SUP) plays an important role during flower development by maintaining...
Arabidopsis thaliana superman (SUP) plays an important role during flower development by maintaining...
The molecular and genetic networks underlying the determination of floral organ identity are well st...
Molecular and genetic analyses have shown that the Arabidopsis thaliana gene SUPERMAN (SUP) has at l...
Molecular and genetic analyses have shown that the Arabidopsis thaliana gene SUPERMAN (SUP) has at l...
AbstractFloral meristems and shoot apical meristems (SAMs) are homologous, self-maintaining stem cel...
OAK-B135 The homeotic gene AGAMOUS (AG) has dual roles in specifying floral organ fate and limiting ...
The homeotic gene AGAMOUS (AG) has dual roles in specifying organ fate and limiting stem cell prolif...
Proper floral patterning, including the number and position of floral organs in most plant species, ...
During the course of flower development, floral homeotic genes are expressed in defined concentric r...
The Arabidopsis gene SUPERMAN (SUP) is necessary for the proper spatial development of reproductive ...
During the course of flower development, floral homeotic genes are expressed in defined concentric r...
The floral regulatory gene SUPERMAN (SUP) encodes a C2H2 type zinc finger protein that is required f...
AbstractStudies of floral organ development in two dicotyledonous plants, Arabidopsis thaliana and A...
Studies of floral organ development in two dicotyledonous plants, Arabidopsis thaliana and Antirrhin...
Arabidopsis thaliana SUPERMAN (SUP) plays an important role during flower development by maintaining...
Arabidopsis thaliana superman (SUP) plays an important role during flower development by maintaining...
The molecular and genetic networks underlying the determination of floral organ identity are well st...
Molecular and genetic analyses have shown that the Arabidopsis thaliana gene SUPERMAN (SUP) has at l...
Molecular and genetic analyses have shown that the Arabidopsis thaliana gene SUPERMAN (SUP) has at l...
AbstractFloral meristems and shoot apical meristems (SAMs) are homologous, self-maintaining stem cel...
OAK-B135 The homeotic gene AGAMOUS (AG) has dual roles in specifying floral organ fate and limiting ...
The homeotic gene AGAMOUS (AG) has dual roles in specifying organ fate and limiting stem cell prolif...