Register      Login
Australian Journal of Zoology Australian Journal of Zoology Society
Evolutionary, molecular and comparative zoology
RESEARCH ARTICLE

Milk composition and growth in wild and captive Tasmanian pademelons, Thylogale billardierii (Marsupialia)

R. W. Rose A B and K. Flowers A
+ Author Affiliations
- Author Affiliations

A School of Zoology, University of Tasmania, Private Bag 5, Hobart, Tas. 7001, Australia.

B Corresponding author. Email: randy.rose@utas.edu.au

Australian Journal of Zoology 53(4) 241-248 https://doi.org/10.1071/ZO05009
Submitted: 15 March 2005  Accepted: 22 June 2005   Published: 6 September 2005

Abstract

Changes in milk composition (total solids, carbohydrate, protein, lipid and calculated gross energy content) during lactation in three groups of wild (recently culled) and one captive group (fed ad libitum) of Tasmanian pademelon (Thylogale billardierii) were related to growth rates and body condition. The habitats of the three wild groups differed. Total milk solids were generally greater in the captive group but this difference disappeared in late lactation. Milk carbohydrates showed a general increase to mid-lactation in all groups, decreasing subsequently, but were always greater in the captive group. The captive group’s milk protein was always greater than those of wild Groups 1 and 2 but differed from wild Group 3 only in mid-lactation. Milk lipid concentrations started low in all groups; thereafter, the captive group had higher concentrations of lipid in mid-lactation but there were considerable differences between the groups in late lactation with Group 2 having the highest concentrations. Other than in the captive group there was little difference in energy content between early and mid-lactation. Growth rates of young differed between all wild groups, with the captive population exhibiting more rapid growth than all others. Thus, differences in milk composition resulting from different planes of nutrition can lead to differences in growth rates of marsupial young.


References

Bradford, M. M. (1976). A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principal of protein–dye binding. Analytical Biochemistry 72, 248–254.
PubMed | Carr M. R. (1996). ‘Primer User Manual: Plymouth Routines in Multivariate Ecological Research.’ (Plymouth Marine Laboratory.)

Close, R. L. , and Bell, J. N. (1990). Age estimation of pouch young of the allied rock-wallaby (Petrogale assimilis) in captivity. Australian Wildlife Research 17, 359–367.
Crossref | GoogleScholarGoogle Scholar | Driessen M. M. (1992). Effects of hunting and rainfall on Bennett’s wallaby and Tasmanian pademelon populations. M.Sc. Thesis, University of Tasmania.

Driessen, M. M. , and Hocking, G. F. (1996). Age estimation of the Tasmanian pademelon Thylogale billardierii. Australian Mammalogy 20, 107–110.
Horwitz W. E. (1980). ‘Official Methods of Analysis of the Association of Official Analytical Chemists.’ (Association of Official Analytical Chemists: Washington, DC.)

Ikonomopoulou, M. P. , Smolenski, A. P. , and Rose, R. W. (2005). Changes in milk composition during lactation in the eastern barred bandicoot (Perameles gunnii) (Marsupialia: Peramelidae). Australian Journal of Zoology 53, 59–65.
Crossref | GoogleScholarGoogle Scholar | Munks S. A. (1990). Ecological energetics and reproduction in the common ringtail possum Pseudocheirus peregrinus (Marsupialia: Phalangeridae). Ph.D. Thesis, University of Tasmania.

Muths, E. (1996). Milk composition in a field population of red kangaroos, Macropus rufus (Desmarest) (Macropodidae: Marsupialia). Australian Journal of Zoology 44, 165–175.
Crossref | GoogleScholarGoogle Scholar | Prentice A. M., and Whitehead R. G. (1987). The energetics of human reproduction. In ‘Reproductive Energetics in Mammals. Symposium of the Zoological Society of London No. 57’. (Eds A. S. I. Loudon and P. A. Racey.) pp. 275–304.

Rose R. W. (1985). The reproductive biology of the Tasmanian bettong (Bettongia gaimardi). Ph.D. Thesis, University of Tasmania.

Rose, R. W. (1997). The effect of bromocriptine on the Tasmanian pademelon Thylogale billardierii during lactational quiescence. Australian Mammalogy 20, 49–52.
Sadleir R. H. F. S. (1969). ‘The Ecology of Reproduction in Wild and Domestic Mammals.’ (Methuen: London.)

Sharman, G. B. , Frith, H. J. , and Calaby, J. H. (1964). Growth of the pouch young, tooth eruption and age determination in the red kangaroo Megaleia rufa. CSIRO Wildlife Research 9, 20–49.
Wilkinson L., Hill M., and Vang E. (1992). ‘Systat: Statistics.’ (Systat Inc.: USA.)

Wood, J.T. , Poole, W.E. , and Carpenter, S.M. (1983). Validation of aging keys for eastern grey kangaroos Macropus giganteus. Australian Wildlife Research 10, 213–217.
Crossref | GoogleScholarGoogle Scholar |