During the course of flower development, floral homeotic genes are expressed in defined concentric regions of floral meristems called whorls. The SUPERMAN (SUP, also called FLO10) gene, which encodes a C2H2-type zinc finger protein, is involved in maintenance of the stamen/carpel whorl boundary (the boundary between whorl 3 and whorl 4) in Arabidopsis. Here, we show that the regulation of SUP expression in floral meristems is complex, consisting of two distinct phases, initiation and maintenance. The floral meristem identity gene LEAFY (LFY) plays a role in the initiation phase through at least two pathways, which differ from each other in the involvement of two homeotic genes, APETALA3 (AP3) and PISTILLATA (PI). AP3, PI, and another homeot...
Molecular and genetic analyses have shown that the Arabidopsis thaliana gene SUPERMAN (SUP) has at l...
We describe a locus, SUPERMAN, mutations in which result in extra stamens developing at the expense ...
AbstractThe SUPERMAN (SUP) gene of Arabidopsis is involved in controlling cell proliferation in stam...
During the course of flower development, floral homeotic genes are expressed in defined concentric r...
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 ...
Proper floral patterning, including the number and position of floral organs in most plant species, ...
The floral regulatory gene SUPERMAN (SUP) encodes a C2H2 type zinc finger protein that is required f...
Studies of floral organ development in two dicotyledonous plants, Arabidopsis thaliana and Antirrhin...
AbstractStudies of floral organ development in two dicotyledonous plants, Arabidopsis thaliana and A...
The homeotic gene AGAMOUS (AG) has dual roles in specifying organ fate and limiting stem cell prolif...
AbstractThe homeotic gene AGAMOUS (AG) has dual roles in specifying organ fate and limiting stem cel...
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...
OAK-B135 The homeotic gene AGAMOUS (AG) has dual roles in specifying floral organ fate and limiting ...
Molecular and genetic analyses have shown that the Arabidopsis thaliana gene SUPERMAN (SUP) has at l...
We describe a locus, SUPERMAN, mutations in which result in extra stamens developing at the expense ...
AbstractThe SUPERMAN (SUP) gene of Arabidopsis is involved in controlling cell proliferation in stam...
During the course of flower development, floral homeotic genes are expressed in defined concentric r...
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 ...
Proper floral patterning, including the number and position of floral organs in most plant species, ...
The floral regulatory gene SUPERMAN (SUP) encodes a C2H2 type zinc finger protein that is required f...
Studies of floral organ development in two dicotyledonous plants, Arabidopsis thaliana and Antirrhin...
AbstractStudies of floral organ development in two dicotyledonous plants, Arabidopsis thaliana and A...
The homeotic gene AGAMOUS (AG) has dual roles in specifying organ fate and limiting stem cell prolif...
AbstractThe homeotic gene AGAMOUS (AG) has dual roles in specifying organ fate and limiting stem cel...
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...
OAK-B135 The homeotic gene AGAMOUS (AG) has dual roles in specifying floral organ fate and limiting ...
Molecular and genetic analyses have shown that the Arabidopsis thaliana gene SUPERMAN (SUP) has at l...
We describe a locus, SUPERMAN, mutations in which result in extra stamens developing at the expense ...
AbstractThe SUPERMAN (SUP) gene of Arabidopsis is involved in controlling cell proliferation in stam...