The genus Streptocarpus comprises species with diverse body plans. Caulescent species produce leaves from a conventional shoot apical meristem (SAM), whereas acaulescent species lack a conventional SAM and produce only a single leaf (the unifoliate form) or clusters of leaves from the base of more mature leaves (the rosulate form). These distinct morphologies reflect fundamental differences in the role of the SAM and the process of leaf specification. A subfamily of KNOTTED-like homeobox (KNOX) genes are known to be important in regulating meristem function and leaf development in model species with conventional morphologies. To test the involvement of KNOX genes in Streptocarpus evolution, two parologous KNOX genes (SSTM1 and SSTM2) were i...
KNOTTED-like homeodomain (KNOX) genes are transcriptional regulators that play an important role in ...
<p>(<b>A-B</b>) Morphology of <sub><i>pro</i></sub><i>35S</i>:<i>amiR</i><sup><i>159</i></sup><i>-KN...
The KNOX (KNOTTED1-like homeobox) transcription factors play a pivotal role in leaf and meristem dev...
The genus Streptocarpus comprises species with diverse body plans. Caulescent species produce leaves...
The genus Streptocarpus comprises species with diverse body plans. Caulescent species produce leaves...
Acaulescent species of Streptocarpus Lindl. show unusual patterns of growth, characterized by anisoc...
KNOTTEDI-like homeobox (KNOXI) genes regulate development of the leaf from the shoot apical meristem...
Neofunctionalization following gene duplication is thought to be one of the key drivers in generatin...
<div><p>Neofunctionalization following gene duplication is thought to be one of the key drivers in g...
The Three Amino acid Loop Extension (TALE) proteins constitute an ancestral superclass of homeodomai...
Class I KNOTTED1-LIKE homeobox (KNOX) proteins regulate development of the multicellular diploid spo...
Leaf primordia initiation takes place at the flanks of SAM and then passes through common developmen...
Streptocarpus is a genus showing great variation in vegetative plant architecture and hence provides...
The grape family (Vitaceae) is a large group of plants consisting of approximately 900 species. Cult...
A key question in biology is how changes in gene function or regulation produce new morphologies dur...
KNOTTED-like homeodomain (KNOX) genes are transcriptional regulators that play an important role in ...
<p>(<b>A-B</b>) Morphology of <sub><i>pro</i></sub><i>35S</i>:<i>amiR</i><sup><i>159</i></sup><i>-KN...
The KNOX (KNOTTED1-like homeobox) transcription factors play a pivotal role in leaf and meristem dev...
The genus Streptocarpus comprises species with diverse body plans. Caulescent species produce leaves...
The genus Streptocarpus comprises species with diverse body plans. Caulescent species produce leaves...
Acaulescent species of Streptocarpus Lindl. show unusual patterns of growth, characterized by anisoc...
KNOTTEDI-like homeobox (KNOXI) genes regulate development of the leaf from the shoot apical meristem...
Neofunctionalization following gene duplication is thought to be one of the key drivers in generatin...
<div><p>Neofunctionalization following gene duplication is thought to be one of the key drivers in g...
The Three Amino acid Loop Extension (TALE) proteins constitute an ancestral superclass of homeodomai...
Class I KNOTTED1-LIKE homeobox (KNOX) proteins regulate development of the multicellular diploid spo...
Leaf primordia initiation takes place at the flanks of SAM and then passes through common developmen...
Streptocarpus is a genus showing great variation in vegetative plant architecture and hence provides...
The grape family (Vitaceae) is a large group of plants consisting of approximately 900 species. Cult...
A key question in biology is how changes in gene function or regulation produce new morphologies dur...
KNOTTED-like homeodomain (KNOX) genes are transcriptional regulators that play an important role in ...
<p>(<b>A-B</b>) Morphology of <sub><i>pro</i></sub><i>35S</i>:<i>amiR</i><sup><i>159</i></sup><i>-KN...
The KNOX (KNOTTED1-like homeobox) transcription factors play a pivotal role in leaf and meristem dev...