The ability to initiate organs throughout the lifecycle is a unique feature of plant development that is executed by groups of stem cells called meristems. The balance between stem cell proliferation and organ initiation is carefully regulated and ensures that organs can be initiated in regular geometric patterns. To understand how this regulation is achieved, we isolated a novel mutant of maize, fasciated ear2 (fea2), which causes a massive overproliferation of the ear inflorescence meristem and a more modest effect on floral meristem size and organ number. We cloned the fea2 gene using transposon tagging, and it encodes a membrane localized leucine-rich repeat receptor-like protein that is most closely related to CLAVATA2 from Arabidopsis...
The shoot apical meristem (SAM) maintains a pool of indeterminate cells within the SAM proper, while...
BACKGROUND: Throughout their lives plants produce new organs from groups of pluripotent cells called...
Continuous organogenesis in plants is possible because of the specification of stem cells at the mer...
Shoot apical meristems are stem cell niches that balance proliferation with the incorporation of dau...
Development in higher plants depends on the activity of meristems, formative regions that continuous...
Plant architecture is dictated by precise control of meristematic activity. In the shoot, an imbalan...
Plant meristems are self-renewing groups of pluripotent stem cells that produce lateral organs in a ...
Flowers are produced by floral meristems, groups of stem cells that give rise to floral organs. In g...
Domestication of cereal crops, such as maize, wheat and rice, had a profound influence on agricultur...
We have isolated a new mutant, hanaba taranu (han), which affects both flower and shoot apical meris...
Genetic control of grass inflorescence architecture is critical given that cereal seeds provide most...
Plants develop continually throughout their lifetime from central regions of growth, called meristem...
We have investigated the effects on plant development of mutations in the Arabidopsis thaliana CLAVA...
Plant axillary meristems are composed of highly organized, self-renewing stem cells that produce ind...
The shoot apical meristem, a small dome-shaped structure at the shoot apex of higher plants, is esta...
The shoot apical meristem (SAM) maintains a pool of indeterminate cells within the SAM proper, while...
BACKGROUND: Throughout their lives plants produce new organs from groups of pluripotent cells called...
Continuous organogenesis in plants is possible because of the specification of stem cells at the mer...
Shoot apical meristems are stem cell niches that balance proliferation with the incorporation of dau...
Development in higher plants depends on the activity of meristems, formative regions that continuous...
Plant architecture is dictated by precise control of meristematic activity. In the shoot, an imbalan...
Plant meristems are self-renewing groups of pluripotent stem cells that produce lateral organs in a ...
Flowers are produced by floral meristems, groups of stem cells that give rise to floral organs. In g...
Domestication of cereal crops, such as maize, wheat and rice, had a profound influence on agricultur...
We have isolated a new mutant, hanaba taranu (han), which affects both flower and shoot apical meris...
Genetic control of grass inflorescence architecture is critical given that cereal seeds provide most...
Plants develop continually throughout their lifetime from central regions of growth, called meristem...
We have investigated the effects on plant development of mutations in the Arabidopsis thaliana CLAVA...
Plant axillary meristems are composed of highly organized, self-renewing stem cells that produce ind...
The shoot apical meristem, a small dome-shaped structure at the shoot apex of higher plants, is esta...
The shoot apical meristem (SAM) maintains a pool of indeterminate cells within the SAM proper, while...
BACKGROUND: Throughout their lives plants produce new organs from groups of pluripotent cells called...
Continuous organogenesis in plants is possible because of the specification of stem cells at the mer...