Register      Login
Reproduction, Fertility and Development Reproduction, Fertility and Development Society
Vertebrate reproductive science and technology
RESEARCH ARTICLE

Studies on the cryopreservation of common wombat (Vombatus ursinus) spermatozoa

C. MacCallum A B and S. D. Johnston A C
+ Author Affiliations
- Author Affiliations

A School of Animal Studies, The University of Queensland, Gatton, Qld 4343, Australia.

B Western Plains Zoo, Dubbo, NSW 2830, Australia.

C Corresponding author. Email: s.johnston1@uq.edu.au

Reproduction, Fertility and Development 17(7) 727-732 https://doi.org/10.1071/RD05082
Submitted: 11 July 2005  Accepted: 6 September 2005   Published: 2 November 2005

Abstract

In an attempt to develop a gamete-recovery protocol for the northern hairy nosed wombat (Lasiorhinus krefftii), spermatozoa were removed from the cauda epididymides of four common wombats (Vombatus ursinus) and cryopreserved following a variety of prefreeze storage conditions. Spermatozoa stored for 72 h at 4°C within the testicle before cryopreservation tolerated the freeze–thaw procedure remarkably well, resulting in a higher post-thaw viability (% motile P < 0.01; rate of movement P < 0.01; % live P < 0.01) than sperm recovered on the day of post-mortem, stored in a test tube for 72 h at 4°C and then frozen. The effect of post-thaw dilution with Tris citrate fructose (TCF) diluent on the survival of epididymal common wombat spermatozoa was also investigated. Motility (P < 0.05), rate of sperm movement (P < 0.01) and the percentage of live spermatozoa (P < 0.05) were all significantly greater when spermatozoa were thawed and diluted immediately in TCF than when thawed without dilution. The present study also reports, for the first time, a successful pellet method of freezing wombat spermatozoa on dry ice; volumes of 0.25 and 0.5 mL resulted in higher post-thaw survival compared with 0.1-mL pellets.

Extra keywords: epididymal spermatozoa, pellet method.


References

Barth A. D. (1995). Evaluation of frozen bovine semen by the veterinary practitioner. In ‘Proceedings of Bovine Short Course’. pp. 105–110. (American College of Theriogenologists and Society for Theriogenology: Hastings, New England, ME, USA.)

Bicknell, C. , Wolvekamp, M. J. C. , and Shaw, J. (2001). Development of a simple cryopreservation protocol for wombat sperm. Theriogenology 55, 300.[Abstract]
Horsup A. (1998). ‘Recovery Plan for the Northern Hairy-Nosed Wombat (Lasiorhinus krefftii) 1998–2002.’ (Queensland Parks and Wildlife Service and the of Queensland, Environmental Protection Agency: Brisbane, Australia.)

Horsup A. (2003). ‘Recovery Plan for the Northern Hairy-Nosed Wombat (Lasiorhinus krefftii) 2003–2007.’ (Queensland Parks and Wildlife Service and the of Queensland, Environmental Protection Agency: Brisbane, Australia.)

Johnston, S. D. , McGowan, M. R. , Phillips, N. J. , and O’Callaghan, P. (2000). Optimal physiochemical conditions for the manipulation and short-term preservation of koala (Phascolarctos cinereus) spermatozoa. J. Reprod. Fertil. 118, 273–281.
Crossref | GoogleScholarGoogle Scholar | PubMed | MacCallum C. A. (2004). The reproductive biology of the common wombat (Vombatus ursinus): studies towards the development of an artificial insemination protocol. M.Phil. thesis, School of Animal Studies, The University of Queensland, Brisbane, Australia.

MacCallum, C. A. , Johnston, S. D. , Ward, D. , and Blyde, D. (2001). Successful cryopreservation of common wombat (Vombatus ursinus) spermatozoa recovered from refrigerated epididymidal tissue. Theriogenology 55, 391.[Abstract]
Taggart D. A., Steele V. R., Schultz D., Dibben R., Dibben J., and Temple-Smith P. D. (1998). Semen collection and cryopreservation in the southern hairy-nosed wombat Lasiorhinus latifrons: implications for conservation of the northern hairy-nosed wombat, Lasiorhinus krefftii. In ‘Wombats’. (Eds R. T. Wells and P. A. Pridmore.) pp. 180–191. (Surrey Beatty and Sons: Sydney, Australia.)

Watson P. F. (1990). Artificial insemination and preservation of semen. In ‘Marshall’s Physiology of Reproduction’. (Ed. G. E. Lamming.) pp. 747–869. (Churchill Livingstone: New York, USA.)

Watson P. F., and Fuller B. J. (2001). Principles of cryopreservation of gametes and embryos. In ‘Cryobanking the Genetic Resource: Wildlife Conservation for the Future?’. (Eds P. F. Watson and W. V. Holt.) pp. 21–46. (Taylor and Francis: London, UK.)