AbstractThe specification and morphogenesis of slow and fast twitch muscle fibers are crucial for muscle development. In zebrafish, Hedgehog is required for slow muscle fiber specification. However, less is known about signals that promote development of fast muscle fibers, which constitute the majority of somitic cells. We show that when Hedgehog signaling is blocked, fast muscle cell elongation is disrupted. Using genetic mosaics, we show that Hedgehog signal perception is required by slow muscle cells but not by fast muscle cells for fast muscle cell elongation. Furthermore, we show that slow muscle cells are sufficient to pattern the medial to lateral wave of fast muscle fiber morphogenesis even when fast muscle cells cannot perceive th...
AbstractSlow-twitch muscle fibers of the zebrafish myotome undergo a unique set of morphogenetic cel...
AbstractBackground: In the zebrafish embryo, the differentiation of distinct muscle fiber types has ...
In tetrapod phylogeny, the dramatic modifications of the trunk have received less attention than the...
AbstractThe specification and morphogenesis of slow and fast twitch muscle fibers are crucial for mu...
AbstractIn zebrafish, skeletal muscle precursors can adopt at least three distinct fates: fast, non-...
AbstractVertebrate muscle development begins with the patterning of the paraxial mesoderm by inducti...
AbstractThe specification of different muscle cell types in the zebrafish embryo requires signals th...
Vertebrate muscle development begins with the patterning of the paraxial mesoderm by inductive signa...
AbstractSharp borders between cells with different developmental fates are important for patterning ...
Sharp borders between cells with different developmental fates are important for patterning of inver...
AbstractVertebrate myogenesis is regulated by signaling proteins secreted from surrounding tissues. ...
AbstractThe most obvious segmental structures in the vertebrate embryo are somites: transient struct...
AbstractHedgehog proteins have been implicated in the control of myogenesis in the medial vertebrate...
cells and expressing slow muscle precursors are expanded at 19 hpf (A-D). At 19 hpf, expression is h...
Somitic cells give rise to a variety of cell types in response to Hh, BMP, and FGF signaling. Cell p...
AbstractSlow-twitch muscle fibers of the zebrafish myotome undergo a unique set of morphogenetic cel...
AbstractBackground: In the zebrafish embryo, the differentiation of distinct muscle fiber types has ...
In tetrapod phylogeny, the dramatic modifications of the trunk have received less attention than the...
AbstractThe specification and morphogenesis of slow and fast twitch muscle fibers are crucial for mu...
AbstractIn zebrafish, skeletal muscle precursors can adopt at least three distinct fates: fast, non-...
AbstractVertebrate muscle development begins with the patterning of the paraxial mesoderm by inducti...
AbstractThe specification of different muscle cell types in the zebrafish embryo requires signals th...
Vertebrate muscle development begins with the patterning of the paraxial mesoderm by inductive signa...
AbstractSharp borders between cells with different developmental fates are important for patterning ...
Sharp borders between cells with different developmental fates are important for patterning of inver...
AbstractVertebrate myogenesis is regulated by signaling proteins secreted from surrounding tissues. ...
AbstractThe most obvious segmental structures in the vertebrate embryo are somites: transient struct...
AbstractHedgehog proteins have been implicated in the control of myogenesis in the medial vertebrate...
cells and expressing slow muscle precursors are expanded at 19 hpf (A-D). At 19 hpf, expression is h...
Somitic cells give rise to a variety of cell types in response to Hh, BMP, and FGF signaling. Cell p...
AbstractSlow-twitch muscle fibers of the zebrafish myotome undergo a unique set of morphogenetic cel...
AbstractBackground: In the zebrafish embryo, the differentiation of distinct muscle fiber types has ...
In tetrapod phylogeny, the dramatic modifications of the trunk have received less attention than the...