<div><p>Plants have the ability to continously generate new organs by maintaining populations of stem cells throught their lives. The shoot apical meristem (SAM) provides a stable environment for the maintenance of stem cells. All cells inside the SAM divide, yet boundaries and patterns are maintained. Experimental evidence indicates that patterning is independent of cell lineage, thus a dynamic self-regulatory mechanism is required. A pivotal role in the organization of the SAM is played by the <i>WUSCHEL</i> gene (WUS). An important question in this regard is that how WUS expression is positioned in the SAM via a cell-lineage independent signaling mechanism. In this study we demonstrate via mathematical modeling that a combination of an i...
<div><p>The study of the concerted action of hormones and transcription factors is fundamental to un...
AbstractRecent studies in Arabidopsis have uncovered a negative feedback loop that couples the antag...
The shoot apical meristem (SAM) is a small population of stem cells that continuously generates orga...
<p>Plants have the ability to continously generate new organs by maintaining populations of stem cel...
The transcription factor WUSCHEL (WUS) acts from a well-defined domain within the Arabidopsis thalia...
SummaryPlant postembryonic development takes place in the meristems, where stem cells self-renew and...
Plant postembryonic development takes place in the meristems, where stem cells self-renew and produc...
Plant postembryonic development takes place in the meristems, where stem cells self-renew and produc...
193 pagesAll plants grow from stem cells or a collection of stem cells organized at meristems. The a...
WUSCHEL (WUS) is a homeodomain transcription factor produced in cells of the niche/organizing center...
AbstractThe higher-plant shoot meristem is a dynamic structure whose maintenance depends on the coor...
Plants continuously maintain pools of totipotent stem cells in their apical meristems from which ela...
At the shoot apex of plants is a small region known as the shoot apical meristem (SAM) that maintain...
International audienceIn plants, the shoot apical meristem (SAM) serves as a reservoir of pluripoten...
International audienceThe study of the concerted action of hormones and transcription factors is fun...
<div><p>The study of the concerted action of hormones and transcription factors is fundamental to un...
AbstractRecent studies in Arabidopsis have uncovered a negative feedback loop that couples the antag...
The shoot apical meristem (SAM) is a small population of stem cells that continuously generates orga...
<p>Plants have the ability to continously generate new organs by maintaining populations of stem cel...
The transcription factor WUSCHEL (WUS) acts from a well-defined domain within the Arabidopsis thalia...
SummaryPlant postembryonic development takes place in the meristems, where stem cells self-renew and...
Plant postembryonic development takes place in the meristems, where stem cells self-renew and produc...
Plant postembryonic development takes place in the meristems, where stem cells self-renew and produc...
193 pagesAll plants grow from stem cells or a collection of stem cells organized at meristems. The a...
WUSCHEL (WUS) is a homeodomain transcription factor produced in cells of the niche/organizing center...
AbstractThe higher-plant shoot meristem is a dynamic structure whose maintenance depends on the coor...
Plants continuously maintain pools of totipotent stem cells in their apical meristems from which ela...
At the shoot apex of plants is a small region known as the shoot apical meristem (SAM) that maintain...
International audienceIn plants, the shoot apical meristem (SAM) serves as a reservoir of pluripoten...
International audienceThe study of the concerted action of hormones and transcription factors is fun...
<div><p>The study of the concerted action of hormones and transcription factors is fundamental to un...
AbstractRecent studies in Arabidopsis have uncovered a negative feedback loop that couples the antag...
The shoot apical meristem (SAM) is a small population of stem cells that continuously generates orga...