The CLAVATA pathway is a key regulator of stem cell function in the multicellular shoot tips of Arabidopsis, where it acts via the WUSCHEL transcription factor to modulate hormone homeostasis. Broad-scale evolutionary comparisons have shown that CLAVATA is a conserved regulator of land plant stem cell function, but CLAVATA acts independently of WUSCHEL-like (WOX) proteins in bryophytes. The relationship between CLAVATA, hormone homeostasis and the evolution of land plant stem cell functions is unknown. Here we show that in the moss, Physcomitrella (Physcomitrium patens), CLAVATA affects stem cell activity by modulating hormone homeostasis. CLAVATA pathway genes are expressed in the tip cells of filamentous tissues, regulating cell identity...
The regulation of stem cell proliferation in plants is controlled by intercellular signaling pathway...
The balance between self-renewing stem cell divisions and differentiation of stem cell progeny in Sh...
Shoot meristems of plants are composed of stem cells that are continuously replenished through a cla...
The CLAVATA pathway is a key regulator of stem cell function in the multicellular shoot tips of Arab...
193 pagesAll plants grow from stem cells or a collection of stem cells organized at meristems. The a...
How genes shape diverse plant and animal body forms is a key question in biology. Unlike animal cell...
The plant hormone auxin is a key factor for regulation of plant development, and this function was p...
AbstractRecent studies in Arabidopsis have uncovered a negative feedback loop that couples the antag...
It remains unclear how stem cell behaviour is dynamically regulated in plant meristems. The analysis...
SummaryBackgroundCell numbers in above-ground meristems of plants are thought to be maintained by a ...
AbstractThe higher-plant shoot meristem is a dynamic structure whose maintenance depends on the coor...
Background: Cell numbers in above-ground meristems of plants are thought to be maintained by a feed...
The CLAVATA3 (CLV3)-CLAVATA1 (CLV1) ligand-receptor kinase pair negatively regulates shoot stem cell...
We have investigated the effects on plant development of mutations in the Arabidopsis thaliana CLAVA...
The transcription factor WUSCHEL (WUS) acts from a well-defined domain within the Arabidopsis thalia...
The regulation of stem cell proliferation in plants is controlled by intercellular signaling pathway...
The balance between self-renewing stem cell divisions and differentiation of stem cell progeny in Sh...
Shoot meristems of plants are composed of stem cells that are continuously replenished through a cla...
The CLAVATA pathway is a key regulator of stem cell function in the multicellular shoot tips of Arab...
193 pagesAll plants grow from stem cells or a collection of stem cells organized at meristems. The a...
How genes shape diverse plant and animal body forms is a key question in biology. Unlike animal cell...
The plant hormone auxin is a key factor for regulation of plant development, and this function was p...
AbstractRecent studies in Arabidopsis have uncovered a negative feedback loop that couples the antag...
It remains unclear how stem cell behaviour is dynamically regulated in plant meristems. The analysis...
SummaryBackgroundCell numbers in above-ground meristems of plants are thought to be maintained by a ...
AbstractThe higher-plant shoot meristem is a dynamic structure whose maintenance depends on the coor...
Background: Cell numbers in above-ground meristems of plants are thought to be maintained by a feed...
The CLAVATA3 (CLV3)-CLAVATA1 (CLV1) ligand-receptor kinase pair negatively regulates shoot stem cell...
We have investigated the effects on plant development of mutations in the Arabidopsis thaliana CLAVA...
The transcription factor WUSCHEL (WUS) acts from a well-defined domain within the Arabidopsis thalia...
The regulation of stem cell proliferation in plants is controlled by intercellular signaling pathway...
The balance between self-renewing stem cell divisions and differentiation of stem cell progeny in Sh...
Shoot meristems of plants are composed of stem cells that are continuously replenished through a cla...