The process of embryogenesis depends on differential regulation of genes in the spatial components defined by the embryonic cells (blastomeres). Developmental regulation is mediated by complex, hardwired genomic control systems consisting of clusters of multiple target sites at which specific interactions with regionally presented transcription factors occur. In the age of genomics and gene-transfer technology, the sea urchin embryo provides unique opportunities for experimental analysis of these processes. Research on gene regulation in sea urchin embryos in the past year has seen remarkable progress in two large areas: in understanding functional cis-regulatory architecture; and in understanding the mechanism by which the axial coordinate...
The current state of the gene regulatory network for endomesoderm specification in sea urchin embryo...
The current state of the gene regulatory network for endomesoderm specification in sea urchin embryo...
The current state of the gene regulatory network for endomesoderm specification in sea urchin embryo...
The process of embryogenesis depends on differential regulation of genes in the spatial components d...
Animals consist of body parts which are spatially discrete functional units. The spatial separation ...
Animals consist of body parts which are spatially discrete functional units. The spatial separation ...
The experimental approach presented here aims to understand the mechanisms by which differential gen...
Sea urchin embryos begin zygotic transcription shortly after the egg is fertilized. Throughout the ...
A growing body of evidence shows that gene expression in multicellular organisms is controlled by th...
A growing body of evidence shows that gene expression in multicellular organisms is controlled by th...
Spatially controlled genes expressed in the early sea urchin embryo have been characterized, and the...
Spatially controlled genes expressed in the early sea urchin embryo have been characterized, and the...
This chapter considers special methodologies developed for gene regulatory network (GRN) analysis an...
This chapter considers special methodologies developed for gene regulatory network (GRN) analysis an...
The cis-regulatory systems that control developmental expression of two sea urchin genes have been s...
The current state of the gene regulatory network for endomesoderm specification in sea urchin embryo...
The current state of the gene regulatory network for endomesoderm specification in sea urchin embryo...
The current state of the gene regulatory network for endomesoderm specification in sea urchin embryo...
The process of embryogenesis depends on differential regulation of genes in the spatial components d...
Animals consist of body parts which are spatially discrete functional units. The spatial separation ...
Animals consist of body parts which are spatially discrete functional units. The spatial separation ...
The experimental approach presented here aims to understand the mechanisms by which differential gen...
Sea urchin embryos begin zygotic transcription shortly after the egg is fertilized. Throughout the ...
A growing body of evidence shows that gene expression in multicellular organisms is controlled by th...
A growing body of evidence shows that gene expression in multicellular organisms is controlled by th...
Spatially controlled genes expressed in the early sea urchin embryo have been characterized, and the...
Spatially controlled genes expressed in the early sea urchin embryo have been characterized, and the...
This chapter considers special methodologies developed for gene regulatory network (GRN) analysis an...
This chapter considers special methodologies developed for gene regulatory network (GRN) analysis an...
The cis-regulatory systems that control developmental expression of two sea urchin genes have been s...
The current state of the gene regulatory network for endomesoderm specification in sea urchin embryo...
The current state of the gene regulatory network for endomesoderm specification in sea urchin embryo...
The current state of the gene regulatory network for endomesoderm specification in sea urchin embryo...