SummaryThe balance between cellular proliferation and differentiation is a key aspect of development in multicellular organisms. Using high-resolution expression data from the Arabidopsis root, we identified a transcription factor, UPBEAT1 (UPB1), that regulates this balance. Genomewide expression profiling coupled with ChIP-chip analysis revealed that UPB1 directly regulates the expression of a set of peroxidases that modulate the balance of reactive oxygen species (ROS) between the zones of cell proliferation and the zone of cell elongation where differentiation begins. Disruption of UPB1 activity alters this ROS balance, leading to a delay in the onset of differentiation. Modulation of either ROS balance or peroxidase activity through ch...
Reactive oxygen species (ROS) are known as toxic metabolic products in plants and other aerobic orga...
<div><p>Although research has determined that reactive oxygen species (ROS) function as signaling mo...
Organ formation in animals and plants relies on precise control of cell state transitions to turn st...
Recent work in animals and plants suggests that reactive oxygen species (ROS) control cell prolifera...
Schippers JHM, Nguyen HM, Lu D, Schmidt R, Mueller-Roeber B. ROS homeostasis during development: an ...
Overall root architecture is the combined result of primary and lateral root growth and is influence...
Reactive oxygen species (ROS) are produced by metabolic pathways in almost all cells. As signaling c...
Reactive oxygen species (ROS) play a diversity of roles in plants. In recent years, a role for NADPH...
Reactive oxygen species (ROS) are naturally produced by several redox reactions during plant regular...
The experiments presented in this thesis topic the role of transcription factor family members in re...
Reactive oxygen species (ROS), a type of oxygen monoelectronic reduction product, play integral role...
SummaryThe quiescent center (QC) maintains the activity of the surrounding stem cells within the roo...
In animal systems, master regulatory transcription factors (TFs) mediate stem cell maintenance throu...
Multicellular eukaryotic organisms build complex body structures from a single cell. Through coordin...
Reactive oxygen species (ROS) play a diversity of roles in plants. In recent years, a role for NADPH...
Reactive oxygen species (ROS) are known as toxic metabolic products in plants and other aerobic orga...
<div><p>Although research has determined that reactive oxygen species (ROS) function as signaling mo...
Organ formation in animals and plants relies on precise control of cell state transitions to turn st...
Recent work in animals and plants suggests that reactive oxygen species (ROS) control cell prolifera...
Schippers JHM, Nguyen HM, Lu D, Schmidt R, Mueller-Roeber B. ROS homeostasis during development: an ...
Overall root architecture is the combined result of primary and lateral root growth and is influence...
Reactive oxygen species (ROS) are produced by metabolic pathways in almost all cells. As signaling c...
Reactive oxygen species (ROS) play a diversity of roles in plants. In recent years, a role for NADPH...
Reactive oxygen species (ROS) are naturally produced by several redox reactions during plant regular...
The experiments presented in this thesis topic the role of transcription factor family members in re...
Reactive oxygen species (ROS), a type of oxygen monoelectronic reduction product, play integral role...
SummaryThe quiescent center (QC) maintains the activity of the surrounding stem cells within the roo...
In animal systems, master regulatory transcription factors (TFs) mediate stem cell maintenance throu...
Multicellular eukaryotic organisms build complex body structures from a single cell. Through coordin...
Reactive oxygen species (ROS) play a diversity of roles in plants. In recent years, a role for NADPH...
Reactive oxygen species (ROS) are known as toxic metabolic products in plants and other aerobic orga...
<div><p>Although research has determined that reactive oxygen species (ROS) function as signaling mo...
Organ formation in animals and plants relies on precise control of cell state transitions to turn st...