Skip to main navigation Skip to search Skip to main content

Sry-modified laboratory rat lines to study sex-chromosome effects underlying sex differences in physiology and disease: Four Core Genotypes and more

  • Arthur P. Arnold
  • , Xuqi Chen
  • , Michael N. Grzybowski
  • , Janelle M. Ryan
  • , Dale R. Sengelaub
  • , Tara Mohanroy
  • , V. Andree Furlan
  • , Helen R. Schmidtke
  • , Jeremy W. Prokop
  • , Monika Tutaj
  • , Julia L. Ciosek
  • , Theodore S. Kalbfleisch
  • , Liza O’Donnell
  • , William Grisham
  • , Shanie Landen
  • , Lynn Malloy
  • , Akiko Takizawa
  • , Kai Li
  • , Hayk Barseghyan
  • , Carrie B. Wiese
  • Laurent Vergnes, Karen Reue, Jonathan Wanagat, Helen Skaletsky, David C. Page, Vincent R. Harley, Melinda R. Dwinell, Aron M. Geurts

Research output: Contribution to journalArticlepeer-review

Abstract

Background: Previous research on Four Core Genotypes and XY* mice has been instrumental in establishing important effects of sex-chromosome complement that cause sex differences in physiology and disease. We have generated rat models using similar modifications of the testis-determining gene Sry, to produce XX and XY rats with the same type of gonad, as well as XO, XXY and XYY rats with varying gonads. The models permit discovery of novel sex-chromosome effects (XX vs. XY) that contribute to sex differences in any rat phenotype, and test for effects of different numbers of X or Y chromosomes. Methods: XY rats were created with an autosomal transgene of Sry, producing XX and XY progeny with testes. In other rats, CRISPR-Cas9 technology was used to remove Y chromosome factors that initiate testis differentiation, producing fertile XY gonadal females. Interbreeding of these lines produced rats with interesting combinations of sex chromosomes and gonads: XO, XX, XY, XXY rats with ovaries; and XO, XX, XY, XXY, and XYY rats with testes. These groups can be compared to detect sex differences caused by sex-chromosome complement (XX vs. XY) and/or by gonadal hormones (rats with testes vs. ovaries). Other comparisons detect the effects of X or Y chromosome number (in gonadal females: XO vs. XX, XX vs. XXY, XO vs. XY, XY vs. XXY; in gonadal males: XY vs. XXY, XY vs. XYY; XX vs. XXY, XO vs. XX, XO vs. XY). Results: We measured numerous phenotypes to characterize these models, including gonadal histology, breeding performance, anogenital distance, levels of reproductive hormones, body and organ weights, and central nervous system sexual dimorphisms. Serum testosterone levels were comparable in adult XX and XY gonadal males. Phenotypes previously known to be sexually differentiated by the action of gonadal hormones were found to be similar in XX and XY rats with the same type of gonad, suggesting that XX and XY rats with the same type of gonad have comparable levels of gonadal hormones at various stages of development. Conclusion: The results establish powerful new models to discriminate sex-chromosome and gonadal hormone effects that cause sex differences in rat physiology and disease.

Original languageEnglish
Article number75
Number of pages29
JournalBiology of Sex Differences
Volume17
Issue number1
DOIs
StatePublished - Feb 21 2026

Bibliographical note

Publisher Copyright:
© The Author(s) 2026.

Funding

Supported by NIH grants OD026560 to APA, MRD, & AMG, OD030496 to APA, MRD, AMG, & VRH, HL114474 and OD024617 to MRD & AMG, HL064541 (A.E. Kwitek, PI), DK120342 to KR, and by the Australian Victorian Government’s Operational Infrastructure Support Program. JR is the recipient of an Australian Government RTP scholarship.

FundersFunder number
State Government of Victoria
National Institutes of Health (NIH)HL064541, HL114474, OD026560, OD024617, OD030496, DK120342

    Keywords

    • Four core genotypes
    • Gametogenesis
    • Meiosis
    • Sex determination
    • Sex-chromosome effect
    • Sexual differentiation
    • Sry
    • Testis determination
    • X chromosome
    • Y chromosome

    ASJC Scopus subject areas

    • Gender Studies
    • Endocrinology

    Fingerprint

    Dive into the research topics of 'Sry-modified laboratory rat lines to study sex-chromosome effects underlying sex differences in physiology and disease: Four Core Genotypes and more'. Together they form a unique fingerprint.

    Cite this