BACKGROUND: The shoot apical meristem (SAM) is an indeterminate structure that gives rise to the aerial parts of higher plants. Leaves arise from the differentiation of cells at the flanks of the SAM. Current evidence suggests that the precise regulation of KNOTTED1-like homeobox (KNOX) transcription factors is central to the acquisition of leaf versus meristem identity in a wide spectrum of plant species. Factors required to repress KNOX gene expression in leaves have recently been identified. Additional factors such as the CHD3 chromatin remodeling factor PICKLE (PKL) act to restrict meristematic activity in Arabidopsis leaves without repressing KNOX gene expression. Less is known regarding downstream targets of KNOX function. Recent evid...
Leaves of seed plants can be described as simple, where the leaf blade is entire, or dissected, wher...
<div><p>Neofunctionalization following gene duplication is thought to be one of the key drivers in g...
Homeobox genes encode transcriptional regulators that control development in multicellular eukaryote...
AbstractBackground: The shoot apical meristem (SAM) is an indeterminate structure that gives rise to...
SummaryThe shoot apical meristem (SAM) is a pluripotent group of cells that gives rise to the aerial...
The shoot apical meristem (SAM) is a pluripotent group of cells that gives rise to the aerial parts ...
AbstractKNOX proteins are required for meristem activity in plants. Recent studies have identified p...
SummaryPlant architecture is shaped through the continuous formation of organs by meristems [1]. Cla...
Plant hormones are signalling molecules that control growth and development. Growth of the aerial pa...
The Arabidopsis class-1 KNOX gene SHOOT MERISTEMLESS (STM) encodes a homeodomain transcription facto...
Leaves of seed plants can be described as simple, where the leaf blade is entire, or dissected, wher...
Knotted1-like homeobox (KNOX) proteins are homeodomain transcription factors that maintain an import...
In Arabidopsis, the central stem cells of the shoot apical meristem (SAM) are indefinitely maintaine...
Neofunctionalization following gene duplication is thought to be one of the key drivers in generatin...
The Three Amino acid Loop Extension (TALE) proteins constitute an ancestral superclass of homeodomai...
Leaves of seed plants can be described as simple, where the leaf blade is entire, or dissected, wher...
<div><p>Neofunctionalization following gene duplication is thought to be one of the key drivers in g...
Homeobox genes encode transcriptional regulators that control development in multicellular eukaryote...
AbstractBackground: The shoot apical meristem (SAM) is an indeterminate structure that gives rise to...
SummaryThe shoot apical meristem (SAM) is a pluripotent group of cells that gives rise to the aerial...
The shoot apical meristem (SAM) is a pluripotent group of cells that gives rise to the aerial parts ...
AbstractKNOX proteins are required for meristem activity in plants. Recent studies have identified p...
SummaryPlant architecture is shaped through the continuous formation of organs by meristems [1]. Cla...
Plant hormones are signalling molecules that control growth and development. Growth of the aerial pa...
The Arabidopsis class-1 KNOX gene SHOOT MERISTEMLESS (STM) encodes a homeodomain transcription facto...
Leaves of seed plants can be described as simple, where the leaf blade is entire, or dissected, wher...
Knotted1-like homeobox (KNOX) proteins are homeodomain transcription factors that maintain an import...
In Arabidopsis, the central stem cells of the shoot apical meristem (SAM) are indefinitely maintaine...
Neofunctionalization following gene duplication is thought to be one of the key drivers in generatin...
The Three Amino acid Loop Extension (TALE) proteins constitute an ancestral superclass of homeodomai...
Leaves of seed plants can be described as simple, where the leaf blade is entire, or dissected, wher...
<div><p>Neofunctionalization following gene duplication is thought to be one of the key drivers in g...
Homeobox genes encode transcriptional regulators that control development in multicellular eukaryote...