SummaryThe quiescent center (QC) maintains the activity of the surrounding stem cells within the root stem cell niche, yet specific molecular players sustaining the low rate of QC cell division remain poorly understood. Here, we identified a R2R3-MYB transcription factor, BRAVO (BRASSINOSTEROIDS AT VASCULAR AND ORGANIZING CENTER), acting as a cell-specific repressor of QC divisions in the primary root of Arabidopsis. Ectopic BRAVO expression restricts overall root growth and ceases root regeneration upon damage of the stem cells, demonstrating the role of BRAVO in counteracting Brassinosteroid (BR)-mediated cell division in the QC cells. Interestingly, BR-regulated transcription factor BES1 (BRI1-EMS SUPRESSOR 1) directly represses and phys...
The root stem cell niche, which in the Arabidopsis thaliana root meristem is an area of four mitotic...
The regulation of columella stem cell activity in the Arabidopsis root cap by a nearby organizing ce...
Brassinosteroids are plant steroid hormones that regulate diverse processes, such as cell division a...
Referred to by: Josep Vilarrasa-Blasi, Mary-Paz González-García, David Frigola, Norma Fàbregas-Vallv...
Stem cell regeneration is crucial for both cell turnover and tissue healing in multicellular organis...
The present PhD thesis work reports the molecular and genetic dissection for the role of plant stero...
Brassinosteroids (BRs) play crucial roles in plant growth and development. Previous studies have sho...
Understanding stem cell regulatory circuits is the next challenge in plant biology, as these cells a...
SummaryThe spatiotemporal balance between stem cell maintenance, proliferation, and differentiation ...
<div><p>Quiescent long-term somatic stem cells reside in plant and animal stem cell niches. Within t...
The transcription factor BRI1-EMS-SUPRESSOR 1 (BES1) is a master regulator of brassinosteroid (BR)-r...
Summary: The root stem cell niche, which is composed of four mitotically inactive quiescent center (...
It is well known that abscisic acid (ABA) can halt meristems for long periods without loss of merist...
Quiescent long-term somatic stem cells reside in plant and animal stem cell niches. Within the Arabi...
The root stem cell niche, which in the Arabidopsis thaliana root meristem is an area of four mitotic...
The regulation of columella stem cell activity in the Arabidopsis root cap by a nearby organizing ce...
Brassinosteroids are plant steroid hormones that regulate diverse processes, such as cell division a...
Referred to by: Josep Vilarrasa-Blasi, Mary-Paz González-García, David Frigola, Norma Fàbregas-Vallv...
Stem cell regeneration is crucial for both cell turnover and tissue healing in multicellular organis...
The present PhD thesis work reports the molecular and genetic dissection for the role of plant stero...
Brassinosteroids (BRs) play crucial roles in plant growth and development. Previous studies have sho...
Understanding stem cell regulatory circuits is the next challenge in plant biology, as these cells a...
SummaryThe spatiotemporal balance between stem cell maintenance, proliferation, and differentiation ...
<div><p>Quiescent long-term somatic stem cells reside in plant and animal stem cell niches. Within t...
The transcription factor BRI1-EMS-SUPRESSOR 1 (BES1) is a master regulator of brassinosteroid (BR)-r...
Summary: The root stem cell niche, which is composed of four mitotically inactive quiescent center (...
It is well known that abscisic acid (ABA) can halt meristems for long periods without loss of merist...
Quiescent long-term somatic stem cells reside in plant and animal stem cell niches. Within the Arabi...
The root stem cell niche, which in the Arabidopsis thaliana root meristem is an area of four mitotic...
The regulation of columella stem cell activity in the Arabidopsis root cap by a nearby organizing ce...
Brassinosteroids are plant steroid hormones that regulate diverse processes, such as cell division a...