Social Environment And Anogenital Distance Length Phenotype Interact To Explain Testosterone Levels In A Communally Rearing Rodent: Part 2: The Female Side
Document Type
Article
Publication Date
4-1-2024
Published In
Hormones And Behavior
Abstract
Testosterone is known as a “male” hormone; however, females also synthetize testosterone, which influences female sexual and aggressive behavior. In female vertebrates, as in males, testosterone levels can vary seasonally. However, female testosterone levels may also be related with female anogenital distance (AGD) length phenotype (a proxy of prenatal androgen exposure), and the social group environment. We used data from a long-term rodent study (2009–2019) in a natural population of degus (Octodon degus) to examine the potential associations between female serum testosterone levels, season, female AGD phenotype, and social group composition. We quantified female serum testosterone levels during the mating and offspring rearing seasons, and we determined the number of females and males in social groups, as well the composition of groups, in terms of the AGD of the female and male group mates. Our results indicate that female testosterone levels vary with season, being highest during the offspring rearing season. Additionally, female testosterone levels were associated with the number of male group-members and the AGD of male group-members but were not associated with female social environment and focal female AGD phenotype. Together, our results suggest that female testosterone levels are sensitive to intersexual interactions. Our results also reveal that female and male testosterone levels do not differ between the sexes, a finding previously reported only in rock hyraxes. We discuss how the complex social system of degus could be driving this physiological similarity between the sexes.
Keywords
Anogenital distance length, Female testosterone, Female phenotype, Male phenotype, Social group environment
Recommended Citation
L. A. Correa, A. Aspillaga-Cid, C. León, Carolyn M. Bauer, J. Ramírez-Estrada, L. D. Hayes, M. Soto-Gamboa, and L. A. Ebensperger.
(2024).
"Social Environment And Anogenital Distance Length Phenotype Interact To Explain Testosterone Levels In A Communally Rearing Rodent: Part 2: The Female Side".
Hormones And Behavior.
Volume 160,
DOI: 10.1016/j.yhbeh.2024.105486
https://works.swarthmore.edu/fac-biology/695