Floral organ identities in plants are specified by the combinatorial action of homeotic master regulatory transcription factors. However, how these factors achieve their regulatory specificities is still largely unclear. Genome-wide in vivo DNA binding data show that homeotic MADS domain proteins recognize partly distinct genomic regions, suggesting that DNA binding specificity contributes to functional differences of homeotic protein complexes. We used in vitro systematic evolution of ligands by exponential enrichment followed by high-throughput DNA sequencing (SELEX-seq) on several floral MADS domain protein homo- and heterodimers to measure their DNA binding specificities. We show that specification of reproductive organs is associated w...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
International audienceFloral organs are specified by the combinatorial action of MADS-domain transcr...
BACKGROUND: Development of eukaryotic organisms is controlled by transcription factors that trigger ...
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...
BACKGROUND: Development of eukaryotic organisms is controlled by transcription factors that trigger ...
MADS domain proteins are members of a highly conserved family found in all eukaryotes. Genetic studi...
Floral organs are specified by the combinatorial action of MADS-domain transcription factors, yet th...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
International audienceFloral organs are specified by the combinatorial action of MADS-domain transcr...
Background: Development of eukaryotic organisms is controlled by transcription factors that trigger ...
Background: Development of eukaryotic organisms is controlled by transcription factors that trigger ...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
International audienceFloral organs are specified by the combinatorial action of MADS-domain transcr...
BACKGROUND: Development of eukaryotic organisms is controlled by transcription factors that trigger ...
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...
BACKGROUND: Development of eukaryotic organisms is controlled by transcription factors that trigger ...
MADS domain proteins are members of a highly conserved family found in all eukaryotes. Genetic studi...
Floral organs are specified by the combinatorial action of MADS-domain transcription factors, yet th...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
International audienceFloral organs are specified by the combinatorial action of MADS-domain transcr...
Background: Development of eukaryotic organisms is controlled by transcription factors that trigger ...
Background: Development of eukaryotic organisms is controlled by transcription factors that trigger ...
The molecular mechanisms by which floral homeotic genes act as major developmental switches to speci...
International audienceFloral organs are specified by the combinatorial action of MADS-domain transcr...
BACKGROUND: Development of eukaryotic organisms is controlled by transcription factors that trigger ...