Temporal variation in DNA methylation during gonadal development in a reptile with temperature-dependent sex determination†

Biol Reprod. 2022 Nov 14;107(5):1217-1227. doi: 10.1093/biolre/ioac142.

Abstract

DNA methylation plays a significant role in transducing external environmental signals to a cellular response in reptiles; however, whether the methylation patterns are conserved across species remains unclear. Here, we examined the genome-wide DNA methylation differentiation between male and female hatchling gonads of the temperature-dependent sex determination (TSD) Mauremys mutica (M. mutica) using methylation-dependent restriction-site associated DNA sequencing (MethylRAD-seq) to test differentially methylated genes underlying sexual development. Several categories, including heat-shock genes (HSP90A, HSP30C), histone- (KDM8) and ubiquitin-related genes (TRIM39), kinases (WNK3), and gonad differentiation or gonadal-development-related genes (HSD17B8, HSD17B12), were identified as candidates for future study. Additionally, we identified several regulatory pathways potentially mediating TSD thermosensitivity such as the GnRH signaling pathway and calcium signaling pathway. These findings provide evidence that sexually dimorphic DNA methylation may be associated with sex determination or sex differentiation in TSD M. mutica.

Keywords: DNA methylation; Mauremys mutica; sex-related genes; sexual development; temperature-dependent sex determination.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • DNA Methylation*
  • Female
  • Gonads
  • Male
  • Reptiles / genetics
  • Sex Determination Processes* / genetics
  • Sex Differentiation
  • Temperature