Plant meristems are self-renewing groups of pluripotent stem cells that produce lateral organs in a stereotypical pattern. Of interest is how the radially symmetrical meristem produces laminar lateral organs. Both the male and female inflorescence meristems of the dominant Fascicled ear (Fas1) mutant fail to grow as a single point and instead show deep branching. Positional cloning of two independent Fas1 alleles identified an ∼160 kb region containing two floral genes, the MADS-box gene, zmm8, and the YABBY gene, drooping leaf2 (drl2). Both genes are duplicated within the Fas1 locus and spatiotemporally misexpressed in the mutant inflorescence meristems. Increased zmm8 expression alone does not affect inflorescence development; however, co...
Plant architecture is determined by meristems that initiate leaves during vegetative development and...
The inflorescence meristem produces floral primordia that remain undifferentiated during the first s...
Plant architecture is elaborated through the activity of shoot apical meristems (SAMs), which produc...
Plant meristems are self-renewing groups of pluripotent stem cells that produce lateral organs in a ...
Leaf and floral architectures contribute significantly to crop yield. Leaf architecture, i.e., leaf ...
The ability to initiate organs throughout the lifecycle is a unique feature of plant development tha...
Development in higher plants depends on the activity of meristems, formative regions that continuous...
Maize inflorescence architecture is dictated by groups of tightly regulated pluripotent stem cells c...
The molecular and genetic control of inflorescence and flower development has been studied in great ...
Plant architecture is dictated by precise control of meristematic activity. In the shoot, an imbalan...
Plant axillary meristems are composed of highly organized, self-renewing stem cells that produce ind...
In monocots and eudicots, B class function specifies second and third whorl floral organ identity as...
Background The Arabidopsis FILAMENTOUS FLOWER (FIL) gene encodes a YABBY (YAB) family putative tr...
Floral morphology is immensely diverse. One developmental process acting to shape this diversity is ...
Abstract Background The Arabidopsis FILAMENTOUS FLOWER (FIL) gene encodes a YABBY (YAB) family putat...
Plant architecture is determined by meristems that initiate leaves during vegetative development and...
The inflorescence meristem produces floral primordia that remain undifferentiated during the first s...
Plant architecture is elaborated through the activity of shoot apical meristems (SAMs), which produc...
Plant meristems are self-renewing groups of pluripotent stem cells that produce lateral organs in a ...
Leaf and floral architectures contribute significantly to crop yield. Leaf architecture, i.e., leaf ...
The ability to initiate organs throughout the lifecycle is a unique feature of plant development tha...
Development in higher plants depends on the activity of meristems, formative regions that continuous...
Maize inflorescence architecture is dictated by groups of tightly regulated pluripotent stem cells c...
The molecular and genetic control of inflorescence and flower development has been studied in great ...
Plant architecture is dictated by precise control of meristematic activity. In the shoot, an imbalan...
Plant axillary meristems are composed of highly organized, self-renewing stem cells that produce ind...
In monocots and eudicots, B class function specifies second and third whorl floral organ identity as...
Background The Arabidopsis FILAMENTOUS FLOWER (FIL) gene encodes a YABBY (YAB) family putative tr...
Floral morphology is immensely diverse. One developmental process acting to shape this diversity is ...
Abstract Background The Arabidopsis FILAMENTOUS FLOWER (FIL) gene encodes a YABBY (YAB) family putat...
Plant architecture is determined by meristems that initiate leaves during vegetative development and...
The inflorescence meristem produces floral primordia that remain undifferentiated during the first s...
Plant architecture is elaborated through the activity of shoot apical meristems (SAMs), which produc...