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1.
Cell ; 184(20): 5122-5137.e17, 2021 09 30.
Article in English | MEDLINE | ID: mdl-34534446

ABSTRACT

Natural goal-directed behaviors often involve complex sequences of many stimulus-triggered components. Understanding how brain circuits organize such behaviors requires mapping the interactions between an animal, its environment, and its nervous system. Here, we use brain-wide neuronal imaging to study the full performance of mating by the C. elegans male. We show that as mating unfolds in a sequence of component behaviors, the brain operates similarly between instances of each component but distinctly between different components. When the full sensory and behavioral context is taken into account, unique roles emerge for each neuron. Functional correlations between neurons are not fixed but change with behavioral dynamics. From individual neurons to circuits, our study shows how diverse brain-wide dynamics emerge from the integration of sensory perception and motor actions in their natural context.


Subject(s)
Brain/physiology , Caenorhabditis elegans/physiology , Sensation/physiology , Sexual Behavior, Animal/physiology , Animals , Brain Mapping , Copulation/physiology , Courtship , Databases as Topic , Feedback , Female , Male , Models, Biological , Movement , Neurons/physiology , Rest , Signal Processing, Computer-Assisted , Synapses/physiology , Vulva/physiology
2.
Cell ; 155(4): 881-93, 2013 Nov 07.
Article in English | MEDLINE | ID: mdl-24209625

ABSTRACT

Behavioral persistence is a major factor in determining when and under which circumstances animals will terminate their current activity and transition into more profitable, appropriate, or urgent behavior. We show that, for the first 5 min of copulation in Drosophila, stressful stimuli do not interrupt mating, whereas 10 min later, even minor perturbations are sufficient to terminate copulation. This decline in persistence occurs as the probability of successful mating increases and is promoted by approximately eight sexually dimorphic, GABAergic interneurons of the male abdominal ganglion. When these interneurons were silenced, persistence increased and males copulated far longer than required for successful mating. When these interneurons were stimulated, persistence decreased and copulations were shortened. In contrast, dopaminergic neurons of the ventral nerve cord promote copulation persistence and extend copulation duration. Thus, copulation duration in Drosophila is a product of gradually declining persistence controlled by opposing neuronal populations using conserved neurotransmission systems.


Subject(s)
Dopaminergic Neurons/metabolism , Drosophila melanogaster/physiology , GABAergic Neurons/metabolism , Sexual Behavior, Animal , Animals , Copulation , Drosophila melanogaster/cytology , Female , Male
3.
Nature ; 589(7843): 577-581, 2021 01.
Article in English | MEDLINE | ID: mdl-33239786

ABSTRACT

Choosing a mate is one of the most consequential decisions a female will make during her lifetime. A female fly signals her willingness to mate by opening her vaginal plates, allowing a courting male to copulate1,2. Vaginal plate opening (VPO) occurs in response to the male courtship song and is dependent on the mating status of the female. How these exteroceptive (song) and interoceptive (mating status) inputs are integrated to regulate VPO remains unknown. Here we characterize the neural circuitry that implements mating decisions in the brain of female Drosophila melanogaster. We show that VPO is controlled by a pair of female-specific descending neurons (vpoDNs). The vpoDNs receive excitatory input from auditory neurons (vpoENs), which are tuned to specific features of the D. melanogaster song, and from pC1 neurons, which encode the mating status of the female3,4. The song responses of vpoDNs, but not vpoENs, are attenuated upon mating, accounting for the reduced receptivity of mated females. This modulation is mediated by pC1 neurons. The vpoDNs thus directly integrate the external and internal signals that control the mating decisions of Drosophila females.


Subject(s)
Drosophila melanogaster/cytology , Drosophila melanogaster/physiology , Mating Preference, Animal , Neural Pathways/cytology , Neural Pathways/physiology , Neurons/physiology , Acoustic Stimulation , Animals , Auditory Pathways , Copulation , Courtship , Female , Male , Optogenetics , Vocalization, Animal
4.
Nature ; 589(7841): 258-263, 2021 01.
Article in English | MEDLINE | ID: mdl-33268894

ABSTRACT

Animal behaviours that are superficially similar can express different intents in different contexts, but how this flexibility is achieved at the level of neural circuits is not understood. For example, males of many species can exhibit mounting behaviour towards same- or opposite-sex conspecifics1, but it is unclear whether the intent and neural encoding of these behaviours are similar or different. Here we show that female- and male-directed mounting in male laboratory mice are distinguishable by the presence or absence of ultrasonic vocalizations (USVs)2-4, respectively. These and additional behavioural data suggest that most male-directed mounting is aggressive, although in rare cases it can be sexual. We investigated whether USV+ and USV- mounting use the same or distinct hypothalamic neural substrates. Micro-endoscopic imaging of neurons positive for oestrogen receptor 1 (ESR1) in either the medial preoptic area (MPOA) or the ventromedial hypothalamus, ventrolateral subdivision (VMHvl) revealed distinct patterns of neuronal activity during USV+ and USV- mounting, and the type of mounting could be decoded from population activity in either region. Intersectional optogenetic stimulation of MPOA neurons that express ESR1 and vesicular GABA transporter (VGAT) (MPOAESR1∩VGAT neurons) robustly promoted USV+ mounting, and converted male-directed attack to mounting with USVs. By contrast, stimulation of VMHvl neurons that express ESR1 (VMHvlESR1 neurons) promoted USV- mounting, and inhibited the USVs evoked by female urine. Terminal stimulation experiments suggest that these complementary inhibitory effects are mediated by reciprocal projections between the MPOA and VMHvl. Together, these data identify a hypothalamic subpopulation that is genetically enriched for neurons that causally induce a male reproductive behavioural state, and indicate that reproductive and aggressive states are represented by distinct population codes distributed between MPOAESR1 and VMHvlESR1 neurons, respectively. Thus, similar behaviours that express different internal states are encoded by distinct hypothalamic neuronal populations.


Subject(s)
Aggression/physiology , Hypothalamus/cytology , Hypothalamus/physiology , Sexual Behavior, Animal/physiology , Animals , Copulation , Estrogen Receptor alpha/metabolism , Female , Homosexuality, Male , Male , Mice , Optogenetics , Preoptic Area/metabolism , Vesicular Inhibitory Amino Acid Transport Proteins/metabolism
5.
Nature ; 597(7875): 245-249, 2021 09.
Article in English | MEDLINE | ID: mdl-34433964

ABSTRACT

Transient neuromodulation can have long-lasting effects on neural circuits and motivational states1-4. Here we examine the dopaminergic mechanisms that underlie mating drive and its persistence in male mice. Brief investigation of females primes a male's interest to mate for tens of minutes, whereas a single successful mating triggers satiety that gradually recovers over days5. We found that both processes are controlled by specialized anteroventral and preoptic periventricular (AVPV/PVpo) dopamine neurons in the hypothalamus. During the investigation of females, dopamine is transiently released in the medial preoptic area (MPOA)-an area that is critical for mating behaviours. Optogenetic stimulation of AVPV/PVpo dopamine axons in the MPOA recapitulates the priming effect of exposure to a female. Using optical and molecular methods for tracking and manipulating intracellular signalling, we show that this priming effect emerges from the accumulation of mating-related dopamine signals in the MPOA through the accrual of cyclic adenosine monophosphate levels and protein kinase A activity. Dopamine transients in the MPOA are abolished after a successful mating, which is likely to ensure abstinence. Consistent with this idea, the inhibition of AVPV/PVpo dopamine neurons selectively demotivates mating, whereas stimulating these neurons restores the motivation to mate after sexual satiety. We therefore conclude that the accumulation or suppression of signals from specialized dopamine neurons regulates mating behaviours across minutes and days.


Subject(s)
Cyclic AMP/metabolism , Dopamine/metabolism , Dopaminergic Neurons/metabolism , Hypothalamus/cytology , Hypothalamus/metabolism , Sexual Behavior, Animal , Signal Transduction , Animals , Copulation , Cyclic AMP-Dependent Protein Kinases/metabolism , Drive , Female , Male , Mice , Optogenetics , Preoptic Area/cytology , Preoptic Area/metabolism , Satiety Response , Time Factors
6.
Nature ; 593(7857): 114-118, 2021 05.
Article in English | MEDLINE | ID: mdl-33790466

ABSTRACT

Innate social behaviours, such as mating and fighting, are fundamental to animal reproduction and survival1. However, social engagements can also put an individual at risk2. Little is known about the neural mechanisms that enable appropriate risk assessment and the suppression of hazardous social interactions. Here we identify the posteromedial nucleus of the cortical amygdala (COApm) as a locus required for the suppression of male mating when a female mouse is unhealthy. Using anatomical tracing, functional imaging and circuit-level epistatic analyses, we show that suppression of mating with an unhealthy female is mediated by the COApm projections onto the glutamatergic population of the medial amygdalar nucleus (MEA). We further show that the role of the COApm-to-MEA connection in regulating male mating behaviour relies on the neuromodulator thyrotropin-releasing hormone (TRH). TRH is expressed in the COApm, whereas the TRH receptor (TRHR) is found in the postsynaptic MEA glutamatergic neurons. Manipulating neural activity of TRH-expressing neurons in the COApm modulated male mating behaviour. In the MEA, activation of the TRHR pathway by ligand infusion inhibited mating even towards healthy female mice, whereas genetic ablation of TRHR facilitated mating with unhealthy individuals. In summary, we reveal a neural pathway that relies on the neuromodulator TRH to modulate social interactions according to the health status of the reciprocating individual. Individuals must balance the cost of social interactions relative to the benefit, as deficits in the ability to select healthy mates may lead to the spread of disease.


Subject(s)
Amygdala/cytology , Amygdala/physiology , Mating Preference, Animal/physiology , Neural Pathways/physiology , Social Behavior , Animals , Copulation/physiology , Corticomedial Nuclear Complex/cytology , Corticomedial Nuclear Complex/metabolism , Female , Glutamic Acid/metabolism , Health , Ligands , Lipopolysaccharides/pharmacology , Male , Mice , Neurons/metabolism , Receptors, Thyrotropin-Releasing Hormone/metabolism , Thyrotropin-Releasing Hormone/metabolism
7.
Proc Natl Acad Sci U S A ; 121(10): e2310841121, 2024 Mar 05.
Article in English | MEDLINE | ID: mdl-38412134

ABSTRACT

Connectomics research has made it more feasible to explore how neural circuits can generate multiple outputs. Female sexual drive provides a good model for understanding reversible, long-term functional changes in motivational circuits. After emerging, female flies avoid male courtship, but they become sexually receptive over 2 d. Mating causes females to reject further mating for several days. Here, we report that pC1 neurons, which process male courtship and regulate copulation behavior, exhibit increased CREB (cAMP response element binding protein) activity during sexual maturation and decreased CREB activity after mating. This increased CREB activity requires the neuropeptide Dh44 (Diuretic hormone 44) and its receptors. A subset of the pC1 neurons secretes Dh44, which stimulates CREB activity and increases expression of the TRP channel Pyrexia (Pyx) in more pC1 neurons. This, in turn, increases pC1 excitability and sexual drive. Mating suppresses pyx expression and pC1 excitability. Dh44 is orthologous to the conserved corticotrophin-releasing hormone family, suggesting similar roles in other species.


Subject(s)
Drosophila Proteins , Neuropeptides , Animals , Male , Female , Drosophila melanogaster/metabolism , Drosophila Proteins/metabolism , Neuropeptides/metabolism , Copulation/physiology , Courtship , Hormones , Sexual Behavior, Animal/physiology
8.
Nature ; 579(7797): 101-105, 2020 03.
Article in English | MEDLINE | ID: mdl-32103180

ABSTRACT

Mating and egg laying are tightly cooordinated events in the reproductive life of all oviparous females. Oviposition is typically rare in virgin females but is initiated after copulation. Here we identify the neural circuitry that links egg laying to mating status in Drosophila melanogaster. Activation of female-specific oviposition descending neurons (oviDNs) is necessary and sufficient for egg laying, and is equally potent in virgin and mated females. After mating, sex peptide-a protein from the male seminal fluid-triggers many behavioural and physiological changes in the female, including the onset of egg laying1. Sex peptide is detected by sensory neurons in the uterus2-4, and silences these neurons and their postsynaptic ascending neurons in the abdominal ganglion5. We show that these abdominal ganglion neurons directly activate the female-specific pC1 neurons. GABAergic (γ-aminobutyric-acid-releasing) oviposition inhibitory neurons (oviINs) mediate feed-forward inhibition from pC1 neurons to both oviDNs and their major excitatory input, the oviposition excitatory neurons (oviENs). By attenuating the abdominal ganglion inputs to pC1 neurons and oviINs, sex peptide disinhibits oviDNs to enable egg laying after mating. This circuitry thus coordinates the two key events in female reproduction: mating and egg laying.


Subject(s)
Copulation/physiology , Drosophila melanogaster/physiology , Neural Pathways/physiology , Oviposition/physiology , Animals , Drosophila Proteins/metabolism , Drosophila melanogaster/cytology , Female , Ganglia, Sympathetic/cytology , Male , Peptides/metabolism , Sensory Receptor Cells/metabolism , Sexual Abstinence/physiology
9.
Nature ; 584(7821): 415-419, 2020 08.
Article in English | MEDLINE | ID: mdl-32641829

ABSTRACT

Sexual dimorphism arises from genetic differences between male and female cells, and from systemic hormonal differences1-3. How sex hormones affect non-reproductive organs is poorly understood, yet highly relevant to health given the sex-biased incidence of many diseases4. Here we report that steroid signalling in Drosophila from the ovaries to the gut promotes growth of the intestine specifically in mated females, and enhances their reproductive output. The active ovaries of the fly produce the steroid hormone ecdysone, which stimulates the division and expansion of intestinal stem cells in two distinct proliferative phases via the steroid receptors EcR and Usp and their downstream targets Broad, Eip75B and Hr3. Although ecdysone-dependent growth of the female gut augments fecundity, the more active and more numerous intestinal stem cells also increase female susceptibility to age-dependent gut dysplasia and tumorigenesis, thus potentially reducing lifespan. This work highlights the trade-offs in fitness traits that occur when inter-organ signalling alters stem-cell behaviour to optimize organ size.


Subject(s)
Drosophila melanogaster/metabolism , Fertility/physiology , Intestines/growth & development , Longevity/physiology , Organ Size/physiology , Ovary/metabolism , Steroids/metabolism , Aging , Animals , Carcinogenesis , Cell Proliferation , Copulation/physiology , DNA-Binding Proteins/metabolism , Drosophila Proteins/metabolism , Drosophila melanogaster/anatomy & histology , Drosophila melanogaster/cytology , Drosophila melanogaster/physiology , Ecdysone/metabolism , Female , Intestinal Mucosa/anatomy & histology , Intestinal Mucosa/cytology , Intestinal Mucosa/metabolism , Intestinal Mucosa/pathology , Intestines/anatomy & histology , Intestines/cytology , Intestines/pathology , Male , Receptors, Cytoplasmic and Nuclear/metabolism , Receptors, Steroid/metabolism , Stem Cells/cytology , Stem Cells/metabolism , Transcription Factors/metabolism
10.
Nature ; 572(7767): 56-61, 2019 08.
Article in English | MEDLINE | ID: mdl-31316207

ABSTRACT

The radiation-based sterile insect technique (SIT) has successfully suppressed field populations of several insect pest species, but its effect on mosquito vector control has been limited. The related incompatible insect technique (IIT)-which uses sterilization caused by the maternally inherited endosymbiotic bacteria Wolbachia-is a promising alternative, but can be undermined by accidental release of females infected with the same Wolbachia strain as the released males. Here we show that combining incompatible and sterile insect techniques (IIT-SIT) enables near elimination of field populations of the world's most invasive mosquito species, Aedes albopictus. Millions of factory-reared adult males with an artificial triple-Wolbachia infection were released, with prior pupal irradiation of the released mosquitoes to prevent unintentionally released triply infected females from successfully reproducing in the field. This successful field trial demonstrates the feasibility of area-wide application of combined IIT-SIT for mosquito vector control.


Subject(s)
Aedes/microbiology , Aedes/physiology , Mosquito Control/methods , Mosquito Vectors/microbiology , Mosquito Vectors/physiology , Wolbachia/pathogenicity , Aedes/growth & development , Animals , China , Copulation , Feasibility Studies , Female , Humans , Insect Bites and Stings/prevention & control , Larva/growth & development , Larva/microbiology , Larva/physiology , Male , Mosquito Vectors/growth & development , Quality Control , Reproduction
11.
Proc Natl Acad Sci U S A ; 119(5)2022 02 01.
Article in English | MEDLINE | ID: mdl-35042830

ABSTRACT

In many social animals, females mate with multiple males, but the adaptive value of female extra-pair mating is not fully understood. Here, we tested whether male pied flycatchers (Ficedula hypoleuca) engaging in extra-pair copulations with neighboring females were more likely to assist their neighbors in antipredator defense. We found that extra-pair sires joined predator-mobbing more often, approached predators more closely, and attacked predators more aggressively than males without extra-pair offspring in the neighboring nest. Extra-pair mating may incentivize males to assist in nest defense because of the benefits that this cooperative behavior has on their total offspring production. For females, this mating strategy may help recruit more males to join in antipredator defense, offering better protection and ultimately improving reproductive success. Our results suggest a simple mechanism by which extra-pair mating can improve reproductive success in breeding birds. In summary, males siring extra-pair offspring in neighboring nests assist neighbors in antipredator defense more often than males without extra-pair offspring.


Subject(s)
Copulation/physiology , Passeriformes/physiology , Sexual Behavior, Animal/physiology , Animals , Female , Male , Reproduction/physiology
12.
Proc Biol Sci ; 291(2020): 20232546, 2024 Apr 10.
Article in English | MEDLINE | ID: mdl-38565153

ABSTRACT

Fossilized mating insects are irreplaceable material for comprehending the evolution of the mating behaviours and life-history traits in the deep-time record of insects as well as the potential sexual conflict. However, cases of mating pairs are particularly rare in fossil insects, especially aquatic or semi-aquatic species. Here, we report the first fossil record of a group of water striders in copulation (including three pairs and a single adult male) based on fossils from the mid-Cretaceous of northern Myanmar. The new taxon, Burmogerris gen. nov., likely represents one of the oldest cases of insects related to the marine environment, such as billabongs formed by the tides. It exhibits conspicuous dimorphism associated with sexual conflict: the male is equipped with a specialized protibial comb as a grasping apparatus, likely representing an adaptation to overcome female resistance during struggles. The paired Burmogerris show smaller males riding on the backs of the females, seemingly recording a scene of copulatory struggles between the sexes. Our discovery reveals a mating system dominated by males and sheds light on the potential sexual conflicts of Burmogerris in the Cretaceous. It indicates the mating behaviour remained stable over long-term geological time in these water-walking insects.


Subject(s)
Amber , Life History Traits , Animals , Female , Male , Insecta , Reproduction , Copulation , Fossils , Myanmar
13.
Behav Brain Funct ; 20(1): 5, 2024 Mar 16.
Article in English | MEDLINE | ID: mdl-38493127

ABSTRACT

Fruit fly courtship behaviors composed of a series of actions have always been an important model for behavioral research. While most related studies have focused only on total courtship behaviors, specific courtship elements have often been underestimated. Identifying these courtship element details is extremely labor intensive and would largely benefit from an automatic recognition system. To address this issue, in this study, we established a vision-based fly courtship behavior recognition system. The system based on the proposed image processing methods can precisely distinguish body parts such as the head, thorax, and abdomen and automatically recognize specific courtship elements, including orientation, singing, attempted copulation, copulation and tapping, which was not detectable in previous studies. This system, which has high identity tracking accuracy (99.99%) and high behavioral element recognition rates (> 97.35%), can ensure correct identification even when flies completely overlap. Using this newly developed system, we investigated the total courtship time, and proportion, and transition of courtship elements in flies across different ages and found that male flies adjusted their courtship strategy in response to their physical condition. We also identified differences in courtship patterns between males with and without successful copulation. Our study therefore demonstrated how image processing methods can be applied to automatically recognize complex animal behaviors. The newly developed system will largely help us investigate the details of fly courtship in future research.


Subject(s)
Courtship , Sexual Behavior, Animal , Animals , Male , Sexual Behavior, Animal/physiology , Drosophila/physiology , Behavior, Animal , Copulation
15.
Gen Comp Endocrinol ; 353: 114528, 2024 07 01.
Article in English | MEDLINE | ID: mdl-38643848

ABSTRACT

Kisspeptin is a peptide that plays an important role through its effects on the hypothalamus-pituitary-gonadal (HPG) axis. It has also been implicated in sexual behavior. The present study investigated whether the relationship between kisspeptin and sexual behavior is independent of the HPG axis, i.e., testosterone. Sexual behavior was examined after the administration of kisspeptin to gonadally intact male rats and gonadectomized male rats that received testosterone supplementation. Other male rats were also observed for sexual behavior once a week from 2 to 5 weeks after gonadectomy and receiving kisspeptin for the sixth postoperative week. Sexual behavior in female rats serving as the partner for each male was also observed. Female rats were not administered kisspeptin in the present study. The results obtained showed that the administration of kisspeptin increased precopulatory behavior in gonadally intact male rats and gonadectomized male rats that received testosterone supplementation and proceptive behavior in their female partners. Precopulatory behavior in males and receptive behavior in females increased, while copulatory behavior in males and receptive behavior in females remained unchanged. Furthermore, the administration of kisspeptin increased precopulatory behavior in gonadectomized males, but did not affect receptive behavior in females. These results suggest that kisspeptin affected males independently and/or supplementally to testosterone, and also that changes in the presence of testosterone in males had an impact on proceptive behavior in their female partners. In conclusion, kisspeptin may involve an as-yet-unidentified neural pathway in sexual desire independently of the HPG axis.


Subject(s)
Kisspeptins , Sexual Behavior, Animal , Testosterone , Animals , Kisspeptins/metabolism , Kisspeptins/pharmacology , Male , Testosterone/pharmacology , Female , Rats , Sexual Behavior, Animal/drug effects , Sexual Behavior, Animal/physiology , Rats, Wistar , Copulation/drug effects , Copulation/physiology
16.
Am J Primatol ; 86(5): e23611, 2024 May.
Article in English | MEDLINE | ID: mdl-38409866

ABSTRACT

Olfaction is one of the evolutionarily oldest senses and plays a fundamental role in foraging and social interactions across mammals. In primates, the role of olfaction is now well recognized, but better investigated in strepsirrhine and platyrrhine primates than in catarrhines. We observed the sniffing behavior of semi-free ranging Barbary macaques, Macaca sylvanus, at Affenberg Salem, Germany, to assess how frequently macaques sniff and in which contexts, and how sniffing is affected by sex and age. Focal observations of 24 males and 24 females aged 1-25 years showed that Barbary macaques sniffed, on average, 5.24 times per hour, with more than 80% of sniffs directed at food. Irrespective of the context, younger individuals sniffed more often than older ones. Females' sniffs were more often directed at food than male sniffs, while males sniffed more often than females in a social context. Sniffs at conspecifics occurred primarily in a sexual context, with 70% of social sniffs directed at female anogenital swellings performed by males. Of the observed 176 anogenital inspections, 51 involved sniffing of the swelling. Olfactory inspections were followed by copulation significantly less often than merely visual inspections, suggesting that anogenital odors may play a role in male mating decisions, but the role of olfaction in sexual interactions warrants further investigations. In sum, results show that Barbary macaques routinely use olfaction during feeding, but also in a socio-sexual context, corroborating the relevance of the olfactory sense in the lives of catarrhine primates.


Subject(s)
Macaca , Reproduction , Female , Male , Animals , Copulation , Social Interaction , Mammals
17.
Proc Natl Acad Sci U S A ; 118(1)2021 01 05.
Article in English | MEDLINE | ID: mdl-33443193

ABSTRACT

Drosophila melanogaster females experience a large shift in energy homeostasis after mating to compensate for nutrient investment in egg production. To cope with this change in metabolism, mated females undergo widespread physiological and behavioral changes, including increased food intake and altered digestive processes. The mechanisms by which the female digestive system responds to mating remain poorly characterized. Here, we demonstrate that the seminal fluid protein Sex Peptide (SP) is a key modulator of female post-mating midgut growth and gene expression. SP is both necessary and sufficient to trigger post-mating midgut growth in females under normal nutrient conditions, and likely acting via its receptor, Sex Peptide Receptor (SPR). Moreover, SP is responsible for almost the totality of midgut transcriptomic changes following mating, including up-regulation of protein and lipid metabolism genes and down-regulation of carbohydrate metabolism genes. These changes in metabolism may help supply the female with the nutrients required to sustain egg production. Thus, we report a role for SP in altering female physiology to enhance reproductive output: Namely, SP triggers the switch from virgin to mated midgut state.


Subject(s)
Digestive System/metabolism , Drosophila Proteins/metabolism , Drosophila melanogaster/metabolism , Fertility/physiology , Intercellular Signaling Peptides and Proteins/metabolism , Receptors, Peptide/metabolism , Reproduction/physiology , Transcriptome/genetics , Animals , Copulation , Digestive System/anatomy & histology , Digestive System/growth & development , Drosophila Proteins/genetics , Drosophila melanogaster/genetics , Female , Fertility/genetics , Gene Ontology , Intestines/anatomy & histology , Intestines/growth & development , Intestines/physiology , Male , Receptors, Peptide/genetics , Reproduction/genetics , Semen/metabolism , Sexual Behavior, Animal/physiology , Transcriptome/physiology
18.
Annu Rev Entomol ; 68: 89-108, 2023 Jan 23.
Article in English | MEDLINE | ID: mdl-36198400

ABSTRACT

Mating produces profound changes in the behavior of female flies, such as an increase in oviposition, reduction in sexual receptivity, increase in feeding, and even excretion. Many of these changes are produced by copulation, sperm, and accessory gland products that males transfer to females during mating. Our knowledge on the function of the male ejaculate and its effect on female insects is still incipient. In this article, we review peri- and postcopulatory behaviors in tephritid flies. We address the effects of male copulatory behavior; copula duration; and the male ejaculate, sperm, and accessory gland products on female remating behavior. Many species from these families are pests of economic importance; thus, understanding male mating effects on female behavior contributes to both developing more effective environmentally friendly control methods and furthering our understanding of evolutionary implications of intersexual competition and sexual conflict.


Subject(s)
Diptera , Male , Female , Animals , Semen , Spermatozoa , Copulation , Sexual Behavior, Animal
19.
Am Nat ; 201(4): E56-E69, 2023 04.
Article in English | MEDLINE | ID: mdl-36957998

ABSTRACT

AbstractThe presence of same-sex sexual behavior across the animal kingdom is often viewed as unexpected. One explanation for its prevalence in some taxa is indiscriminate mating-a strategy wherein an individual does not attempt to determine the sex of its potential partner before attempting copulation. Indiscriminate mating has been argued to be the ancestral mode of sexual reproduction and can also be an optimal strategy given search costs of choosiness. Less attention has been paid to the fact that sex discrimination requires not just the attempt to differentiate between the sexes but also some discernible difference (a signal or cue) that can be detected. To address this, we extend models of mating behavior to consider the coevolution of sex discrimination and sexual signals. We find that under a wide range of parameters, including some with relatively minor costs, indiscriminate mating and the absence of sexual signals will be an evolutionary end point. Furthermore, the absence of both sex discrimination and sexual signals is always evolutionarily stable. These results suggest that an observable difference between the sexes likely arose as a by-product of the evolution of different sexes, allowing discrimination to evolve.


Subject(s)
Mating Preference, Animal , Sexual Behavior, Animal , Animals , Sexism , Reproduction , Copulation , Sex , Biological Evolution
20.
Proc Biol Sci ; 290(2009): 20231808, 2023 10 25.
Article in English | MEDLINE | ID: mdl-37848059

ABSTRACT

Mating with close kin can have considerable negative fitness consequences, which are expected to result in selective pressure for inbreeding avoidance mechanisms, such as dispersal, mate choice and post-copulatory biases. Captive studies have suggested that inbreeding avoidance through mate choice is far less widespread than expected and may be absent where other mechanisms already limit inbreeding. However, few studies have examined multiple mechanisms of inbreeding avoidance simultaneously, particularly in the wild. We use 13 years of detailed dispersal, copulation and paternity data from mountain gorillas to examine inbreeding avoidance. We find that partial dispersal of both sexes results in high kinship in multimale groups, but that copulations between close kin occur 40% less than expected. We find strong kin discrimination in mate choice, with significant avoidance of maternal kin but more limited avoidance of paternal kin. We find no evidence for post-copulatory inbreeding avoidance. Our analyses support familiarity-based mechanisms of kin identification and age-based avoidance that limits mating between fathers and daughters in their natal group. Our findings demonstrate that multiple complementary mechanisms for inbreeding avoidance can evolve in a single species and suggest that inbreeding avoidance through mate choice may enable more flexible dispersal systems to evolve.


Subject(s)
Hominidae , Inbreeding , Male , Animals , Female , Sexual Behavior, Animal , Copulation , Reproduction
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