AbstractPlants, compared to animals, exhibit an amazing adaptability and plasticity in their development. This is largely dependent on the ability of plants to form new organs, such as lateral roots, leaves, and flowers during postembryonic development. Organ primordia develop from founder cell populations into organs by coordinated cell division and differentiation. Here, we show that organ formation in Arabidopsis involves dynamic gradients of the signaling molecule auxin with maxima at the primordia tips. These gradients are mediated by cellular efflux requiring asymmetrically localized PIN proteins, which represent a functionally redundant network for auxin distribution in both aerial and underground organs. PIN1 polar localization unde...
Concentration gradients of the hormone auxin are associated with various patterning events in plants...
Plant survival depends on vascular tissues, which originate in a self‐organizing manner as strands o...
The mature Arabidopsis embryo contains two stem cell niches that upon germination bring forth and ma...
AbstractPlants, compared to animals, exhibit an amazing adaptability and plasticity in their develop...
SummaryBackground: Plants produce leaf and flower primordia from a specialized tissue called the sho...
AbstractIn contrast to animals, little is known about pattern formation in plants. Physiological and...
Axis formation occurs in plants, as in animals, during early embryogenesis. However, the underlying ...
The plant hormone auxin is central in patterning diverse plant tissues. The direction of auxin flow ...
The plant hormone auxin plays crucial roles in regulating plant growth development, including embryo...
The plant hormone auxin plays crucial roles in regulating plant growth development, including embryo...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
<div><p>The hormone auxin plays a crucial role in plant morphogenesis. In the shoot apical meristem,...
Stem cells are responsible for organogenesis, but it is largely unknown whether and how information ...
Background: Plants produce leaf and flower primordia from a specialized tissue called the shoot apic...
Coordination of cell division and pattern formation is central to tissue and organ development, part...
Concentration gradients of the hormone auxin are associated with various patterning events in plants...
Plant survival depends on vascular tissues, which originate in a self‐organizing manner as strands o...
The mature Arabidopsis embryo contains two stem cell niches that upon germination bring forth and ma...
AbstractPlants, compared to animals, exhibit an amazing adaptability and plasticity in their develop...
SummaryBackground: Plants produce leaf and flower primordia from a specialized tissue called the sho...
AbstractIn contrast to animals, little is known about pattern formation in plants. Physiological and...
Axis formation occurs in plants, as in animals, during early embryogenesis. However, the underlying ...
The plant hormone auxin is central in patterning diverse plant tissues. The direction of auxin flow ...
The plant hormone auxin plays crucial roles in regulating plant growth development, including embryo...
The plant hormone auxin plays crucial roles in regulating plant growth development, including embryo...
Morphogenesis during multicellular development is regulated by intercellular signaling molecules as ...
<div><p>The hormone auxin plays a crucial role in plant morphogenesis. In the shoot apical meristem,...
Stem cells are responsible for organogenesis, but it is largely unknown whether and how information ...
Background: Plants produce leaf and flower primordia from a specialized tissue called the shoot apic...
Coordination of cell division and pattern formation is central to tissue and organ development, part...
Concentration gradients of the hormone auxin are associated with various patterning events in plants...
Plant survival depends on vascular tissues, which originate in a self‐organizing manner as strands o...
The mature Arabidopsis embryo contains two stem cell niches that upon germination bring forth and ma...