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Sex differences in social dominance emerge late in life in a gregarious bird.

Social dominance shapes group structure and the collective behaviour of gregarious animals. Senescence, the progressive physiological deterioration associated with ageing, may influence behaviour, including social dominance, while reproductive roles may lead to different onset times or rates of senescence between the sexes. However, how ageing shapes sex differences in sociality remains poorly understood, largely due to the scarcity of long-term studies comparing male and female social behaviour. To address this gap of knowledge, we monitored dominance hierarchies during foraging in an ageing, semi-natural population of adult common waxbills (Estrilda astrild). Our study lasted 5 years, which is more than most adult waxbills would live in the wild, to facilitate detecting effects of senescence. At the onset of the study, sex differences in dominance were negligible but became pronounced with ageing during breeding seasons. In contrast, sex differences remained weak during non-breeding seasons. Females showed stronger longitudinal and seasonal changes in dominance than males, whose dominance patterns remained more consistent across breeding and non-breeding periods. Nonetheless, social dominance also increased, on average, as the number of years until death decreased. Although sex differences in animal sociality are often thought of as largely fixed, our findings reveal a dynamic pattern in which sex differences in dominance emerge with ageing and are context-dependent, varying across breeding seasons. Overall, our results suggest that senescence and seasonal context shape sociality later in life.

behavioural ageing

Changes in relative aggressiveness and social dominance associated with selection for early egg production in chickens.

We tested the hypothesis that artificial selection for early reproductive performance of chickens kept under competitive conditions increases aggressiveness and social dominance. Two populations subjected to long-term selection for number of eggs laid before 40 weeks of age and the unselected control population from which they derived were used. Results generally supported the hypothesis but indicated that increased aggressiveness associated with such selection may characterize the adolescent period only. For one of the selected strains, rank for aggressiveness and social dominance between adolescence and full maturity was reversed, relative to the control population. Associations between increased aggressiveness (and social dominance) and decreased age at sexual maturity are discussed, along with implications as to the role of social status and reproductive performance when different genetic strains compete within flocks.

Aggression

Induction of social dominance by L-dopa treatment in Arctic charr.

The effect of L-dopa on social dominance was studied in the juvenile Arctic charr (Salvelinus alpinus). L-dopa is the immediate precursor of dopamine, a neurotransmitter that has been connected with aggressive behaviour in fish as well as mammals. Arctic charr were placed in pairs. One individual in each pair was given L-dopa orally, while the other was given vehicle. The results showed that 18 out of 22 fish given 10 mg L-dopa kg-1 became dominant (p = 0.004, binomial test). A higher dose of L-dopa (200 mg kg-1) induced dyskinesia. L-dopa was found to cause a dose-dependent increase in the brain levels of dopamine and 3,4-dihydroxyphenylacetic acid (DOPAC, a major dopamine metabolite), as well as an increase in the DOPAC/dopamine ratio (an index of dopaminergic activity).

Aggression

Behavioral correlates of social dominance.

The behavioral correlates of dominance in the squirrel monkey were explored using a variety of operant tasks. Compared to more submissive animals, more dominant ones showed higher operant rates, more consistent work output, and a higher degree of "frustration tolerance." These data suggest that dominance in the squirrel monkey is not related solely to physical size, but to a variety of behavioral traits which lead to more adjustive problem-solving behavior.

Animals

Monoamine neurotoxins: selective and delayed effects on behavior in colonies of laboratory rats.

Male laboratory rats were raised in two colonies, each of 27 rats, and then given intraventricular injections of the norepinephrine neurotoxin 6-hydroxydopamine (6-OHDA) or the serotonin neurotoxin 5,6-dihydroxytryptamine (5,6-DHT) or saline. They were then returned to their enclosure and behavior during the next 50 days was observed. Shortly after neurotoxin injections the 6-OHDA rats spent more time in the burrows than controls and when out were inactive. The 5,6-DHT rats in contrast spent more time in the open than controls, ran more in activity wheels, approached humans, and fought more. Fighting, mounting, and hoarding in the colony gradually increased for 25 days; during this time the status of the 6-OHDA animals fell progressively whereas the 5,6-DHT animals increased in dominance. Social behavior returned to more normal levels after 50 days. Several successive stages of behavioral alterations occur following neurotoxin injections.

Aggression

Agonistic behaviour and dominance in stoats (Mustela erminea L.).

Behavioural mechanisms underlying distribution in a stoat (Mustela erminea) population were examined experimentally in an enclosure simulating natural habitats with living prey. Agonistic behaviours, displayed by individual stoats of different sex and age while being tested in pairs in various combinations were recorded. Dominance relationships between different categories of stoats (femalefemale, adult and juvenile male male) were examined, as was social dominance between individual stoats of the same sex. In further experiments designed to examine the influence of establishment on the social dominance, the behaviour of established introduced animals was observed.

Aggression

Socially induced inhibition of genetically determined maturation in the platyfish, Xiphophorus maculatus.

Maturation in Xiphophorus maculatus (Pisces; Poeciliidae) is under control of the sex-linked P gene. However, when two individuals are reared together the socially dominant individual delays the maturation of the subordinate. Nevertheless, it is not a requirement that a fish be socially dominant to become mature. The data suggest that inhibition of maturity takes place when an individual is not dominant at a time near the genetically determined age of maturation. Two hypotheses are offered to explain these results.

Aging

[Tyrosine hydroxylase activity and expression of its gene in mice with contrasting capacity to dominate in social stress].

Changes of tyrosine hydroxylase (TH) activity and level of mRNA of TH gene in PT and CBA/Lac mouse strains, which are contrast by ability to dominate in heterogenous populations, were investigated. It was established, that the activity of TH both in dominate PT and subordinate CBA/Lac mice in hypothalamus, hippocampus and brain stem elevated in one hour after forming of micropopulations. But the appearance of this increase was different: activation of TH in hypothalamus and brain stem of PT mice was stronger then one in CBA/Lac mice. Moreover, the beginning of the reaction in brain stem of PT mice was earlier then that of CBA/Lac mice. MRNA level of TH gene in hypothalamus and brain stem in one hour was elevated only in PT mice for 50% and 200%, respectively. No changing in expression TH gene was found in hippocampus. In conclusion, it was suggested that the activation of catecholamine biosynthesis under social stress in hypothalamus and brain stem of male mice was due to the TH activation and increase of its gene expression.

Animals

Aggression increase and water competition decrease in squirrel monkeys given physostigmine injections.

Six adult squirrel monkeys (Samiri sciureus) were tested in pairs for social dominance in a water competition task. Dominance was defined by two methods: (1) number and direction of aggressive responses, and (2) successful water competition as assessed by latency to the water bottle, latency to accumulate 15 seconds of drinking, and total drinking duration. Monkeys were assigned to pairs on a "round robin" basis so that each monkey was paired with all other monkeys under control, saline, and three levels of physostigmine sulfate (6.25, 12.5, and 25.0 microgram/kg). Under drug conditions only one member of each pair was drugged. The 12.5 microgram/kg dose of physostigmine resulted in a significant increase in aggressive responses. Both drinking duration and general motor activity decreased with increasing dose level of drug. It was also noted that the non-drugged partners of drugged monkeys accumulated 15 seconds of drinking faster and drank more at the 25 and 12.5 microgram/kg dose levels than under control and saline conditions. Physostigmine resulted in an increase in one measure of social dominance and a decrease in the other.

Aggression

Social organization of captive monandrous squirrel monkey groups (Saimiri sciureus).

1 adult male and 4 adult female squirrel monkeys were observed together as a group, isolated from all other monkeys. 3 of the 4 females were deafened for a previous experiment. Deafening, however, had no apparent, permanent effect on social behavior. Social dominance hierarchy was evaluated in a variety of situations. The results were compared with those of a similar set of observations on the females prior to the introduction of the male. Before the male was introduced, the dyadic interactions involving food stealing, body grasping, and sexual behaviors were indicative of a female linear rank order. After the male was introduced, the rank order among the females generally remained intact, with the male becoming the highest ranking member in the group. The noteworthy exception to the stability involved the highest ranking female, whose position in the hierarchy was threatened. Heterosexual interactions predominated. Homosexual behavior was also observed, although appreciably reduced in frequency as compared to the all-female group situation. A similar rank order hierarchy was observed in a second group of squirrel monkeys comprised of 1 adult male and 4 adult females. None of these monkeys was deaf.

Animals

[Hormones and aggression].

This work is a review about psychoendocrinologic aspects of aggressive behavior. We have considered two approaches, the classical view focused on hormonal influences in the regulation of aggression and the most recent view which accounts for the influences of aggressive behavior and social status on hormonal secretion. In this review we differentiate the organizational from the activational effects. The main conclusions are referred to the gonadal steroids effects both organization and activation of the neural subtract of aggression. Among them it seems that aromatizable androgens have the most important effects. On the other hand, the testosterone would be predictive for dominant social status, the corticosterone would be for submission and finally, the ACTH would be predictive for the aggressive behavior but not for submission. In addition to that the literature point that the defeat experience is the main factor in submission. Referred to the effects of behavior on hormonal secretions, all the studies point out that social interaction elicits sympathetic-medullar and gonadal activation in the dominant animals and cortico-adrenal activation in the submissive ones.

Adrenocorticotropic Hormone

The reproductive ecology of the house mouse.

This paper attempts to integrate the physiological and ecological perspectives of the reproductive biology of the house mouse (Mus musculus). The endeavor is made within a larger context to provide a prototype for mammalian reproductive ecology in general. Specifically, the environmental regulation of the reproduction of Mus musculus is examined in relation to its ecological opportunism and, in particular, in relation to its history of global colonization. House mice can live as commensals of man or under totally feral conditions. Stable, high density, commensal populations are characterized by an insular division of the living space into demeterritories, each dominated by a single male. Feral populations typically are characterized by temporal, spatial, and social instability. Territoriality is improbable under such conditions, particularly given the necessity for large home ranges in most feral habitats. In both feral and commensal populations, however, male aggressiveness promotes the large-scale dispersal of young, all of which are potential colonizers. Of the ten or so environmental factors known to influence reproduction in house mice, seven probably are of routine importance in natural populations: diurnal modulation by daily light:dark cycles; caloric intake; nutrition; extreme temperature; agaonistic stimuli; socio-tactile cues; and priming pheronomes. The last two factors named operate directly on the secretion of luteinizing hormone or prolactin; the others act at many points in the reproductive system. Reproduction in the house mouse seems divorced from photoperiodically induced seasonality; indeed, this species breeds well even in constant darkness. Seasonal breeding may or may not then occur, depending upon dietary considerations, with or without a secondary interaction with variation in ambient temperature. There is no evidence for a dependence upon secondary plant compounds. Some of the effects of priming pheromones that have been observed previously in laboratory mice probably play no meaningful role in wild populations. The remaining pheromonal phenomena can be conceptualized as a single cueing system that has three components: (a) urinary cues of socially dominant males can accelerate ovulation in females, adult or prepubertal; (b) female urinary cues may elevate pheromonal potency in adult males, thereby forming a feedback loop by which the females elicit their own ovulation; and (c) the male's action on prepubertal females can be blocked by urinary cues emanating from other females. When all of the above is viewed in toto, the reproductive biology of the house mouse seems uniquely suited to support ecological opportunism. The relatively few environmental inhibitors of reproduction in this species should enhance the ability of dispersing young to colonize an exceptionally wide variety of habitats and climates...

Animals

Marking behaviour in two lemur species (L. fulvus and L. macaco): relation to social status, reproduction, aggression and environmental change.

The influence of social status, reproductive and agonistic contexts and environmental change on scent-marking and allomarking rates were studied in captive groups of Lemur fulvus and Lemur macaco. No evidence of female social dominance over males appeared in either species. In L. fulvus, intrasexual relationships were characterized by the dominance of one adult male over another and by the existence of female affiliative association ('central' vs. 'peripheral' females). In L. macaco, no intrasexual dominance relationships were apparent except for a brief ostracism of one female. In both species, (1) intrasexual differences in social status were related to differences in marking rates, (2) no direct relation appeared between marking rates and aggression or reproduction, (3) allomarking was not differentially directed towards specific individuals and (4) physical environmental factors clearly influenced scent-marking and allomarking rates. These results are discussed in relation to the possible functions of marking behaviour in intragroup relations.

Aggression

Changes in attitude toward methadone.

Staff and client attitudes toward heroin users and toward maintenance and abstient clients were assessed in 1970 and again in 1973. On each occasion there was striking agreement between the ratings made by staff and client groups. Abstinent clients were rated by all groups as significantly more effective and more responsible than either maintance clients or heroin users; maintenance clients were rated as more conservative, self-conscious, and self-effacing than were the other groups. While heroin users and abstinent clients were characterized similarly in the two rating periods, raters in the 1973 survey viewed methadone hydrochloride clients as more passive and less inclined to undertake adult responsibilities than was true of raters in the 1970 survey.

Acting Out