AbstractMembers of the fibroblast growth factor (FGF) family of peptide ligands have been implicated in otic placode induction in several vertebrate species. Here, we have functionally analyzed the roles of fgf3 and fgf8 in zebrafish otic development. The role of fgf8 was assessed by analyzing acerebellar (ace) mutants. fgf3 function was disrupted by injecting embryos with antisense morpholino oligomers (MO) specifically designed to block translation of fgf3 transcripts. Disruption of either fgf3 or fgf8 causes moderate reduction in the size of the otic vesicle. Injection of fgf3-MO into ace/ace mutants causes much more severe reduction or complete loss of otic tissue. Moreover, preplacode cells fail to express pax8 and pax2.1, indicating d...
Vertebrates have evolved a unique way to sense their environment: placodallyderived sense organs. Th...
<p>(A,B) At otic placode stages, FGF3 from the hindbrain patterns anterior otic regions, while RA si...
Vertebrate sensory organs develop in part from cranial placodes, a series of ectodermal thickenings ...
AbstractMembers of the fibroblast growth factor (FGF) family of peptide ligands have been implicated...
Fgf3 has long been implicated in otic placode induction and early development of the otocyst; howeve...
on to the early requirement for Fgf signaling, the abnormal differentiation of inner ear structures ...
AbstractDespite the vital importance of Fgf for otic induction, previous attempts to study otic indu...
<div><p>During development of the zebrafish inner ear, regional patterning in the ventral half of th...
In vertebrates, the otic placode forms inner ear and epibranchial placodes produce sensory ganglia w...
Fibroblast growth factors (Fgfs) play important roles in developmental processes of the inner ear, i...
<div><p>Essential cellular components of the paired sensory organs of the vertebrate head are derive...
Essential cellular components of the paired sensory organs of the vertebrate head are derived from t...
Neuroblasts of the statoacoustic ganglion (SAG) initially form in the floor of the otic vesicle duri...
Members of the fibroblast growth factor (FGF) gene family control formation of the body plan and org...
Members of the fibroblast growth factor (FGF) gene family control formation of the body plan and org...
Vertebrates have evolved a unique way to sense their environment: placodallyderived sense organs. Th...
<p>(A,B) At otic placode stages, FGF3 from the hindbrain patterns anterior otic regions, while RA si...
Vertebrate sensory organs develop in part from cranial placodes, a series of ectodermal thickenings ...
AbstractMembers of the fibroblast growth factor (FGF) family of peptide ligands have been implicated...
Fgf3 has long been implicated in otic placode induction and early development of the otocyst; howeve...
on to the early requirement for Fgf signaling, the abnormal differentiation of inner ear structures ...
AbstractDespite the vital importance of Fgf for otic induction, previous attempts to study otic indu...
<div><p>During development of the zebrafish inner ear, regional patterning in the ventral half of th...
In vertebrates, the otic placode forms inner ear and epibranchial placodes produce sensory ganglia w...
Fibroblast growth factors (Fgfs) play important roles in developmental processes of the inner ear, i...
<div><p>Essential cellular components of the paired sensory organs of the vertebrate head are derive...
Essential cellular components of the paired sensory organs of the vertebrate head are derived from t...
Neuroblasts of the statoacoustic ganglion (SAG) initially form in the floor of the otic vesicle duri...
Members of the fibroblast growth factor (FGF) gene family control formation of the body plan and org...
Members of the fibroblast growth factor (FGF) gene family control formation of the body plan and org...
Vertebrates have evolved a unique way to sense their environment: placodallyderived sense organs. Th...
<p>(A,B) At otic placode stages, FGF3 from the hindbrain patterns anterior otic regions, while RA si...
Vertebrate sensory organs develop in part from cranial placodes, a series of ectodermal thickenings ...