AbstractWe have identified and characterized c-hairy1, an avian homolog of the Drosophila segmentation gene, hairy. c-hairy1 is strongly expressed in the presomitic mesoderm, where its mRNA exhibits cyclic waves of expression whose temporal periodicity corresponds to the formation time of one somite (90 min). The apparent movement of these waves is due to coordinated pulses of c-hairy1 expression, not to cell displacement along the anteroposterior axis, nor to propagation of an activating signal. Rather, the rhythmic c-hairy mRNA expression is an autonomous property of the paraxial mesoderm. These results provide molecular evidence for a developmental clock linked to segmentation and somitogenesis of the paraxial mesoderm, and support the p...
The segmental pattern of the spine is established early in development, when the vertebral precursor...
AbstractA molecular oscillator regulates the pace of vertebrate segmentation. Here, we show that the...
AbstractVertebrate segmentation relies on a molecular oscillator, the segmentation clock, which cont...
AbstractWe have identified and characterized c-hairy1, an avian homolog of the Drosophila segmentati...
The most obvious segments of the vertebrate embryo are the trunk mesodermal somites which give rise ...
AbstractThe most obvious segments of the vertebrate embryo are the trunk mesodermal somites which gi...
Somitic segmentation provides the framework on which the segmental pattern of the vertebrae, some mu...
AbstractVertebrate hairy genes are expressed in patterns thought to be readouts of a “segmentation c...
AbstractThe periodic formation of somites during vertebrate segmentation has been suggested to invol...
The segmented aspect of the vertebrate body plan first arises through the sequential formation of so...
Segmentation of the vertebrate body axis is initiated early in development with the sequential forma...
Vertebrate somitogenesis comprises the generation of a temporal periodicity, the establishment of an...
AbstractVertebrate somitogenesis comprises the generation of a temporal periodicity, the establishme...
Vertebrate somitogenesis comprises the generation of a temporal periodicity, the establishment of an...
The segmental pattern of the spine is established early in development, when the vertebral precursor...
AbstractA molecular oscillator regulates the pace of vertebrate segmentation. Here, we show that the...
AbstractVertebrate segmentation relies on a molecular oscillator, the segmentation clock, which cont...
AbstractWe have identified and characterized c-hairy1, an avian homolog of the Drosophila segmentati...
The most obvious segments of the vertebrate embryo are the trunk mesodermal somites which give rise ...
AbstractThe most obvious segments of the vertebrate embryo are the trunk mesodermal somites which gi...
Somitic segmentation provides the framework on which the segmental pattern of the vertebrae, some mu...
AbstractVertebrate hairy genes are expressed in patterns thought to be readouts of a “segmentation c...
AbstractThe periodic formation of somites during vertebrate segmentation has been suggested to invol...
The segmented aspect of the vertebrate body plan first arises through the sequential formation of so...
Segmentation of the vertebrate body axis is initiated early in development with the sequential forma...
Vertebrate somitogenesis comprises the generation of a temporal periodicity, the establishment of an...
AbstractVertebrate somitogenesis comprises the generation of a temporal periodicity, the establishme...
Vertebrate somitogenesis comprises the generation of a temporal periodicity, the establishment of an...
The segmental pattern of the spine is established early in development, when the vertebral precursor...
AbstractA molecular oscillator regulates the pace of vertebrate segmentation. Here, we show that the...
AbstractVertebrate segmentation relies on a molecular oscillator, the segmentation clock, which cont...