Skip to main navigation Skip to search Skip to main content

Pre- and postcopulatory competition affect testes mass and organization differently in two monophyletic mole-rat species, Georychus capensis and Fukomys damarensis

  • Sharna R Rainer
  • , Elissa Z Cameron
  • , Amy Edwards
  • , Nigel C Bennett
  • , Hannah G Thomas
  • , Daniël Swanepoel

Research output: Contribution to journalArticlepeer-review

Abstract

Sperm competition results from postcopulatory continuation of male–male competition for paternity. The level of sperm competition is predicted to be highest in species with greater polyandry and weakest in monogamous pairs. Sperm competition levels can be indexed using traits that reflect male investment in fertilization, particularly relative testes mass (RTM). However, the relationship between RTM and levels of sperm competition may also be influenced by precopulatory competition selecting for higher levels of testosterone, also produced by the testes. To test the relationship between RTM and both pre- and postcopulatory male–male competition we compared two bathyergid mole-rat species, the promiscuous Georychus capensis and the monogamous eusocial Fukomys damarensis. The promiscuous species had not only larger RTM, but also a greater proportion of spermatogenic tissue, maximizing germ cell production as well. Conversely, the eusocial species had smaller testes, but a higher proportion of interstitial tissue (which contains the androgenic Leydig cells) and higher levels of testosterone. Consequently, testicular traits as well as testes mass may be under selection, but these are not normally measured. More research is required on relative investment in different testicular traits in relation to both pre- and postcopulatory selection pressures.
Original languageEnglish
Pages (from-to)993-1002
JournalJournal of Mammalogy
Volume104.0
Issue number5
DOIs
Publication statusPublished - 2023

Fingerprint

Dive into the research topics of 'Pre- and postcopulatory competition affect testes mass and organization differently in two monophyletic mole-rat species, Georychus capensis and Fukomys damarensis'. Together they form a unique fingerprint.

Cite this