AbstractHere we characterize the response of the Drosophila segmentation system to mutations in two gap genes, Kr and kni, in the form of single or double homozygotes and single heterozygotes. Segmentation gene expression in these genotypes was quantitatively monitored with cellular resolution in space and 6.5 to 13min resolution in time. As is the case with wild type, we found that gene expression domains in the posterior portion of the embryo shift to the anterior over time. In certain cases, such as the gt posterior domain in Kr mutants, the shifts are significantly larger than is seen in wild type embryos. We also investigated the effects of Kr and kni on the variability of gene expression. Mutations often produce variable phenotypes, a...
AbstractThe evolution of canalized traits is a central question in evolutionary biology. Natural var...
Unlike transcriptional regulation, the post-transcriptional mechanisms underlying zygotic segmentati...
Motivation: Expression of segmentation genes plays a crucial role in organization of the Drosophila ...
<div><p>In early development, genes are expressed in spatial patterns which later define cellular id...
AbstractHere we characterize the expression of the full system of genes which control the segmentati...
In early development, genes are expressed in spatial patterns which later define cellular identities...
AbstractDevelopmental processes are robust, or canalised: dynamic patterns of gene expression across...
AbstractDevelopmental processes are robust, or canalised: dynamic patterns of gene expression across...
AbstractHere we characterize the expression of the full system of genes which control the segmentati...
Segmentation in Drosophila embryogenesis occurs through a hierarchical cascade of regulatory gene ex...
A widely appreciated aspect of developmental robustness is pattern formation in proportion to size. ...
AbstractA novel combination of high-resolution time-course expression data and computational modelli...
Segmentation in Drosophila embryogenesis occurs through a hierarchical cascade of regulatory gene ex...
A widely appreciated aspect of developmental robustness is pattern formation in proportion to size. ...
Embryonic development is driven by spatial patterns of gene expression that determine the fate of ea...
AbstractThe evolution of canalized traits is a central question in evolutionary biology. Natural var...
Unlike transcriptional regulation, the post-transcriptional mechanisms underlying zygotic segmentati...
Motivation: Expression of segmentation genes plays a crucial role in organization of the Drosophila ...
<div><p>In early development, genes are expressed in spatial patterns which later define cellular id...
AbstractHere we characterize the expression of the full system of genes which control the segmentati...
In early development, genes are expressed in spatial patterns which later define cellular identities...
AbstractDevelopmental processes are robust, or canalised: dynamic patterns of gene expression across...
AbstractDevelopmental processes are robust, or canalised: dynamic patterns of gene expression across...
AbstractHere we characterize the expression of the full system of genes which control the segmentati...
Segmentation in Drosophila embryogenesis occurs through a hierarchical cascade of regulatory gene ex...
A widely appreciated aspect of developmental robustness is pattern formation in proportion to size. ...
AbstractA novel combination of high-resolution time-course expression data and computational modelli...
Segmentation in Drosophila embryogenesis occurs through a hierarchical cascade of regulatory gene ex...
A widely appreciated aspect of developmental robustness is pattern formation in proportion to size. ...
Embryonic development is driven by spatial patterns of gene expression that determine the fate of ea...
AbstractThe evolution of canalized traits is a central question in evolutionary biology. Natural var...
Unlike transcriptional regulation, the post-transcriptional mechanisms underlying zygotic segmentati...
Motivation: Expression of segmentation genes plays a crucial role in organization of the Drosophila ...