The KNAT1 gene is a member of the Class I KNOX homeobox gene family and is thought to play an important role in meristem development and leaf morphogenesis. Recent studies have demonstrated that KNAT1/BP regulates the architecture of the inflorescence by affecting pedicle development in Arabidopsis thaliana. Herein, we report the characterization of an Arabidopsis T-DNA insertion mutant that shares considerable phenotypic similarity to the previously identified mutant brevipedicle (bp). Molecular and genetic analyses showed that the mutant is allelic to bp and that the T-DNA is located within the first helix of the KNAT1 homeodomain (HD). Although the mutation causes a typical abnormality of short pedicles, propendent siliques, and semidwar...
KNOTTED1-like homeobox (KNOX) genes promote stem cell activity and must be repressed to form determi...
The shoot apical meristem, a small dome-shaped structure at the shoot apex of higher plants, is esta...
Class 1 KNOTTED-like (KNOX) transcription factors control cell meristematic identity. An investigati...
Flowering plants display a remarkable range of inflorescence architecture, and pedicel characteristi...
The brevipedicellus (bp) mutant, caused by a loss-of-function mutation in the KNAT1 homeobox gene, i...
Class 1 KNOX genes have been demonstrated to play roles in the maintenance of the shoot apical merls...
The class I KNOX transcription factors SHOOT MERISTEMLESS (STM) and KNAT1 are important regulators o...
In Arabidopsis thaliana, major architectural changes take place during floral transition and affect ...
The maize homebox gene knotted1 (kn1) is expressed in vegetative and floral meristems and is down-re...
<div><p>Homogentisate solanesyltransferase (HST) plays an important role in plastoquinone (PQ) biosy...
The shoot apical meristem comprises undifferentiated stem cells and their derivatives, which include...
Inflorescence architecture varies widely among flowering plants, serving to optimize the display of ...
Homogentisate solanesyltransferase (HST) plays an important role in plastoquinone (PQ) biosynthesis ...
Homogentisate solanesyltransferase (HST) plays an important role in plastoquinone (PQ) biosynthesis ...
In Arabidopsis, the central stem cells of the shoot apical meristem (SAM) are indefinitely maintaine...
KNOTTED1-like homeobox (KNOX) genes promote stem cell activity and must be repressed to form determi...
The shoot apical meristem, a small dome-shaped structure at the shoot apex of higher plants, is esta...
Class 1 KNOTTED-like (KNOX) transcription factors control cell meristematic identity. An investigati...
Flowering plants display a remarkable range of inflorescence architecture, and pedicel characteristi...
The brevipedicellus (bp) mutant, caused by a loss-of-function mutation in the KNAT1 homeobox gene, i...
Class 1 KNOX genes have been demonstrated to play roles in the maintenance of the shoot apical merls...
The class I KNOX transcription factors SHOOT MERISTEMLESS (STM) and KNAT1 are important regulators o...
In Arabidopsis thaliana, major architectural changes take place during floral transition and affect ...
The maize homebox gene knotted1 (kn1) is expressed in vegetative and floral meristems and is down-re...
<div><p>Homogentisate solanesyltransferase (HST) plays an important role in plastoquinone (PQ) biosy...
The shoot apical meristem comprises undifferentiated stem cells and their derivatives, which include...
Inflorescence architecture varies widely among flowering plants, serving to optimize the display of ...
Homogentisate solanesyltransferase (HST) plays an important role in plastoquinone (PQ) biosynthesis ...
Homogentisate solanesyltransferase (HST) plays an important role in plastoquinone (PQ) biosynthesis ...
In Arabidopsis, the central stem cells of the shoot apical meristem (SAM) are indefinitely maintaine...
KNOTTED1-like homeobox (KNOX) genes promote stem cell activity and must be repressed to form determi...
The shoot apical meristem, a small dome-shaped structure at the shoot apex of higher plants, is esta...
Class 1 KNOTTED-like (KNOX) transcription factors control cell meristematic identity. An investigati...