Specification of new organs from transit amplifying cells is critical for higher eukaryote development. In plants, a central stem cell pool maintained by the pluripotency factor SHOOTMERISTEMLESS (STM), is surrounded by transit amplifying cells competent to respond to auxin hormone maxima by giving rise to new organs. Auxin triggers flower initiation through Auxin Response Factor (ARF) MONOPTEROS (MP) and recruitment of chromatin remodelers to activate genes promoting floral fate. The contribution of gene repression to reproductive primordium initiation is poorly understood. Here we show that downregulation of the STM pluripotency gene promotes initiation of flowers and uncover the mechanism for STM silencing. The ARFs ETTIN (ETT) and ARF4 ...
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...
Auxin is a structurally simple molecule, yet it elicits many different responses in plants. In Chapt...
Specification of new organs from transit amplifying cells is critical for higher eukaryote developme...
SummaryA classical role of the hormone auxin is in the formation of flowers at the periphery of the ...
The transcription factor LEAFY is a master regulator of flowering and of flower development. It acts...
SummaryThe cell types of the plant root are first specified early during embryogenesis and are maint...
For self-pollinating plants to reproduce, male and female organ development must be coordinated as f...
For self-pollinating plants to reproduce, male and female organ development must be coordinated as f...
SummaryInvestigations into the role of tomato ARF6 and ARF8 reveal that they are critical components...
Auxin is an important regulator of many aspects of plant growth and development. During reproductive...
The key phytohormone auxin is involved in practically every aspect of plant growth and development. ...
The regulation of signalling capacity, combined with the spatiotemporal distribution of developmenta...
Developmental programmes within multicellular organisms originate from a single cell that proliferat...
Tissue patterning in multicellular organisms is the output of precise spatio-temporal regulation of ...
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...
Auxin is a structurally simple molecule, yet it elicits many different responses in plants. In Chapt...
Specification of new organs from transit amplifying cells is critical for higher eukaryote developme...
SummaryA classical role of the hormone auxin is in the formation of flowers at the periphery of the ...
The transcription factor LEAFY is a master regulator of flowering and of flower development. It acts...
SummaryThe cell types of the plant root are first specified early during embryogenesis and are maint...
For self-pollinating plants to reproduce, male and female organ development must be coordinated as f...
For self-pollinating plants to reproduce, male and female organ development must be coordinated as f...
SummaryInvestigations into the role of tomato ARF6 and ARF8 reveal that they are critical components...
Auxin is an important regulator of many aspects of plant growth and development. During reproductive...
The key phytohormone auxin is involved in practically every aspect of plant growth and development. ...
The regulation of signalling capacity, combined with the spatiotemporal distribution of developmenta...
Developmental programmes within multicellular organisms originate from a single cell that proliferat...
Tissue patterning in multicellular organisms is the output of precise spatio-temporal regulation of ...
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...
Auxin is a structurally simple molecule, yet it elicits many different responses in plants. In Chapt...