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Receptivity of the female rat (Rattus norvegicus) after male devocalization: a ventral perspective.

Male rats (Rattus norvegicus) emit at least two patterns of vocalization during copulation, the mating call and the pre-ejaculatory call. Both calls promote immobility of the female during lordosis, but the pre-ejaculatory calls are more effective. We undertook, through ventral observations of the mating pair, to determine if the female failed to assume or maintain the lordosis posture when mounted by a devocalized male and also to determine if the devocalized male was providing adequate stimulation to induce receptive behavior. Females were more likely to move away from the devocalized males before assuming the full lordosis posture. Furthermore, they were more likely to move away before the males had a chance to engage in intromissive behavior. However, when the females remained immobile long enough for the males to achieve a mount or intromission, there was little difference in the behavior of either animal that resulted from the devocalization of the male.

Animals↗

Learning and male-male sexual competition in Japanese quail (Coturnix japonica).

Male Japanese quail (Coturnix japonica) were trained individually to discriminate between 2 sounds presented at opposite ends of an outdoor aviary. One of the sounds (the positive conditioned stimulus [CS+]) was associated with the release of a female, and the other (the negative CS [CS-]) was presented alone. Which of the 2 sounds served as the CS+ (and which served as the CS-) was counterbalanced across subjects. The subjects came to approach their CS+ but did not move away from their CS-. After having been conditioned individually, the subjects were tested in pairs, with a single female released after the presentation of a stimulus that was the CS+ for one of the males and the CS- for the other male. During most of these tests, the male for whom the prefemale stimulus was the CS+ copulated with the female before the male for whom the prefemale stimulus was the CS-. These results indicate that learning can have an important role in competition for access to a reproductive partner.

Agonistic Behavior↗

Relative contributions of the male and the female to sexual behavior and reproductive success in the Japanese quail (Coturnix japonica).

Two contrasting investigative techniques provided evidence consistent with the interpretation that female quail (Coturnix japonica) regulate male copulatory behavior by the duration of their immobility and through this behavioral mechanism they also control the rate of fertilization of their eggs. In Experiment 1, copulation tests with males and females from different genetic lines showed that the type of female that participated in a copulatory test significantly influenced the latency of the male's grab, mount, and cloacal contact responses and also determined the efficiency of the male's copulatory behavior. These measures of male performance were correlated with female immobility in Experiment 2, which used a more homogeneous population of quail. Furthermore, 2 of these measures (copulatory efficiency and the latency to make cloacal contact) were correlated with fertilization rate.

Animals↗

A diallel cross analysis of genetic determinants of copulatory behavior in rats.

A dialled cross analysis was aimed at obtaining information regarding genetic influences on the copulatory behavior of rats, and permitting considerations of adaptive significance. Rats of 4 inbred strains, ACI, F344, LEW, and WF, and all possible F1 crosses were used. Of 385 males tested, 73 failed to mate. The F1 rats were more likely to mate than were rats with inbred genotypes. Overdominance was generally apparent for low frequencies of mounts and intromissions preceding ejaculation across 5 series and 3 tests. A trend for directional dominance toward low scores on various latency measures of copulatory behavior also was apparent. According to the theory relating directional dominance to adaptation, it would appear generally adaptive for rats to copulate rapidly and to ejaculate after relatively few mounts and intromissions.

Adaptation, Physiological↗

Hormonal control of female sexual attractiveness proceptivity, and receptivity in rhesus monkeys.

The sexual behavior of 18 female and 11 male rhesus monkeys was observed in pair tests, in two experiments. In one experiment the females controlled the occurrence of pair tests. The females were ovariectomized and treated with estradiol, two dosages of testosterone, estradiol plus testosterone, estradiol plus dexamethasone, or no hormone; and the effects of the treatment on female attractiveness, proceptivity, and receptivity were examined. Sexual attractiveness of females to males (the effectiveness of the female as a sexual stimulus) was affected by estrogen and androgen. Estrogen enhanced attractiveness, but the effect of androgen depended on the dose. Female sexual proceptivity (the extent to which the female seeks out the male and elicits sexual behavior) was heightened by estrogen and androgen. Female sexual receptivity (willingness to receive a male in copulation was somewhat stimulated by estradiol, but not by testosterone. Both estradiol and testosterone had a greater effect on attractiveness and proceptivity than on receptivity. The hypothesis that testosterone is the "libidinal hormone" in female primates was not supported.

Animals↗

Longevity in Caenorhabditis elegans reduced by mating but not gamete production.

Theories of life-history evolution propose that trade-offs occur between fitness components, including longevity and maximal reproduction. In Drosophila, female lifespan is shortened by increased egg production, receipt of male accessory fluid and courting. Male lifespan is also reduced by courting and/or mating. Here we show that in the nematode Caenorhabditis elegans, mating with males reduces the lifespan of hermaphrodites by a mechanism independent of egg production or receipt of sperm. Conversely, males appear unaffected by mating. Thus, in C. elegans there is no apparent trade-off between longevity and increased egg or sperm production, but there is a substantial cost to hermaphrodites associated with copulation.

Animals↗

Behavioural ecology: transient sexual mimicry leads to fertilization.

Sexual mimicry among animals is widespread, but does it impart a fertilization advantage in the widely accepted 'sneak-guard' model of sperm competition? Here we describe field results in which a dramatic facultative switch in sexual phenotype by sneaker-male cuttlefish leads to immediate fertilization success, even in the presence of the consort male. These results are surprising, given the high rate at which females reject copulation attempts by males, the strong mate-guarding behaviour of consort males, and the high level of sperm competition in this complex mating system.

Adaptation, Biological↗

Quantitative genetic analysis of courtship and reproduction in female Drosophila melanogaster.

Three hundred mother-daughter pairs were analyzed for seven attributes related to courtship and reproduction. Only the lag time from first courtship to copulation was significantly heritable; genetic correlations involving this attribute were not significant. The genetic correlation between fertility and lag time to first courtship was negative and significant. However, this genetic correlation is expected to have little impact on the retention of additive genetic variance or on response to selection because it involves two attributes with low heritabilities. The pattern of phenotypic covariation among traits is largely explained by environmental causes and is consistent with that found in a previous analysis of father-son pairs (Gromko, 1987).

Alleles↗

Females increase offspring heterozygosity and fitness through extra-pair matings.

Females in a variety of species commonly mate with multiple males, and there is evidence that they benefit by producing offspring of higher genetic quality; however, the nature of these genetic benefits is debated. Enhanced offspring survival or quality can result from intrinsic effects of paternal genes---'good genes'--or from interactions between the maternal and paternal genomes--'compatible genes'. Evidence for the latter process is accumulating: matings between relatives lead to decreased reproductive success, and the individual level of inbreeding--measured as average heterozygosity--is a strong fitness predictor. Females should thus benefit from mating with genetically dissimilar males. In many birds, social monogamy restricts mate choice, but females may circumvent this by pursuing extra-pair copulations. Here we show that female blue tits, Parus caeruleus, increase the heterozygosity of their progeny through extra-pair matings. Females thereby produce offspring of higher reproductive value, because less inbred individuals have increased survival chances, a more elaborate male secondary sexual trait (crown colour) and higher reproductive success. The cost of inbreeding may therefore be an important factor driving the evolution of female extra-pair mating.

Animals↗

Sophisticated sperm allocation in male fowl.

When a female is sexually promiscuous, the ejaculates of different males compete for the fertilization of her eggs; the more sperm a male inseminates into a female, the more likely he is to fertilize her eggs. Because sperm production is limited and costly, theory predicts that males will strategically allocate sperm (1) according to female promiscuity, (2) saving some for copulations with new females, and (3) to females producing more and/or better offspring. Whether males allocate sperm in all of these ways is not known, particularly in birds where the collection of natural ejaculates only recently became possible. Here we demonstrate male sperm allocation of unprecedented sophistication in the fowl Gallus gallus. Males show status-dependent sperm investment in females according to the level of female promiscuity; they progressively reduce sperm investment in a particular female but, on encountering a new female, instantaneously increase their sperm investment; and they preferentially allocate sperm to females with large sexual ornaments signalling superior maternal investment. Our results indicate that female promiscuity leads to the evolution of sophisticated male sexual behaviour.

Animals↗

Median bundle neurons coordinate behaviours during Drosophila male courtship.

Throughout the animal kingdom the innate nature of basic behaviour routines suggests that the underlying neuronal substrates necessary for their execution are genetically determined and developmentally programmed. Complex innate behaviours require proper timing and ordering of individual component behaviours. In Drosophila melanogaster, analyses of combinations of mutations of the fruitless (fru) gene have shown that male-specific isoforms (Fru(M)) of the Fru transcription factor are necessary for proper execution of all steps of the innate courtship ritual. Here, we eliminate Fru(M) expression in one group of about 60 neurons in the Drosophila central nervous system and observe severely contracted courtship behaviour, including rapid courtship initiation, absence of orienting and tapping, and the simultaneous occurrence of wing vibration, licking and attempted copulation. Our results identify a small group of median bundle neurons, that in wild-type Drosophila appropriately trigger the sequential execution of the component behaviours that constitute the Drosophila courtship ritual.

Animals↗

Male mammals respond to a risk of sperm competition conveyed by odours of conspecific males.

Sperm competition occurs when a female copulates with two or more males and the sperm of those males compete within the female's reproductive tract to fertilize her eggs. The frequent occurrence of sperm competition has forced males of many species to develop different strategies to overcome the sperm of competing males. A prevalent strategy is for males to increase their sperm investment (total number of sperm allocated by a male to a particular female) after detecting a risk of sperm competition. It has been shown that the proportion of sperm that one male contributes to the sperm pool of a female is correlated with the proportion of offspring sired by that male. Therefore, by increasing his sperm investment a male may bias a potential sperm competition in his favour. Here we show that male meadow voles, Microtus pennsylvanicus, increase their sperm investment when they mate in the presence of another male's odours. Such an increase in sperm investment does not occur by augmenting the frequency of ejaculations, but by increasing the amount of sperm in a similar number of ejaculations.

Animals↗

Sexual dysfunction related to antihypertensive agents: results from the animal model.

The present investigation elucidates the deleterious effects of three prototypical antihypertensive drugs namely, propranolol, clonidine and captopril on the erectile physiology. In order to delineate the direct drug effects from vascular insufficiency inherent in hypertensive states, the study was conducted on a normotensive animal model. The adverse effects of these drugs were estimated as changes in sexual behaviour and intracavernous pressure response of electrical stimulation in the treated rats compared to normal age-matched controls (n = 10, each group). Copulation studies indicated significant impairment of sexual function in the groups on propranolol and clonidine. The cavernous pressure response to nerve stimulation at the end of sixteen weeks further reinforced the gross compromise on sexual function in these two treated groups. In contrast, the captopril administration produced only marginal alterations to the responses recorded. The results from this study clearly indicate that propranolol and clonidine interfere with sexual behaviour and nerve mediated response to erection whereas captopril which is devoid of significant effects on these parameters, may be a better therapeutic option.

Animals↗

Sleeping distance in relation to sexual state in the Arctic blue fox.

The paper provides comparative data concerning sleeping distance in relation to sexual state and hierarchical dominance in the Arctic blue fox. Increasing levels of vulval swelling and electrical resistance of vaginal tract were inversely related to sleeping distance between the highest-ranking male and each female on heat. A mating pair typically slept no further than 50 cm from each other. One month after copulation, the distance was already more than 200-250 cm. It can be concluded that oestrus-associated changes in sexual hormone levels have an influence on observed changes in sleeping distance.

Animals↗

LH release in mink (Mustela vison). Pattern of the LH surge and effect of metabolic status.

The mink is a seasonal breeder with induced ovulation and delayed implantation. Reproductive processes are strongly influenced by energy supply and body condition. Items for which there is paucity or complete lack of data were the main objectives of this study: the temporal relationship between copulation and the pre-ovulatory LH surge and the influence of energy supply on LH release. A total of 30 yearling female mink with a well defined metabolic status was used. Twelve females kept in the laboratory were measured in six consecutive one-week balance periods each including the measurement of heat production by means of indirect calorimetry, and 18 females were kept under conventional farm conditions. The animals were fed so as to maintain energy balance (CON), flush fed by 2 weeks food restriction followed by 2 weeks refeeding (FLUSH), or kept in a negative energy balance (NEG). Plasma concentrations of the thyroid hormones, IGF-1 and insulin were determined weekly (n = 12), or 1 week after change in energy supply to the FLUSH group (n = 18). On the day of mating, blood samples for LH and oestradiol-17beta (E2) were taken before and immediately after mating and then 4, 8, 12, 24, 30 and 48 h thereafter. Frequent blood samplings, each lasting 60 min, were taken during the LH surge from two other females surgically fitted with venous access ports. Peak concentrations of LH were recorded on the first sampling, an average 16 min after mating. The concentrations remained elevated for 12 h, but almost decreased to basal values 24 h after mating. Plasma E2 was high before mating and peak values were attained 4 h after mating after which it decreased. Energy supply had no significant influence on LH and E2, but there was a tendency for a more sluggish LH release in NEG animals. The lack of response in FLUSH animals was explained by these animals having a lower intake of metabolisable energy than CON animals, the total intake not being significantly different from the NEG group. Plasma concentrations of thyroid hormones, IGF-1 and insulin were not significantly affected by the treatment, but in FLUSH animals the values mirrored energy supply, and in the NEG group, the values tended to decrease during the course of the experiment. It was concluded that the pre-ovulatory LH surge is an immediate response to mating, and that reproductive activity in the mink is maintained over a wide range of energy supply and body condition.

Animals↗

Sperm transport, size of the seminal plug and the timing of ovulation after natural mating in the female tammar wallaby Macropus eugenii.

The distribution of spermatozoa and seminal plug in the reproductive tract and the timing of ovulation were examined at various times in a naturally mated monovular macropodid marsupial, namely the tammar wallaby (Macropus eugenii). After the first post partum (p.p.) mating, 28 females were isolated and their reproductive tracts dissected at 0.5, 6, 18, 36 and 40 h post coitum (p.c.). Each tract was ligated into 13 major anatomical sections and spermatozoa and eggs were recovered by flushing. Mating was possibly delayed by handling and occurred 21.7 +/- 2.5 h p.p. in these animals. Copulation lasted 7.8 +/- 0.7 min. Within 0.5 h after a single mating, the tract contained 25.8 +/- 10.2 x 10(6) spermatozoa and 21.6 +/- 8.8 g of seminal plug, 96% and 70% of which was lost within 6 h p.c. respectively. Spermatozoa reached the uterus, isthmus and ampulla of the oviduct on the side of the developing follicle within 0.5, 6 and 18 h p.c., respectively, and a uterine population of 26.1 +/- 12.10(3) spermatozoa was maintained for over 40 h. Sperm numbers were reduced at the cervix (up to 57-fold) and uterotubule junction (eight-fold) and only one in approximately 7500 ejaculated spermatozoa (3.4 +/- 0.9 x 10(3)) reached the oviduct on the follicle side. Differential transport of spermatozoa was not observed. Although the numbers of spermatozoa were reduced in the parturient uterus, they were highly variable and were not significantly different to those in the non-parturient uterus. Ovulation and recovery of sperm-covered eggs from the isthmus occurred 36-41 h p.c. (49-72 h p.p.). In contrast with the polyovular dasyurid and didelphid marsupials, the tammar wallaby ejaculates large numbers of spermatozoa, but transport is relatively inefficient and sperm storage in the tract before ovulation is limited.

Animals↗

Effects of the progesterone antagonist RU486 on myometrial activity in vivo in early pregnant and pseudopregnant rats.

Myometrial activity in vivo was quantified by video-laparoscopy in early pregnant rats given doses of RU486 which caused embryo abortion and blocked the action of progesterone on the vagina. All treatments diminished the frequency of circular contractions and abolished the curling movements of the uterus which are characteristic of pregnant, pseudopregnant and progestin-treated rats. The effects of RU486 on circular contractions were similar in pseudopregnant rats, i.e. they were not a consequence of embryo abortion. These results support the thesis that increased myometrial circular contractions in early pregnancy and pseudopregnancy are induced by increasing levels of progesterone. Effects of RU486 on longitudinal contractions were more complex: the highest dose inhibited longitudinal contractions on Day 5 of pregnancy and pseudopregnancy, but increased their frequency on Day 6. The acute inhibition of longitudinal contractions by RU486 was unexpected and the mechanism remains to be elucidated. The later increase in the frequency of longitudinal contractions appears to be due to antagonism of progesterone by RU486. The frequency of caudal longitudinal contractions on Day 6 in mated rats given RU486 was similar to that in unmated oestrous rats, but the frequency of cranial longitudinal contractions was significantly higher. These results support the hypothesis that stimuli received during copulation may have long-term effects on myometrial activity, by increasing pacemaker activity at the cervix.

Animals↗

Biphasic expression and function of glucose dehydrogenase in Drosophila melanogaster.

Glucose dehydrogenase (GO) was found to be expressed during the pupal stage in both sexes of Drosophila melanogaster, but is limited to the male ejaculatory duct at the adult stage. During copulation GO is transferred from males to females. Mutational analysis of the Go locus indicates that a single structural gene encodes the pupal and ejaculatory duct GO. Thus an example of an enzyme structural gene switching from non-sex-limited to sex-limited expression has been found. Go mutants are recessive lethals exhibiting a late pupal effective lethal phase. These mutants can be rescued by excising the anterior end of the pupal case 0-2 days prior to the normal adult emergence time. It appears that the function of GO in pupae is to aid in the degradation of the puparium cuticle in preparation for the eclosion of the adult.

Animals↗