The transcription factor LEAFY is a master regulator of flowering and of flower development. It acts as a component of a switch that mediates the transition from the vegetative to the reproductive phase of plant development. Auxin is a plant hormone with many different roles in plant growth, including the induction of new primordia of both leaves and flowers at the shoot apex. We report that LEAFY acts in part by controlling the auxin response pathway in new primordia. Therefore, regulation of flower development by transcriptional master regulators and hormonal control of morphogenesis appear to be interacting processes. We found that hormone perception not only controls but is also controlled by the transcriptional signals that create plan...
Stem cells are responsible for organogenesis, but it is largely unknown whether and how information ...
Tissue patterning in multicellular organisms is the output of precise spatio–temporal regulation of ...
Specification of new organs from transit amplifying cells is critical for higher eukaryote developme...
The transcription factor LEAFY is a master regulator of flowering and of flower development. It acts...
SummaryA classical role of the hormone auxin is in the formation of flowers at the periphery of the ...
SummaryBackground: Plants produce leaf and flower primordia from a specialized tissue called the sho...
SummaryThe transition from vegetative growth to flower formation is critical for the survival of flo...
The plant specific transcription factor LEAFY (LFY) plays a pivotal role in the developmental switch...
Coordinating growth and patterning is essential for eukaryote morphogenesis. In plants, auxin is a k...
The process of morphogenesis is driven by cell division and expansion, which are controlled ina diff...
Tissue patterning in multicellular organisms is the output of precise spatio–temporal regulation of ...
Tissue patterning in multicellular organisms is the output of precise spatio-temporal regulation of ...
Stem cells are responsible for organogenesis, but it is largely unknown whether and how information ...
Tissue patterning in multicellular organisms is the output of precise spatio–temporal regulation of ...
Specification of new organs from transit amplifying cells is critical for higher eukaryote developme...
The transcription factor LEAFY is a master regulator of flowering and of flower development. It acts...
SummaryA classical role of the hormone auxin is in the formation of flowers at the periphery of the ...
SummaryBackground: Plants produce leaf and flower primordia from a specialized tissue called the sho...
SummaryThe transition from vegetative growth to flower formation is critical for the survival of flo...
The plant specific transcription factor LEAFY (LFY) plays a pivotal role in the developmental switch...
Coordinating growth and patterning is essential for eukaryote morphogenesis. In plants, auxin is a k...
The process of morphogenesis is driven by cell division and expansion, which are controlled ina diff...
Tissue patterning in multicellular organisms is the output of precise spatio–temporal regulation of ...
Tissue patterning in multicellular organisms is the output of precise spatio-temporal regulation of ...
Stem cells are responsible for organogenesis, but it is largely unknown whether and how information ...
Tissue patterning in multicellular organisms is the output of precise spatio–temporal regulation of ...
Specification of new organs from transit amplifying cells is critical for higher eukaryote developme...