Embryonic development is heavily dependent on temporally and spatially restricted gene expression. Spatially resolved measurements of gene expression are therefore crucial for identifying novel regulators and the understanding of their function. However, in situ methods do not resolve global gene expression, and sequencing-based methods usually do not provide spatial information. Here, we describe tomo-seq, a method that combines classical histological sectioning of embryos or tissues with a highly sensitive RNA-sequencing technique. Application of tomo-seq to zebrafish embryos allows reconstructing the spatial gene expression of thousands of genes
Analysis of the pattern of proteins or messenger RNAs (mRNAs) in histological tissue sections is a c...
Analysis of differential gene expression is crucial for the study of cell fate and behavior during e...
Analysis of differential gene expression is crucial for the study of cell fate and behavior during e...
To improve our understanding of pattern formation during development and disease we heavily rely on ...
To improve our understanding of pattern formation during development and disease we heavily rely on ...
Advancing our understanding of embryonic development is heavily dependent on identification of novel...
Advancing our understanding of embryonic development is heavily dependent on identification of novel...
Advancing our understanding of embryonic development is heavily dependent on identification of novel...
SummaryAdvancing our understanding of embryonic development is heavily dependent on identification o...
Summary: RNA tomography or tomo-seq combines mRNA sequencing and cryo-sectioning to spatially resolv...
<div><p>Complex spatial and temporal patterns of gene expression underlie embryo differentiation, ye...
Complex spatial and temporal patterns of gene expression underlie embryo differentiation, yet method...
Complex spatial and temporal patterns of gene expression underlie embryo differentiation, yet method...
Spatial localization is a key determinant of cellular fate and behavior, but methods for spatially r...
Early stages of embryogenesis depend on subcellular localization and transport of maternal mRNA. How...
Analysis of the pattern of proteins or messenger RNAs (mRNAs) in histological tissue sections is a c...
Analysis of differential gene expression is crucial for the study of cell fate and behavior during e...
Analysis of differential gene expression is crucial for the study of cell fate and behavior during e...
To improve our understanding of pattern formation during development and disease we heavily rely on ...
To improve our understanding of pattern formation during development and disease we heavily rely on ...
Advancing our understanding of embryonic development is heavily dependent on identification of novel...
Advancing our understanding of embryonic development is heavily dependent on identification of novel...
Advancing our understanding of embryonic development is heavily dependent on identification of novel...
SummaryAdvancing our understanding of embryonic development is heavily dependent on identification o...
Summary: RNA tomography or tomo-seq combines mRNA sequencing and cryo-sectioning to spatially resolv...
<div><p>Complex spatial and temporal patterns of gene expression underlie embryo differentiation, ye...
Complex spatial and temporal patterns of gene expression underlie embryo differentiation, yet method...
Complex spatial and temporal patterns of gene expression underlie embryo differentiation, yet method...
Spatial localization is a key determinant of cellular fate and behavior, but methods for spatially r...
Early stages of embryogenesis depend on subcellular localization and transport of maternal mRNA. How...
Analysis of the pattern of proteins or messenger RNAs (mRNAs) in histological tissue sections is a c...
Analysis of differential gene expression is crucial for the study of cell fate and behavior during e...
Analysis of differential gene expression is crucial for the study of cell fate and behavior during e...