» Articles » PMID: 30404016

The Mammalian Spermatogenesis Single-Cell Transcriptome, from Spermatogonial Stem Cells to Spermatids

Abstract

Spermatogenesis is a complex and dynamic cellular differentiation process critical to male reproduction and sustained by spermatogonial stem cells (SSCs). Although patterns of gene expression have been described for aggregates of certain spermatogenic cell types, the full continuum of gene expression patterns underlying ongoing spermatogenesis in steady state was previously unclear. Here, we catalog single-cell transcriptomes for >62,000 individual spermatogenic cells from immature (postnatal day 6) and adult male mice and adult men. This allowed us to resolve SSC and progenitor spermatogonia, elucidate the full range of gene expression changes during male meiosis and spermiogenesis, and derive unique gene expression signatures for multiple mouse and human spermatogenic cell types and/or subtypes. These transcriptome datasets provide an information-rich resource for studies of SSCs, male meiosis, testicular cancer, male infertility, or contraceptive development, as well as a gene expression roadmap to be emulated in efforts to achieve spermatogenesis in vitro.

Citing Articles

A dynamic transcriptional cell atlas of testes development after birth in Hu sheep.

Su J, Yang Y, Wang D, Su H, Zhao F, Zhang C BMC Biol. 2025; 23(1):78.

PMID: 40075363 PMC: 11905504. DOI: 10.1186/s12915-025-02186-y.


An integrated transcriptomic analysis unveils the regulatory roles of RNA binding proteins during human spermatogenesis.

Xu N, Qin Y, Liu Y, Guan Y, Xin H, Ou J Front Endocrinol (Lausanne). 2025; 16:1522394.

PMID: 40034235 PMC: 11872710. DOI: 10.3389/fendo.2025.1522394.


Single-cell transcriptomic atlas of the human testis across the reproductive lifespan.

Cui L, Nie X, Guo Y, Ren P, Guo Y, Wang X Nat Aging. 2025; .

PMID: 40033047 DOI: 10.1038/s43587-025-00824-2.


Single-cell RNA-seq and pathological phenotype reveal the functional atlas and precise roles of Sox30 in testicular cell development and differentiation.

Xie C, Zhang H, Li Y, Li Q, Wen Y, Liu J Cell Death Dis. 2025; 16(1):110.

PMID: 39971903 PMC: 11840104. DOI: 10.1038/s41419-025-07442-1.


Characterization of Metabolic Patterns in Mouse Spermatogenesis and Its Clinical Implications in Humans.

Wang J, Chen M, Yao Y, Zhu M, Jiang Y, Duan J Int J Mol Sci. 2025; 26(3).

PMID: 39940768 PMC: 11816495. DOI: 10.3390/ijms26031001.


References
1.
Helsel A, Oatley J . Transplantation as a Quantitative Assay to Study Mammalian Male Germline Stem Cells. Methods Mol Biol. 2016; 1463:155-172. DOI: 10.1007/978-1-4939-4017-2_12. View

2.
Shima J, McLean D, McCarrey J, Griswold M . The murine testicular transcriptome: characterizing gene expression in the testis during the progression of spermatogenesis. Biol Reprod. 2004; 71(1):319-30. DOI: 10.1095/biolreprod.103.026880. View

3.
Ghiassi-Nejad Z, Hernandez-Gea V, Woodrell C, Lang U, Dumic K, Kwong A . Reduced hepatic stellate cell expression of Kruppel-like factor 6 tumor suppressor isoforms amplifies fibrosis during acute and chronic rodent liver injury. Hepatology. 2012; 57(2):786-96. PMC: 3522757. DOI: 10.1002/hep.26056. View

4.
Pekarsky Y, Koval A, Hallas C, Bichi R, Tresini M, Malstrom S . Tcl1 enhances Akt kinase activity and mediates its nuclear translocation. Proc Natl Acad Sci U S A. 2000; 97(7):3028-33. PMC: 16186. DOI: 10.1073/pnas.97.7.3028. View

5.
Neuhaus N, Yoon J, Terwort N, Kliesch S, Seggewiss J, Huge A . Single-cell gene expression analysis reveals diversity among human spermatogonia. Mol Hum Reprod. 2017; 23(2):79-90. DOI: 10.1093/molehr/gaw079. View