Stem cells are responsible for organogenesis, but it is largely unknown whether and how information from stem cells acts to direct organ patterning after organ primordia are formed. It has long been proposed that the stem cells at the plant shoot apex produce a signal, which promotes leaf adaxial-abaxial (dorsoventral) patterning. Here we show the existence of a transient low auxin zone in the adaxial domain of early leaf primordia. We also demonstrate that this adaxial low auxin domain contributes to leaf adaxial-abaxial patterning. The auxin signal is mediated by the auxin-responsive transcription factor MONOPTEROS (MP), whose constitutive activation in the adaxial domain promotes abaxial cell fate. Furthermore, we show that auxin flow fr...
Background: In plant roots, auxin is critical for patterning and morphogenesis. It regulates cell el...
The initiation of leaf and flower primordia in plants occurs in the shoot apical meristem and result...
The process of morphogenesis is driven by cell division and expansion, which are controlled ina diff...
Stem cells are responsible for organogenesis, but it is largely unknown whether and how information ...
SummaryBackground: Plants produce leaf and flower primordia from a specialized tissue called the sho...
The periodic formation of plant organs such as leaves and flowers gives rise to intricate patterns t...
AbstractPlants, compared to animals, exhibit an amazing adaptability and plasticity in their develop...
The transcription factor LEAFY is a master regulator of flowering and of flower development. It acts...
Dorsoventrality in leaves has been shown to depend on the pre-patterned expression of KANADI and HD-...
AbstractPatterning of Arabidopsis roots is mediated by cell–cell interactions, information flowing f...
Dorsoventrality in leaves has been shown to depend on the pre-patterned expression of KANADI and HD-...
SummaryThe periodic formation of plant organs such as leaves and flowers gives rise to intricate pat...
SummaryA classical role of the hormone auxin is in the formation of flowers at the periphery of the ...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
Background: Plants produce leaf and flower primordia from a specialized tissue called the shoot apic...
Background: In plant roots, auxin is critical for patterning and morphogenesis. It regulates cell el...
The initiation of leaf and flower primordia in plants occurs in the shoot apical meristem and result...
The process of morphogenesis is driven by cell division and expansion, which are controlled ina diff...
Stem cells are responsible for organogenesis, but it is largely unknown whether and how information ...
SummaryBackground: Plants produce leaf and flower primordia from a specialized tissue called the sho...
The periodic formation of plant organs such as leaves and flowers gives rise to intricate patterns t...
AbstractPlants, compared to animals, exhibit an amazing adaptability and plasticity in their develop...
The transcription factor LEAFY is a master regulator of flowering and of flower development. It acts...
Dorsoventrality in leaves has been shown to depend on the pre-patterned expression of KANADI and HD-...
AbstractPatterning of Arabidopsis roots is mediated by cell–cell interactions, information flowing f...
Dorsoventrality in leaves has been shown to depend on the pre-patterned expression of KANADI and HD-...
SummaryThe periodic formation of plant organs such as leaves and flowers gives rise to intricate pat...
SummaryA classical role of the hormone auxin is in the formation of flowers at the periphery of the ...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
Background: Plants produce leaf and flower primordia from a specialized tissue called the shoot apic...
Background: In plant roots, auxin is critical for patterning and morphogenesis. It regulates cell el...
The initiation of leaf and flower primordia in plants occurs in the shoot apical meristem and result...
The process of morphogenesis is driven by cell division and expansion, which are controlled ina diff...