ArticleeLife2025
Comprehensive profiling of migratory primordial germ cells reveals niche-specific differences in non-canonical Wnt and Nodal-Lefty signaling in anterior vs posterior migrants.
Article in eLife, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed.
- Cell-autonomous control coupled with tissue context regulates the cessation of migration at the site of organ development.Development (Cambridge, England) · 2026Article
- Harnessing the Power ofCold Spring Harbor perspectives in biology · 2026Review
- Primordial germ cells experience increasing physical confinement and DNA damage during migration in the mouse embryo.Science advances · 2026Article
- Article
- Evaluating Selective Quality Control in Mammalian Oogenesis: Evidence and Opportunities.Annual review of genetics · 2025Review
- The fantastic voyage: primordial germ cell migration through the developing mouse embryo.Biochemical Society transactions · 2025Article
- Clonal analysis reveals differential PGC contributions to the early germline and ovarian reserve.bioRxiv : the preprint server for biology · 2025Article
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Abstract
Mammalian primordial germ cells (PGCs) migrate asynchronously through the embryonic hindgut and dorsal mesentery to reach the gonads. We previously found that interaction with different somatic niches regulates mouse PGC proliferation along the migration route. To characterize transcriptional heterogeneity of migrating PGCs and their niches, we performed single-cell RNA sequencing of 13,262 mouse PGCs and 7868 surrounding somatic cells during migration (E9.5, E10.5, E11.5) and in anterior vs posterior locations to enrich for leading and lagging migrants. Analysis of PGCs by position revealed dynamic gene expression changes between faster or earlier migrants in the anterior and slower or later migrants in the posterior at E9.5; these differences include migration-associated actin polymerization machinery and epigenetic reprogramming-associated genes. We furthermore identified changes in signaling with various somatic niches, notably strengthened interactions with hindgut epithelium via non-canonical WNT (ncWNT) in posterior PGCs compared to anterior. Reanalysis of a previously published dataset suggests that ncWNT signaling from the hindgut epithelium to early migratory PGCs is conserved in humans. Trajectory inference methods identified putative differentiation trajectories linking cell states across timepoints and from posterior to anterior in our mouse dataset. At E9.5, we mainly observed differences in cell adhesion and actin cytoskeletal dynamics between E9.5 posterior and anterior migrants. At E10.5, we observed divergent gene expression patterns between putative differentiation trajectories from posterior to anterior, including Nodal signaling response genes
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