AbstractThe anterior–posterior identities of cells in the hindbrain and cranial neural crest are thought to be determined by their Hox gene expression status, but how and when cells become committed to these identities remain unclear. Here we address this in zebrafish by cell transplantation, to test plasticity in hox expression in single cells. We transplanted cells alone, or in small groups, between hindbrain rhombomeres or between the neural crest primordia of pharyngeal arches. We found that transplanted cells regulated hox expression according to their new environments. The degree of plasticity, however, depended on both the timing and the size of the transplant. At later stages transplanted cells were more likely to be irreversibly co...
Previous work has implicated Hox genes in the development of the branchial region. At 8 1/2 days I h...
We determine the timing of neural commitment by hindbrain tissue in the zebrafish using microsurgica...
Hox genes play a central role in neural crest (NC) patterning particularly in the cranial region of ...
AbstractThe anterior–posterior identities of cells in the hindbrain and cranial neural crest are tho...
We have investigated the pattern and regulation of Hoxa3 expression in the hindbrain and associated ...
AbstractWe determine the timing of neural commitment by hindbrain tissue in the zebrafish using micr...
AbstractThe developing vertebrate hindbrain consists of segments known as rhombomeres, which express...
AbstractVertebrate Hox genes are generally believed to initiate expression at the primitive streak o...
AbstractThe evolution of chordates was accompanied by critical anatomical innovations in craniofacia...
AbstractNeurons of cranial sensory ganglia are derived from the neural crest and ectodermal placodes...
We have investigated the pattern and regulation of Hoxa3 expression in the hindbrain and associated ...
AbstractThe vertebrate hindbrain is divided into serially homologous segments, the rhombomeres (r). ...
AbstractThe vertebrate branchiomotor neurons are organized in a pattern that corresponds with the se...
AbstractThe developing vertebrate hindbrain consists of segments known as rhombomeres, which express...
SYNOPSIS. Pattern formation in the developing hindbrain and cranio-facial region has been studied in...
Previous work has implicated Hox genes in the development of the branchial region. At 8 1/2 days I h...
We determine the timing of neural commitment by hindbrain tissue in the zebrafish using microsurgica...
Hox genes play a central role in neural crest (NC) patterning particularly in the cranial region of ...
AbstractThe anterior–posterior identities of cells in the hindbrain and cranial neural crest are tho...
We have investigated the pattern and regulation of Hoxa3 expression in the hindbrain and associated ...
AbstractWe determine the timing of neural commitment by hindbrain tissue in the zebrafish using micr...
AbstractThe developing vertebrate hindbrain consists of segments known as rhombomeres, which express...
AbstractVertebrate Hox genes are generally believed to initiate expression at the primitive streak o...
AbstractThe evolution of chordates was accompanied by critical anatomical innovations in craniofacia...
AbstractNeurons of cranial sensory ganglia are derived from the neural crest and ectodermal placodes...
We have investigated the pattern and regulation of Hoxa3 expression in the hindbrain and associated ...
AbstractThe vertebrate hindbrain is divided into serially homologous segments, the rhombomeres (r). ...
AbstractThe vertebrate branchiomotor neurons are organized in a pattern that corresponds with the se...
AbstractThe developing vertebrate hindbrain consists of segments known as rhombomeres, which express...
SYNOPSIS. Pattern formation in the developing hindbrain and cranio-facial region has been studied in...
Previous work has implicated Hox genes in the development of the branchial region. At 8 1/2 days I h...
We determine the timing of neural commitment by hindbrain tissue in the zebrafish using microsurgica...
Hox genes play a central role in neural crest (NC) patterning particularly in the cranial region of ...