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1. ATR is a multifunctional regulator of male mouse meiosis

2. The Neonatal and Adult Human Testis Defined at the Single-Cell Level

3. C14ORF39/SIX6OS1 is a constituent of the synaptonemal complex and is essential for mouse fertility

4. The Homeobox Transcription Factor RHOX10 Drives Mouse Spermatogonial Stem Cell Establishment

5. DNA Double Strand Break Response and Limited Repair Capacity in Mouse Elongated Spermatids

6. The Dnmt3L ADD Domain Controls Cytosine Methylation Establishment during Spermatogenesis

7. piRNA-associated proteins and retrotransposons are differentially expressed in murine testis and ovary of aryl hydrocarbon receptor deficient mice

9. Actl7b-deficiency leads to mislocalization of LC8 type dynein light chains and disruption of murine spermatogenesis

10. KDM6A/UTX promotes spermatogenic gene expression across generations but is dispensable for male fertility

11. Closing the preparedness-response gap in time: Operational readiness at points of entry in Europe

12. The testis-specific transcription factor TCFL5 responds to A-MYB to elaborate the male meiotic program in placental mammals

13. A missense in HSF2BP causing primary ovarian insufficiency affects meiotic recombination by its novel interactor C19ORF57/BRME1

16. DAZL mediates a broad translational program regulating expansion and differentiation of spermatogonial progenitors

18. A missense in HSF2BP causing Primary Ovarian Insufficiency affects meiotic recombination by its novel interactor C19ORF57/MIDAP

19. Dynamic and regulated TAF gene expression during mouse embryonic germ cell development

20. GCNA Interacts with Spartan and Topoisomerase II to Regulate Genome Stability

21. Effective training in cross-border infection prevention and response

22. Retinoic Acid and Germ Cell Development in the Ovary and Testis

23. Spermatogonial kinetics in humans

24. Unraveling transcriptome dynamics in human spermatogenesis

25. PD09-11 THE NEONATAL AND ADULT HUMAN TESTIS DEFINED AT THE SINGLE-CELL LEVEL

26. GCNA interacts with Spartan and Topoisomerase II to regulate genome stability

27. Amplification of a broad transcriptional program by a common factor triggers the meiotic cell cycle in mice

29. Author response: An ancient germ cell-specific RNA-binding protein protects the germline from cryptic splice site poisoning

31. ATR is a multifunctional regulator of male mouse meiosis

32. Isolating mitotic and meiotic germ cells from male mice by developmental synchronization, staging, and sorting

33. SETDB1 Links the Meiotic DNA Damage Response to Sex Chromosome Silencing in Mice

34. Periodic production of retinoic acid by meiotic and somatic cells coordinates four transitions in mouse spermatogenesis

35. TAF4b is Required for Mouse Spermatogonial Stem Cell Development

36. ATR is a multifunctional regulator of male mouse meiosis

38. Meioc maintains an extended meiotic prophase I in mice

39. Organization of the Seminiferous Epithelium and the Cycle, and Morphometric Description of Spermatogonial Subtypes (Rodents and Primates)

40. A Neofunctionalized X-Linked Ampliconic Gene Family Is Essential for Male Fertility and Equal Sex Ratio in Mice

41. The RHOX homeobox gene cluster is selectively expressed in human oocytes and male germ cells

42. ATR acts stage specifically to regulate multiple aspects of mammalian meiotic silencing

43. C14ORF39/SIX6OS1 is a constituent of the synaptonemal complex and is essential for mouse fertility

44. Zfy genes are required for efficient meiotic sex chromosome inactivation (MSCI) in spermatocytes

45. piRNA-associated proteins and retrotransposons are differentially expressed in murine testis and ovary of aryl hydrocarbon receptor deficient mice

46. The Antagonistic Gene Paralogs Upf3a and Upf3b Govern Nonsense-Mediated RNA Decay

47. DNA Double Strand Break Response and Limited Repair Capacity in Mouse Elongated Spermatids

48. The Homeobox Transcription Factor RHOX10 Drives Mouse Spermatogonial Stem Cell Establishment

49. The cohesin subunit RAD21L functions in meiotic synapsis and exhibits sexual dimorphism in fertility

50. BMP4-Induced Differentiation of a Rat Spermatogonial Stem Cell Line Causes Changes in Its Cell Adhesion Properties1

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