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E-MTAB-12719 RNA-seq of coding RNA from single cells Mus musculus, Mus musculus

Single-cell transcriptomic analysis of Sox17-expressing lineages reveals dynamic developmental trajectories and distinct gene regulatory networks during embryogenesis

·Released July 20, 2023
2
Samples
2
Assays
Description

As Sox17 plays a critical role in the development of multiple cell types during early embryogenesis, we utilized a dual-color lineage-tracing strategy in combination with single-cell RNA sequencing (scRNAseq) to capture and analyze Sox17-expressing lineages. GFP production from Sox17GFPCre allele marks cells that currently express Sox17 or short-term progeny of Sox17 expressing progenitors. TdTomato production from R26LSL.TdTomato reporter allele in the presence of Sox17GFPCre marks long-term progeny of Sox17-expressing progenitors. In brief, GFP and Tdtomato positive cells were isolated from E9.5 embryos of specific genotypes to generate two separate scRNAseq datasets, referred to in the manuscript as the GFP and TdTomato datasets, respectively.

Sample Attributes
Organism
Mus musculus
Age
embryonic day 9.0 to 9.5
Developmental stage
embryo
Sex
mixed
Organism part
embryo
Strain
CD1, CD1 x C57Bl/6J
Individual
1, 2
Phenotype
GFP-positive, TdTomato-positive
Genotype
Sox17.GFPCre heterozygous; R26.WT homozygous, Sox17.GFPCre heterozygous; R26.LSLTdTomato heterozygous
Experiment Info
Accession
E-MTAB-12719
Type
RNA-seq of coding RNA from single cells
Organism
Mus musculus, Mus musculus
Released
July 20, 2023
Submitter
Shristi Shrestha、 Mark Magnuson、 Linh Trinh
External Links
ArrayExpress source
Analysis Services
Analysis Services

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