Brachyury is a T-box family transcription factor and plays pivotal roles in morphogenesis. In sea urchin embryos, Brachyury is expressed in the invaginating endoderm, and in the oral ectoderm of the invaginating mouth opening. The oral ectoderm is hypothesized to serve as a signaling center for oral (ventral)-aboral (dorsal) axis formation and to function as a ventral organizer. Our previous results of a single-cell RNA-seq (scRNA-seq) atlas of early Strongylocentrotus purpuratus embryos categorized the constituent cells into 22 clusters, in which the endoderm consists of three clusters and the oral ectoderm four clusters (Foster et al., 2020). Here we examined which clusters of cells expressed Brachyury in relation to the morphogenesis and...
AbstractThe current gene regulatory network (GRN) for the sea urchin embryo pertains to pregastrular...
AbstractWe present an initial characterization of a database that contains temporal expression profi...
The process of embryogenesis depends on differential regulation of genes in the spatial components d...
Bilaterians share a conserved molecular toolkit depicted in Gene Regulatory Networks (GRNs) that con...
Brachyury is a transcription factor that functions in gastrulation and endoderm development througho...
Brachyury is a transcription factor that functions in gastrulation and endoderm development througho...
AbstractThe studies described here sought to identify and characterize genes involved in the gastrul...
AbstractThe ectoderm of the sea urchin embryo has been a useful system for understanding how regions...
An early set of blastomere specifications occurs during cleavage in the sea urchin embryo, the resul...
As the result of early specification processes, sea urchin embryos eventually form various mesoderma...
Echinoderms, which are phylogenetically related to vertebrates and produce large numbers of transpar...
AbstractAs the result of early specification processes, sea urchin embryos eventually form various m...
AbstractThis work concerns the expression of two transcription factors during the development of the...
This work concerns the expression of two transcription factors during the development of the sea urc...
AbstractThe sea urchin oral ectoderm gene regulatory network (GRN) model has increased in complexity...
AbstractThe current gene regulatory network (GRN) for the sea urchin embryo pertains to pregastrular...
AbstractWe present an initial characterization of a database that contains temporal expression profi...
The process of embryogenesis depends on differential regulation of genes in the spatial components d...
Bilaterians share a conserved molecular toolkit depicted in Gene Regulatory Networks (GRNs) that con...
Brachyury is a transcription factor that functions in gastrulation and endoderm development througho...
Brachyury is a transcription factor that functions in gastrulation and endoderm development througho...
AbstractThe studies described here sought to identify and characterize genes involved in the gastrul...
AbstractThe ectoderm of the sea urchin embryo has been a useful system for understanding how regions...
An early set of blastomere specifications occurs during cleavage in the sea urchin embryo, the resul...
As the result of early specification processes, sea urchin embryos eventually form various mesoderma...
Echinoderms, which are phylogenetically related to vertebrates and produce large numbers of transpar...
AbstractAs the result of early specification processes, sea urchin embryos eventually form various m...
AbstractThis work concerns the expression of two transcription factors during the development of the...
This work concerns the expression of two transcription factors during the development of the sea urc...
AbstractThe sea urchin oral ectoderm gene regulatory network (GRN) model has increased in complexity...
AbstractThe current gene regulatory network (GRN) for the sea urchin embryo pertains to pregastrular...
AbstractWe present an initial characterization of a database that contains temporal expression profi...
The process of embryogenesis depends on differential regulation of genes in the spatial components d...