The shoot apical meristem produces all of the leaves, stems and flowers of a flowering plant from a reservoir of stem cells at its growing tip. In Arabidopsis, the small polypeptide signaling molecule CLAVATA3 (CLV3), a member of the CLV3/EMBRYO SURROUNDING REGION-RELATED (CLE) gene family, is a key component of a negative feedback loop that maintains stem cell activity in shoot and floral meristems throughout development. Because in some plant species multiple CLE genes are involved in regulating shoot apical meristem activity, we tested the hypothesis that CLE genes other than CLV3 might function in stem cell homeostasis in Arabidopsis. We identified three Arabidopsis CLE genes expressed in the post-embryonic shoot apical meristem, genera...
AbstractRecent studies in Arabidopsis have uncovered a negative feedback loop that couples the antag...
The CLAVATA (CLV1 and CLV3) and SHOOT MERISTEMLESS (STM) genes specifically regulate shoot meristem ...
AbstractThe shoot apical meristem is responsible for above-ground organ initiation in higher plants,...
The shoot apical meristem produces all of the leaves, stems and flowers of a flowering plant from a ...
The shoot apical meristem produces all of the leaves, stems and flowers of a flowering plant from a ...
Secreted peptide ligands are known to play key roles in the regulation of plant growth, development,...
Continuous organogenesis in plants is possible because of the specification of stem cells at the mer...
AbstractIn the Arabidopsis shoot apical meristem, an organizing center signals in a non-cell-autonom...
In higher plants, organogenesis occurs continuously from self-renewing apical meristems. Arabidopsis...
All plant biomass is derived from populations of stem cells located in roots, shoots, flowers, and ...
CLAVATA3 (CLV3), CLV3/ESR19 (CLE19), and CLE40 belong to a family of 26 genes in Arabidopsis thalian...
Stem cell homeostasis in plant shoot meristems requires tight coordiantion between stem cell prolife...
In the Arabidopsis shoot apical meristem, an organizing center signals in a non-cell-autonomous mann...
Shoot meristems of plants are composed of stem cells that are continuously replenished through a cla...
CLE (CLV3/ESR-like) genes share a putative N-terminal signal peptide and a conserved C-terminal 14-a...
AbstractRecent studies in Arabidopsis have uncovered a negative feedback loop that couples the antag...
The CLAVATA (CLV1 and CLV3) and SHOOT MERISTEMLESS (STM) genes specifically regulate shoot meristem ...
AbstractThe shoot apical meristem is responsible for above-ground organ initiation in higher plants,...
The shoot apical meristem produces all of the leaves, stems and flowers of a flowering plant from a ...
The shoot apical meristem produces all of the leaves, stems and flowers of a flowering plant from a ...
Secreted peptide ligands are known to play key roles in the regulation of plant growth, development,...
Continuous organogenesis in plants is possible because of the specification of stem cells at the mer...
AbstractIn the Arabidopsis shoot apical meristem, an organizing center signals in a non-cell-autonom...
In higher plants, organogenesis occurs continuously from self-renewing apical meristems. Arabidopsis...
All plant biomass is derived from populations of stem cells located in roots, shoots, flowers, and ...
CLAVATA3 (CLV3), CLV3/ESR19 (CLE19), and CLE40 belong to a family of 26 genes in Arabidopsis thalian...
Stem cell homeostasis in plant shoot meristems requires tight coordiantion between stem cell prolife...
In the Arabidopsis shoot apical meristem, an organizing center signals in a non-cell-autonomous mann...
Shoot meristems of plants are composed of stem cells that are continuously replenished through a cla...
CLE (CLV3/ESR-like) genes share a putative N-terminal signal peptide and a conserved C-terminal 14-a...
AbstractRecent studies in Arabidopsis have uncovered a negative feedback loop that couples the antag...
The CLAVATA (CLV1 and CLV3) and SHOOT MERISTEMLESS (STM) genes specifically regulate shoot meristem ...
AbstractThe shoot apical meristem is responsible for above-ground organ initiation in higher plants,...