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Effects of boar presence on agonistic behavior, shoulder scratches, and stress response of bred sows at mixing.

The objective of this study was to determine the effects of boar presence on aggression, shoulder scratches, and salivary cortisol in group-housed sows during the period after mixing, which is when dominance hierarchies are formed. A total of 225 York-shire sows were used. Five groups of 15 sows were each exposed to 1 of 3 levels of boar presence (n = 15): physical (boar in pen with sows; 2.15 m2 per sow), fenceline (boar housed adjacent to sows; 2.3 m2 per sow), or control (no boar in the room; 2.3 m2 per sow). The experiment was divided into 2 phases. In phase 1, behavioral measurements were taken for 48 h after mixing and boar introduction. In phase 2, behavioral measurements were taken beginning on d 6 after mixing and included 24 h before and 48 h after boar removal. In phases 1 and 2, shoulder scratches were scored 24 h before and 24 h after mixing and boar removal, respectively. Saliva samples were collected each morning (0600 to 0700) and afternoon (1600 to 1700) during both phases. Frequencies of intersow aggressive contact (bite, body knock, and head knock) and threats as well as frequencies and durations of fighting bouts were determined from video recordings during daily feeding (49.6 +/- 1.4 min) and nonfeeding (21 +/- 0.2 h) periods. During phase 1, boar presence did not affect the frequency of threats during either the feeding or nonfeeding periods. Control groups had fewer aggressive contacts at feeding during the 25- to 48-h period compared with the fenceline groups (P = 0.01). Total duration of fighting and average fighting bout duration were unaffected by treatment. However, the number of fights occurring during feeding 25 to 48 h postmixing was lower in the physical groups than in the fenceline groups (P = 0.023); measures for the control groups were intermediate. Physical sows also received fewer shoulder scratches postmixing than did control sows (P = 0.048). After mixing, physical sows showed greater morning (P = 0.08) and afternoon (6 h postmixing, P = 0.01; 32 h postmixing, P = 0.08) salivary cortisol concentrations compared with fenceline sows, although they were only numerically greater than those for control sows. During phase 2, removing the boar did not increase fighting among sows or affect shoulder scratches or salivary cortisol concentrations. The presence of a boar was minimally effective at reducing fighting and scratches during the postmixing period, and sows showed a greater stress response in the presence of a boar.

Agonistic Behavior↗

Uganda kob (Adenota kob thomasi): territoriality and the spatial distributions of sexual and agonistic behaviors at a territorial ground).

Possible functions of territorial behavior were evaluated on the basis of observations of agonistic and reproductive activities of Uganda kob at a "territorial ground" (TG) in southwestern Uganda. We have found that male residents of a TG tend to occupy exclusive areas, and that agonistic interactions are concentrated along the boundaries separating adjacent occupied areas. Thus, we conclude that male kob do engage in the active defense of spatially exclusive territories at a TG.

Aggression↗

Selection for agonistic behavior in wild female mice.

This article reports the results of 11 generations of selective breeding for isolation-induced, interfemale aggression in Mus musculus. Within-family selection was used to form two high, two low, and two unselected control lines, beginning with a population of wild-trapped mice. Selection was successful in establishing the divergent lines, so that in recent generations about 50% of high-line animals attack, as do 25% of controls and 5% of lows. Realized heritabilities for eight generations of selection were 0.12 for H1, 0.14 for H2, 0.34 for L1, and 0.46 for L2. Male aggression has apparently not shown a correlated response to selection for female aggression. Group housing reduces the aggression of female mice, but the order of the lines is maintained under either isolation or group housing. Practical problems encountered in this selection program are discussed.

Aggression↗

Agonistic behavior and unpredictable chronic mild stress in mice.

A significant proportion of patients suffering from major clinical depression exhibit sudden bursts of anger often described as "panic attacks without anxiety or fear" or "irritability." We investigated aggressive behavior in mice from four different inbred strains subjected to unpredictable chronic mild stress (UCMS). Our results show that UCMS affects self-grooming behavior, as evaluated by the state of an animal's fur, with severity of symptoms differing according to genetic background. Furthermore, UCMS increased aggression both in a resident-intruder test and between cage-mates. UCMS is therefore a valuable model of the problematic aggressive behavior seen in depressive patients.

Aggression↗

Sex-differences in the agonistic behavior of spiny-mice (Acomys cahirinus).

Observations of 8 groups each containing three adult spiny mice (Acomys cahirinus) revealed that instances of chasing and physical displacement were quite common, while fighting and biting were rarely observed. The relationships between the most frequent behavioral categories were presented in a correlation matrix. In a second study, females tested in their home cages were dominant over males. In the males' home cages, however, no differences in the frequency of female vs. male aggression were observed. More instances of aggression were observed in the cages of the females than in the cages of the males.

Aggression↗

Adolescent stress alters ethanol ingestion and agonistic behavior in the male golden hamster.

These data suggest that shock stress during adolescence increases ETOH consumption and may contribute to an increase in aggression in early adulthood. Interestingly, shock stress without ETOH results in timid behavior in early adulthood. One might speculate that adolescent hamsters "self-medicate" to deal with continuous stress. However, because of the variability between experimental groups, it is necessary to replicate these studies with larger numbers of animals and expand the findings to include blood ETOH concentrations.

Age Factors↗