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Conditioning of appetitive and consummatory sexual behavior in male Japanese quail.

Two different types of stimulus objects, a live female quail artificially adorned with bright orange feathers and an inanimate toy dog, served as conditioned stimuli. For subjects in experimental groups, the conditioned stimuli were presented shortly before access to a sexually receptive normal female quail. For subjects in control groups, exposure to the conditioned stimuli was unpaired with copulatory opportunity. Subjects in the experimental but not in the control groups quickly came to approach the location of the conditioned stimulus objects. When an adorned female quail served as the conditioned stimulus, the conditioned approach behavior was controlled by a combination of the presence of the orange adornments and the visual cues of the head and neck of the female bird, and the approach behavior persisted as the adorned female moved to new locations. When the toy dog served as the conditioned stimulus, the conditioned approach behavior was limited to the spatial cues that surrounded the toy dog during conditioning trials. Although both types of stimulus objects evoked conditioned approach behavior, only the adorned female stimulus supported copulatory behavior. This last finding indicates that copulatory behavior can become redirected toward novel stimuli as a result of conditioning, but only under special circumstances. The results are consistent with the suggestion that appetitive components of reproductive behavior are more susceptible to conditioning than consummatory components. Possible reasons for this are discussed, together with implications of the results for the contribution of conditioning processes to sexual selection.

Animals↗

The effects of parity, litter size, season, and breeding protocol on the number of DBA/2J Ten mice available for weaning.

Data on the reproductive behavior of DBA/2J Ten mice, collected from October 1970 through March 1973 and utilizing a 2-female, 1-male breeding system, with the mice remaining together throughout their reproductive life indicates: a) Litter size tends to increase through the fourth litter, the first litter being much smaller than successive litters; b) Survival rates of litters with 2--4 pups increase with successive deliveries; c) Survival rates of litters with 5--9 pups are approximately the same regardless of parity; d) There is a circannual rhythm in the number of pups available for weaning da 21, which is attributable to changes in postnatal viability. Data collected using a breeding pen system, with isolation of females pre- and post-delivery (March 1973 to March 1974) indicates: a) There is a reduction in live litter sizes in later litters with this system; b) There is a large reduction in the proportion of pups surviving to weaning with this system when compared with the other breeding system.

Animals↗

Courtship anomalies caused by doublesex mutations in Drosophila melanogaster.

The role played by the sex-determining gene doublesex (dsx) and its influence on Drosophila courtship were examined. Against a background of subnormal male-like behavior that is reported to be an attribute of haplo-X flies homozygous for the original dsx mutation, and given that a sex-specific muscle is unaffected by genetic variation at this locus, analyses of several reproductive behaviors and control for genetic background effects indicated that XY dsx mutants are impaired in their willingness to court females. When they did court, certain behavioral actions were normal, including components of courtship song. However, these mutants never produced courtship humming sounds. Mature XY dsx flies elicited anomalously high levels of courtship; that this occurs merely because of a delay in imaginal development was experimentally discounted. The current analysis reconciled two ostensibly conflicting reports involving the courtship-stimulating qualities of this mutant type. Such experiments also uncovered a new behavioral anomaly: dsx mutations caused chromosomal males to court other males at abnormally high levels. These results are discussed from the perspective of doublesex's influence on internal tissues of adult Drosophila involved in the triggering and neural control of male- and female-like elements of courtship, reproductive pheromone production, or a combination of such factors.

Analysis of Variance↗

Does exaggerated morphology preclude plasticity to cuckoldry in the midshipman fish ( Porichthys notatus)?

In species with more than one male reproductive morph, there typically exists a larger morph with exaggerated secondary sexual characters, and a smaller morph with reduced secondary sexual characters. These "exaggerated" and "reduced" morphologies are commonly thought to represent specializations to alternative behavioral reproductive tactics-large body size and exaggerated secondary sexual characters should both facilitate territoriality, courtship, and pair-spawning; while small body size and reduced secondary sexual characters should facilitate "sneaky" cuckoldry. Given this postulated relationship between morphology and behavior, we examined the relationship between the morphology of exaggerated males and cuckoldry. In a field and aquarium study of the midshipman fish, a fish with both exaggerated and reduced morphs, we demonstrated cuckoldry in some males of the exaggerated morph. Since the "reduced" morphology is thought to be an adaptation towards sneaky cuckoldry, we predicted that, of males with the exaggerated morph, less-exaggerated (smaller) males would be better able to gain proximity to the spawning pair during cuckoldry. In contrast to that prediction, access to the spawning pair during cuckoldry increased with the body size of the cuckolding exaggerated-morph males. This may be related to our observation that exaggerated males often cuckolded aggressively. Thus the "exaggerated" morphology need not preclude adaptive plasticity to cuckoldry, and may even aid it.

Animals↗

Testosterone, testes size, and mating success in birds: a comparative study.

Reproductive behaviors of vertebrates are often underpinned by temporal patterns of hormone secretion. We investigated interspecific patterns of circulating testosterone in male birds to test the hypothesis that testosterone plays a crucial role in sexual selection as determined by degree of polygyny and extra-pair paternity. We predicted that the evolution of increased levels of polygyny and extra-pair paternity would have resulted in the evolution of increased levels of testosterone to allow males more efficiently to compete for mates. This hypothesis was tested in comparative analyses of 116 species of birds using Generalized Least Squares Models. We assessed the importance of latitudinal distribution, because this can confound the relationship between testosterone and mating success. There were weak positive phylogenetic correlations between measures of testosterone and estimates of mating success at the social level, but this association appeared to be confounded by latitudinal distribution, a significant correlate of testosterone titers. However, we found a significantly positive relationship between peak and residual peak testosterone (which is the peak testosterone level that is controlled for the baseline level) and extra-pair paternity independent of latitude. These results suggest that selection pressures arising from social and sexual mating differently affected testosterone levels with the former being mediated by factors associated with latitudinal distribution. An analysis of residual testes size revealed a positive association between peak and residual testosterone and testes size relative to body size. In a path analysis, we show that relative testis size primarily evolved in association with intense sperm competition and thus high sperm production, and these mechanisms had a secondary impact on blood testosterone levels at a phylogenetic scale. Our results suggest that sperm competition has played an important role in the evolution of reproductive mechanisms in birds.

Analysis of Variance↗

Transfer and fate of seminal fluid molecules in the beetle, Diaprepes abbreviatus: implications for the reproductive biology of a pest species.

Molecules transferred from males to females via seminal fluids are important to the study of insect reproduction because they affect female physiology, reproductive behavior, and longevity. These molecules (seminal fluid molecules or SFMs) interest applied entomologists because of their potential use in insect control. SFMs are also interesting because of their relatively rapid evolution and important role in post-mating sexual selection. We studied SFMs in Diaprepes abbreviatus, a major pest of numerous plant species of economic importance. Using radiolabeled-methionine (35S), we found that D. abbreviatus males synthesized proteins de novo in their reproductive tissues after mating. Males that were fed radiolabeled methionine transferred radioactivity to females beginning within the first 10 min of mating. Male-derived substances are absorbed from the female's reproductive tract into the hemolymph and circulated throughout the body, but are found primarily in the eggs and ovaries. As a result, SFMs may be a useful means of both horizontal (to mates) and vertical transfer (to offspring) of control agents between conspecifics.

Animals↗

Infusions of diazepam and allopregnanolone into the midbrain central gray facilitate open-field behavior and sexual receptivity in female rats.

We have previously shown that blocking GABAA receptors with bicuculline in the dorsal and lateral quadrants of the rostral two-thirds of the midbrain central gray (MCG) in rats reduces the lordosis quotient (LQ) and proceptive behaviors without increasing the defensive index (McCarthy, Pfaff, and Schwartz-Giblin, 1991b), indicating that tonic release of endogenous GABA in the MCG has a primary facilitatory effect on reproductive behaviors. The present study tests whether two modulators of the GABAA-benzodiazepine-receptor complex, diazepam and the progesterone metabolite, allopregnanolone, facilitate female receptivity as well as open-field behavior. Ovariectomized estradiol benzoate (EB)-treated rats were bilaterally infused in the MCG with vehicle, diazepam, or allopregnanolone and tested 20 min after diazepam and 12 min after allopregnanolone. Animals were tested once each for both receptive or open-field behavior with testing sessions being at least 1 week apart in a crossover design between vehicle and one of the two drugs. Both diazepam and allopregnanolone significantly increased the lordosis quotient in a dose-dependent manner, the lowest effective dose tested being 100 and 250 ng, respectively. In the open-field test, infusion of diazepam (100 ng) in EB-treated rats significantly increased the ratio of central squares entered to total squares entered (C/T) without a change in total activity. Rats without EB elicited comparable C/T ratios when tested with five times as much diazepam. Diazepam infusions at more dorsal sites in the midbrain and in overlying cortex were without effect on C/T ratios in EB-treated rats. Allopregnanolone (500 ng) infusions in MCG of EB-treated rats did not alter C/T ratios compared to animals without EB. Our results are consistent with diazepam and allopregnanolone acting through the GABAA receptors of the MCG to enhance female sexual receptivity and with estradiol potentiating the effect of diazepam in the MCG to increase open-field behavior.

Animals↗

Identification and characterization of a gonadotropin-inhibitory system in the brains of mammals.

Successful reproduction requires maintenance of the reproductive axis within fine operating limits through negative feedback actions of sex steroids. Despite the importance of this homeostatic process, our understanding of the neural loci, pathways, and neurochemicals responsible remain incomplete. Here, we reveal a neuropeptidergic pathway that directly links gonadal steroid actions to regulation of the reproductive system. An RFamide (Arg-Phe-NH2) peptide that inhibits gonadotropin release from quail pituitary was recently identified and named gonadotropin-inhibitory hormone (GnIH). Birds are known to have specialized adaptations associated with gonadotropin-releasing hormone (GnRH) regulation to optimize reproduction (e.g., encephalic photoreceptors), and the existence of a hypothalamic peptide inhibiting gonadotropins may or may not be another such specialization. To determine whether GnIH serves as a signaling pathway for sex steroid regulation of the reproductive axis, we used immunohistochemistry and in situ hybridization to characterize the distribution and functional role of this peptide in hamsters, rats, and mice. GnIH-immunoreactive (GnIH-ir) cell bodies are clustered in the mediobasal hypothalamus with pronounced projections and terminals throughout the CNS. In vivo GnIH administration rapidly inhibits luteinizing hormone secretion. Additionally, GnIH-ir neurons form close appositions with GnRH cells, suggesting a direct means of GnRH modulation. Finally, GnIH-ir cells express estrogen receptor-alpha and exhibit robust immediate early gene expression after gonadal hormone stimulation. Taken together, the distribution of GnIH efferents to neural sites regulating reproductive behavior and neuroendocrine secretions, expression of steroid receptors in GnIH-ir nuclei, and GnIH inhibition of luteinizing hormone secretion indicate the discovery of a system regulating the mammalian reproductive axis.

Amino Acid Sequence↗

Conditional disruption of synaptic transmission induces male-male courtship behavior in Drosophila.

It is reported here that male-male courtship behavior is evoked instantaneously in the fruit fly Drosophila by conditional disruption of synaptic transmission. A temperature-sensitive allele of the Drosophila dynamin gene shibire (shi(ts1)) was expressed by using the GAL4/UAS system to disrupt synaptic transmission from GAL4-positive neurons in a temperature-dependent manner. An enhancer-trap GAL4 line C309 directing shi(ts1) expression in central and peripheral neurons (C309/UAS-shi(ts1)) initiated stereotypical precopulatory behavior toward other mature males immediately after a temperature shift from the permissive to restrictive temperature. At the restrictive temperature, C309/UAS-shi(ts1) males formed "courtship chains" and exhibited abnormally high levels of head-to-head interactions. The temperature-induced male-male courtship is attributable not to an increase in sexual attractiveness but to an increase in sexual activity of C309/UAS-shi(ts1) males. Interestingly, the temperature-induced increase in sexual activity is specific toward male partners, because C309/UAS-shi(ts1) males courted receptive virgin females less vigorously and copulated less efficiently after shifted to the restrictive temperature. Among the GAL4-positive neurons in C309, conditional disruption of certain cholinergic neurons but not the mushroom body intrinsic neurons plays a critical role in the induction of male-male courtship. These neurons may be involved in inhibitory systems that normally suppress aberrant male-male courtship. The presented strategy that can induce behavioral abnormalities by disrupting synaptic transmission in an acute and noninvasive manner will allow further exploration as to how distinct neuronal groups control sexual orientation and other aspects of reproductive behavior in Drosophila.

Alleles↗

Androgen insensitivity syndrome in a thoroughbred mare (64, XY--testicular feminization).

A Thoroughbred mare was presented for stallion-like behavior. Reproductive and ultrasonographic evaluation, testosterone assays, and karyotyping confirmed a diagnosis of androgen insensitivity syndrome (64, XY--testicular feminization). Surgery to remove abdominal testicles was successful in alleviating the behavioral abnormality. This condition is discussed with reference to the current literature.

Androgen-Insensitivity Syndrome↗

Postpartum and lactational estrus: a comparative analysis in rodentia.

Virgin rodents exhibiting cycling estrus have traditionally been used for comparative studies of reproductive behavior. However estrus occurs in other life-history contexts, some of which differ from cycling estrus (CE) in that (a) the female is disposed to behave both maternally and sexually and (b) they result in litter overlap (i.e., the simultaneous gestation and lactation of two litters). In this report, two of these other modes of estrus are examined, with emphasis on their evolutionary and ecological implications. By means of a literature search of the order Rodentia, postpartum estrus (PPE) and lactational estrus (LE) were documented in 15 families, 71 genera, and 141 species. Analysis of these data showed that PPE and LE were nonrandomly distributed across taxa. They were statistically overrepresented in the family Cricetidae and underrepresented in squirrels (Sciuridae) and in pocket mice and kangaroo rats (Heteromyidae). Analysis of the phenotypes by which PPE and LE are achieved suggests important differences between them and CE in several parameters of female reproductive effort and breeding strategy, including maternal and copulatory behavior, optimal timing of litters, and hormonal control of heat and lactation.

Animals↗

Effects of the oxytocin fragment prolyl-leucyl-glycinamide on sexual behavior in the rat.

Prolyl-leucyl-glycinamide (PLG), a natural brain peptide, is identical in structure to the C-terminal of oxytocin. Moreover, PLG and oxytocin can act as opiate antagonists. Evidence that opiates and oxytocin have significant influences on reproductive behavior suggests that PLG may also be effective. Morphine and/or PLG were administered intraperitoneally to male and female rats and sexual behavior was observed. PLG (0.1-10 mg/kg) was found to facilitate female sexual behavior in Experiment 1. In Experiment 2, the ability of PLG to facilitate female receptivity was found to be progesterone dependent. In Experiment 3, tyrosine-prolyl-leucyl-glycinamide, a putative precursor to PLG, failed to facilitate lordosis. In Experiment 4, PLG failed to facilitate male sexual behavior. In Experiments 5 and 6, PLG did not affect morphine-induced inhibition of either male or female sexual behavior. These data suggest that PLG differentially affects female receptivity and male sexual behavior. The current results support the hypothesis that PLG is an active metabolite of oxytocin in the female, but do not provide evidence that PLG functions as an opiate antagonist of sexual behavior.

Animals↗

Testosterone rapidly affects the expression of copulatory behavior in house mice (Mus musculus).

Male mammals reflexively release an endogenous pulse of testosterone in response to either a female or her urinary pheromones. Two experiments examined the hypothesis that such pulses have quick-acting effects upon the expression of reproductive behavior in male house mice. In Experiment 1, 30 min after exposure to female urine, males exhibited significantly reduced latency to mount a receptive female (when they should have been expressing an endogenous testosterone pulse). In Experiment 2, gonadally intact males received a simulated testosterone pulse via a subcutaneous injection of 500 microg of testosterone propionate. At 60 min after injection, males mounted a receptive female significantly more quickly than if they had not received such an injection. These experiments provide evidence that elevations in testosterone titers above baseline can, under certain conditions, rapidly alter the expression of male-typical behaviors.

Animals↗

Sexual differentiation of avian brain and behavior: current views on gonadal hormone-dependent and independent mechanisms.

Gonadal hormones are known to act during development to establish permanent sex differences in the anatomy and function of the vertebrate brain. They also act on the adult brain to activate reproductive behaviors. However, there are wide gaps in our understanding of how sexually dimorphic neural circuits translate into sex differences in behavior and other CNS functions. Moreover, not all sexually dimorphic properties of the adult brain can be attributed to known effects of gonadal hormones during development or adulthood, and factors other than gonadal steroids may contribute to these sex differences. This paper reviews sexual differentiation and the role of gonadal steroids and non-gonadal factors on sexually dimorphic development of the avian brain.

Animals↗

Knowledge of reproductive physiology and modern contraceptives in rural Peru.

This report is based on fieldwork conducted in a Peruvian community in 1986, which investigated Quechua-speaking Indians' knowledge of the female reproductive organs, perceptions of the way contraceptives work in the body, folk beliefs about conception and menstruation, and opinions about modern contraceptives. The findings reveal that the men have a more accurate knowledge of the female reproductive organs than the women do. However, the women are more knowledgeable about the action of modern contraceptives in the body. Most respondents perceived modern contraceptive methods as the best methods available, but the majority reported using the calendar rhythm method. This preference for rhythm is based on its economic advantage and on its adaptability to folk beliefs about physiology. The men's dominant role in reproductive behavior is related to cultural norms that emphasize traditional gender roles and that prohibit communication about sexual matters between men and women. Educational material, based on the respondents' knowledge of reproduction and taking into account their folk beliefs, might help to decrease the fear of contraceptive side effects and increase understanding of the function of contraceptives.

Contraceptive Agents, Female↗

Structural and functional evolution of the vasopressin/oxytocin superfamily: vasopressin-related conopressin is the only member present in Lymnaea, and is involved in the control of sexual behavior.

It has been suggested that the gene duplication that led to the formation of the vasopressin/oxytocin two-gene family occurred early during vertebrate evolution. However, the existence of both vasopressin- and oxytocin-related peptides in invertebrates suggests that this duplication may have occurred much earlier, although there is no evidence for the co-occurrence of vasopressin- and oxytocin-related peptides in the same invertebrate species. We report here that in Lymnaea only the vasopressin-related peptide Lys-conopressin, but not an oxytocin-related peptide, is present. Moreover, it is very likely that an oxytocin-like cDNA or gene is absent. The conopressin gene is expressed in neurons that control male sexual behavior, and its gene products are present in the penis nerve and the vas deferens. Conopressin induces muscular contractions of the vas deferens and inhibits central neurons that control female reproductive behavior. Thus, although structurally related to vasopressin, conopressin has functional and behavioral characteristics typical for oxytocin. Physiological and receptor binding data suggest that conopressin and [Ile8]-conopressin, a synthetic oxytocin-like analog of conopressin, are functionally equivalent in Lymnaea, and that the chemical nature of the amino acid residue at position 8 does not result in a functional difference. Therefore, we suggest that invertebrates contain only a single member of the vasopressin/oxytocin gene family and that the amino acid change that distinguishes vasopressin from oxytocin is functionally neutral in invertebrates.

Amino Acid Sequence↗

Do fertility intentions predict subsequent behavior? Evidence from Peninsular Malaysia.

Data from the 1984 Malaysian Population and Family Survey were matched with birth registration records for 1985-87 to determine the accuracy of statements regarding desired family size that were reported in a household survey in predicting subsequent reproductive behavior. The findings of this study were that stated fertility intention provides fairly accurate forecasts of fertility behavior in the subsequent period. In other words, whether a woman has another child is predicted closely by whether she wanted an additional child. Informational, educational, and motivational activities of family planning programs would, therefore, have greater success in reducing family size if fertility intentions were taken into account.

Adolescent↗