SummaryPlants continuously maintain pluripotent stem cells embedded in specialized tissues called meristems, which drive long-term growth and organogenesis. Stem cell fate in the shoot apical meristem (SAM) is controlled by the homeodomain transcription factor WUSCHEL (WUS) expressed in the niche adjacent to the stem cells. Here, we demonstrate that the bHLH transcription factor HECATE1 (HEC1) is a target of WUS and that it contributes to SAM function by promoting stem cell proliferation, while antagonizing niche cell activity. HEC1 represses the stem cell regulators WUS and CLAVATA3 (CLV3) and, like WUS, controls genes with functions in metabolism and hormone signaling. Among the targets shared by HEC1 and WUS are phytohormone response reg...
In animal systems, master regulatory transcription factors (TFs) mediate stem cell maintenance throu...
193 pagesAll plants grow from stem cells or a collection of stem cells organized at meristems. The a...
In Arabidopsis shoot apical meristems (SAMs), a well-characterized regulatory loop between WUSCHEL (...
SummaryPlants continuously maintain pluripotent stem cells embedded in specialized tissues called me...
Plants continuously maintain pluripotent stem cells embedded in specialized tissues called meristems...
At the shoot apex of plants is a small region known as the shoot apical meristem (SAM) that maintain...
Plant stem cells in the shoot apical meristem (SAM) and root apical meristem are necessary for poste...
The transcription factor WUSCHEL (WUS) acts from a well-defined domain within the Arabidopsis thalia...
AbstractThe higher-plant shoot meristem is a dynamic structure whose maintenance depends on the coor...
AbstractThe shoot meristem gives rise to the aerial parts of higher plants by continuously initiatin...
International audienceAbstract The maintenance of the stem cell niche in the shoot apical meristem, ...
Pluripotent stem cells are localized in specialized microenvironments, called stem cell niches, wher...
Despite the independent evolution of multicellularity in plants and animals, the basic organization ...
Essential to the function of shoot meristems in plants to act as sites of continuous organ and tissu...
Plants have the ability to continously generate new organs by maintaining populations of stem cells ...
In animal systems, master regulatory transcription factors (TFs) mediate stem cell maintenance throu...
193 pagesAll plants grow from stem cells or a collection of stem cells organized at meristems. The a...
In Arabidopsis shoot apical meristems (SAMs), a well-characterized regulatory loop between WUSCHEL (...
SummaryPlants continuously maintain pluripotent stem cells embedded in specialized tissues called me...
Plants continuously maintain pluripotent stem cells embedded in specialized tissues called meristems...
At the shoot apex of plants is a small region known as the shoot apical meristem (SAM) that maintain...
Plant stem cells in the shoot apical meristem (SAM) and root apical meristem are necessary for poste...
The transcription factor WUSCHEL (WUS) acts from a well-defined domain within the Arabidopsis thalia...
AbstractThe higher-plant shoot meristem is a dynamic structure whose maintenance depends on the coor...
AbstractThe shoot meristem gives rise to the aerial parts of higher plants by continuously initiatin...
International audienceAbstract The maintenance of the stem cell niche in the shoot apical meristem, ...
Pluripotent stem cells are localized in specialized microenvironments, called stem cell niches, wher...
Despite the independent evolution of multicellularity in plants and animals, the basic organization ...
Essential to the function of shoot meristems in plants to act as sites of continuous organ and tissu...
Plants have the ability to continously generate new organs by maintaining populations of stem cells ...
In animal systems, master regulatory transcription factors (TFs) mediate stem cell maintenance throu...
193 pagesAll plants grow from stem cells or a collection of stem cells organized at meristems. The a...
In Arabidopsis shoot apical meristems (SAMs), a well-characterized regulatory loop between WUSCHEL (...