The molecular mechanisms by which floral homeotic genes act as major developmental switches to specify the identity of floral organs, are still largely unknown. Floral homeotic genes encode transcription factors of the MADS-box family, which are supposed to assemble in a combinatorial fashion into organ-specific multimeric protein complexes. Major mediators of protein interactions are MADS-domain proteins of the SEPALLATA subfamily, which play a crucial role in the development of all types of floral organs. In order to characterize the roles of the SEPALLATA3 transcription factor complexes at the molecular level, we analyzed genome-wide the direct targets of SEPALLATA3. We used chromatin immunoprecipitation followed by ultrahigh-throughput ...
Background - Plant MADS box proteins play important roles in a plethora of developmental processes. ...
Background - Plant MADS box proteins play important roles in a plethora of developmental processes. ...
The MADS transcription factors (TF) constitute an ancient family of TF found in all eukaryotes that ...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
Flower development is controlled by the action of key regulatory transcription factors of the MADS-d...
Flower development is controlled by the action of key regulatory transcription factors of the MADS-d...
Flower development is controlled by the action of key regulatory transcription factors of the MADS-d...
Flower development is controlled by the action of key regulatory transcription factors of the MADS-d...
Flower development is controlled by the action of key regulatory transcription factors of the MADS-d...
Floral organ identities in plants are specified by the combinatorial action of homeotic master regul...
Background - Plant MADS box proteins play important roles in a plethora of developmental processes. ...
Background - Plant MADS box proteins play important roles in a plethora of developmental processes. ...
The MADS transcription factors (TF) constitute an ancient family of TF found in all eukaryotes that ...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
Flower development is controlled by the action of key regulatory transcription factors of the MADS-d...
Flower development is controlled by the action of key regulatory transcription factors of the MADS-d...
Flower development is controlled by the action of key regulatory transcription factors of the MADS-d...
Flower development is controlled by the action of key regulatory transcription factors of the MADS-d...
Flower development is controlled by the action of key regulatory transcription factors of the MADS-d...
Floral organ identities in plants are specified by the combinatorial action of homeotic master regul...
Background - Plant MADS box proteins play important roles in a plethora of developmental processes. ...
Background - Plant MADS box proteins play important roles in a plethora of developmental processes. ...
The MADS transcription factors (TF) constitute an ancient family of TF found in all eukaryotes that ...