Competition between the Dasyurid marsupials, Antechinus stuartii and Antechinus swainsonii
Abstract
This thesis describes an experimental investigation of competition
between the dasyurid marsupials, Antechinus stuartii and A.
swainsonii. Most of the research was conducted in the Brindabella
Range, Australian Capital Territory, between May 1978 and November 1981.
Initial experiments, conducted between May 1978 and December
1979, were designed to establish whether competition occurred. Five
natural, semi-isolated enclosures (four experimental, one control)
were established in tall open-forest; each contained populations of
both species. Removal of the larger species, A. swainsonii, resulted
in many shifts in the population parameters and resource use of the
smaller A. stuartii. These included increased numbers, enhanced
survival of newly weaned young, increases in movements, home range
areas, home range overlaps, the use of complex terrestrial habitat,
and the proportion of large, terrestrial invertebrate prey in the diet
and decreased arboreal activity. The reintroduction of A. swainsonii
produced reciprocal shifts in most of these parameters. In contrast,
the removal and reintroduction of A. stuartii had little evident effect
on A. swainsonii. It was concluded that competition occurred between
the two species but that the effects of A. swainsonii on A. stuartii
were more marked than the converse situation.
Subsequent manipulation experiments conducted between January
1980 and November 1981 were designed to investigate the effects on
A. stuartii of reducing and enhancing the numbers of A. swainsonii.
When the numbers of A. swainsonii were reduced, the numbers of A·
stuartii increased, and movements and arboreal activity decreased.
Individuals also used more complex terrestrial habitat, and ate
proportionately more terrestrial invertebrate prey. Enhancement of
the numbers of A. swainsonii produced less marked, but reciprocal,
responses in most of these parameters. It was concluded that the
intensity of competition on A. stuartii depended, in part, on the
relative abundance of A. swainsonii.
Throughout the manipulation experiments, samples of
invertebrates were obtained in the enclosures by pitfall trapping,
litter sampling and sticky trapping. These samples, totalling over
120,000 specimens, showed that whereas sessile invertebrates in the
forest litter were abundant all year round, freely-moving
invertebrates on the litter surface and tree trunks disappeared in
winter. Since A. swainsonii forages principally in the litter, but A.
stuartii takes freely-moving invertebrates, it appeared that the latter
species could face a seasonal shortage of food. In accordance with
the shifts in diet exhibited by A. stuartii when the numbers of A.
swainsonii were manipulated, these findings strongly suggested that
food was the object of competition.
To test the food competition hypothesis, a further experiment
was conducted in 1981. Supplementary food was provided to two
populations of A. stuartii, but not to a third, control population.
The additional food resulted in increases in the survival, arboreal
activity and body weights of A. stuartii, but a decrease in its
movements. Reciprocal changes were observed when supplementary
feeding was discontinued in one of the study areas. The findings
demonstrated that A. stuartii was food limited, and also that
competition occurred for this scarce resource. Interference was shown to be the mechanism of competition.
Antechinus stuartii probably detects A. swainsonii by smell and
possibly by sound, and it responds, on a moment to moment basis, by
climbing into the trees. Direct harrassment of A. stuartii by A.
swainsonii has probably resulted in selection for specific competitor
recognition and avoidance in the smaller species.
Transferrin allele freqencies were similar in all populations of
A. stuartii, whether they were allopatric and sympatric with A.
swainsonii, suggesting that gene flow occurred between them. It was
proposed that gene flow between these populations could impede
directional selection for divergence in sympatric A. stuartii, and so
prolong competition in evolutionary time. However, some reduction in
competition may be achieved by divergence in body size and possibly
tail length: small body size and long tail length allow A. stuartii
access to arboreal prey, whereas large body size allows A. swainsonii
access to invertebrates buried in the forest litter.
In general, competition strongly influenced the population
parameters and resources used by Antechinus, especially A. stuartii.
This research shows that competition, in addition to habitat and
climate, is probably important in determining the patterns of
distribution and abundance of these marsupials.
Description
Keywords
Citation
Collections
Source
Type
Book Title
Entity type
Access Statement
License Rights
Restricted until
Downloads
File
Description