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Sexual partner preference in female zebra finches: the role of early hormones and social environment.

This experiment investigated the effects of early estrogen treatment and sex composition of the social environment on sexual partner preference in female zebra finches, a pair-bonding socially monogamous species. Birds were injected daily with estradiol benzoate (EB) or the steroid vehicle for the first 2 weeks posthatch and then lived in either a unisex (all-female) or a mixed sex group from 40 to 100 days. After 100 days birds were implanted with testosterone propionate and given three kinds of tests: tests with a stimulus female, two-choice mate preference tests with male and female stimuli, and colony tests to assess pairing preference in a more naturalistic context. Both EB and unisex housing independently resulted in a preference for females (masculinized preference) in the two-choice tests, but only females with both EB treatment and unisex living were more likely to pair with females in the colony tests. Sexual partner preference, a key sexually dimorphic component of mate choice, appears to be organized by sex steroids in this pair-bonding species, but in a manner that may be mediated by the social environment.

Animals↗

Sexual selection in Nauphoeta cinerea: inherited mating preference?

In the cockroach, Nauphoeta cinerea, female preferences with respect to sexual selection can be easily examined. Mating is nonrandom due to female preferences based on olfactory differences among males. This mate choice results in a mating advantage for socially dominant males. In this paper, results of experiments designed to explore the relationship between female choice in daughters and the preferred male character are described. Using females with male parents of known status and an olfactometer to determine preferences, it is shown that the type of male preferred depends on the status of the female's father. Because social experiences of females were experimentally controlled, these preliminary results suggest that (1) variation in female preferences may have a genetic basis and (2) because of assortative mating, mate choice may be genetically linked to the preferred male character, as predicted by mathematical models of the sexual selection process. N. cinerea appears to be an ideal species for testing predictions and assumptions of models of sexual selection.

Animals↗

Behavioral evidence for host fidelity among populations of the parasitic wasp, Diachasma alloeum (Muesebeck).

The concept of "host fidelity," where host-specific mating occurs in close proximity to the oviposition site and location of larval development, is thought to impart a pre-mating isolation mechanism for sympatric speciation (sensu members of the genus Rhagoletis). The apple maggot fly, Rhagoletis pomonella, and the blueberry maggot fly, R. mendax, are morphologically similar sibling species thought to have speciated in sympatry by divergence of host plant association. Both of these fly species are attacked by the specialist braconid parasitoid, Diachasma alloeum. The current study demonstrates that both male and female D. alloeum exhibit a behavioral preference for the odor of the fruit of their larval Rhagoletis host species. Specifically, those D. alloeum emerging from puparia of R. pomonella are preferentially attracted to hawthorn fruit and those emerging from puparia of R. mendax are preferentially attracted to blueberry fruit. However, male D. alloeum reared from either R. pomonella or R. mendax were equally attracted to females originating from both Rhagoletis species. We suggest that the data herein present evidence for "host fidelity," where populations of D. alloeum exhibit a greater tendency to mate and reproduce among the host plants of their preferred Rhagoletis hosts. Furthermore, host fidelity may have resulted in the evolution of distinct host races of D. alloeum tracking the speciation of their larval Rhagoletis prey.

Animals↗

Differential posteclosion housing experiences and reproduction in Drosophila.

Differential housing following eclosion was found to affect the mating behaviour of both sexes of Drosophila melanogaster. Flies housed in isolation showed higher mating frequencies and shorter latencies than did group-housed flies. Given a choice of an isolated or group-housed male, females tended to mate with males with similar housing experiences as themselves. Given a choice of an isolated or group-housed female, males strongly preferred the former. The possibility is advanced that these effects are mediated by olfactory stimuli.

Animals↗

Sexual selection and mating advantages in the giant sperm species, Drosophila bifurca.

Mate choice may be exercised by either sex; however, females are generally choosier than males because they invest more in their gametes. Female choice is often based on direct benefits, such as better reproductive output, whereas male choice appears to be based on differences in female fecundity. However, when gamete production is limited, sexual selection theories predict that mate choice will be decisive for reproductive success in both sexes. Here, we investigate how mating advantage is achieved in Drosophila bifurca, a giant sperm species in which both sexes produce only a few gametes. Our initial expectations were as follows: (1) females would discriminate against sperm-depleted males to avoid fertility cost; and (2) males would discriminate against inseminated females to reduce sperm competition and increase the assurance of paternity of individual gametes. Differences in courtship behaviors were analyzed with regard to the sexual maturity, which is reached after 22 days in males at 21 degrees C, and the reproductive history of both sexes (inseminated versus virgin for females, and sperm-depleted versus sperm-loaded for males). Our results show that: (1) sexual immaturity precludes mating in both sexes; (2) virgin females do not discriminate between sperm-loaded and sperm-depleted males, and (3) males mate preferentially with virgin females, because inseminated females fend off the male, which tended to bring male courtship to an end. Female remating was limited, but increased significantly when the first male was sperm-depleted. Contrary to our initial expectations, these findings suggest that male sperm depletion does not affect female mating preference, whereas the success of male courtship is driven by female behavior. The possibility that female remating was only promoted in response to low sperm transfer is discussed in relation to the gametic system of this species.

Animals↗

Sexual selection and individual genetic diversity in a songbird.

Here, we report for the first time, to our knowledge, a strong correlation between a measure of individual genetic diversity and song complexity, a sexually selected male trait in sedge warblers, Acrocephalus schoenobaenus. We also find that females prefer to mate with males who will maximize this diversity in individual progeny. The genetic diversity of each offspring is further increased by means of nonrandom fertilization, as we also show that the fertilizing sperm contains a haplotype more genetically distant to that of the egg than expected by chance. These findings suggest that species' mating preferences may be subject to fine tuning aimed at increasing offspring viability through increased genetic diversity. This includes external and internal mechanisms of selection, even within the ejaculate of a single male.

Animals↗

Paternal genetic effects on offspring fitness are context dependent within the extrapair mating system of a socially monogamous passerine.

Avian extrapair mating systems provide an interesting model to assess the role of genetic benefits in the evolution of female multiple mating behavior, as potentially confounding nongenetic benefits of extrapair mate choice are seen to be of minor importance. Genetic benefit models of extrapair mating behavior predict that females engage in extrapair copulations with males of higher genetic quality compared to their social mates, thereby improving offspring reproductive value. The most straightforward test of such good genes models of extrapair mating implies pairwise comparisons of maternal half-siblings raised in the same environment, which permits direct assessment of paternal genetic effects on offspring traits. But genetic benefits of mate choice may be difficult to detect. Furthermore, the extent of genetic benefits (in terms of increased offspring viability or fecundity) may depend on the environmental context such that the proposed differences between extrapair offspring (EPO) and within-pair offspring (WPO) only appear under comparatively poor environmental conditions. We tested the hypothesis that genetic benefits of female extrapair mate choice are context dependent by analyzing offspring fitness-related traits in the coal tit (Parus ater) in relation to seasonal variation in environmental conditions. Paternal genetic effects on offspring fitness were context dependent, as shown by a significant interaction effect of differential paternal genetic contribution and offspring hatching date. EPO showed a higher local recruitment probability than their maternal half-siblings if born comparatively late in the season (i.e., when overall performance had significantly declined), while WPO performed better early in the season. The same general pattern of context dependence was evident when using the number of grandchildren born to a cuckolding female via her female WPO or EPO progeny as the respective fitness measure. However, we were unable to demonstrate that cuckolding females obtained a general genetic fitness benefit from extrapair fertilizations in terms of offspring viability or fecundity. Thus, another type of benefit could be responsible for maintaining female extrapair mating preferences in the study population. Our results suggest that more than a single selective pressure may have shaped the evolution of female extrapair mating behavior in socially monogamous passerines.

Animals↗

Disruptive sexual selection against hybrids contributes to speciation between Heliconius cydno and Heliconius melpomene.

Understanding the fate of hybrids in wild populations is fundamental to understanding speciation. Here we provide evidence for disruptive sexual selection against hybrids between Heliconius cydno and Heliconius melpomene. The two species are sympatric across most of Central and Andean South America, and coexist despite a low level of hybridization. No-choice mating experiments show strong assortative mating between the species. Hybrids mate readily with one another, but both sexes show a reduction in mating success of over 50% with the parental species. Mating preference is associated with a shift in the adult colour pattern, which is involved in predator defence through Müllerian mimicry, but also strongly affects male courtship probability. The hybrids, which lie outside the curve of protection afforded by mimetic resemblance to the parental species, are also largely outside the curves of parental mating preference. Disruptive sexual selection against F(1) hybrids therefore forms an additional post-mating barrier to gene flow, blurring the distinction between pre-mating and post-mating isolation, and helping to maintain the distinctness of these hybridizing species.

Animals↗

Stabilizing and directional female choice for male calls in the European green toad.

We analysed variation in three temporal (pulse rate, call and intercall duration) and one spectral (fundamental frequency) acoustic properties of the green toad's, Bufo viridis, advertisement call, at different levels, from the single bout of an individual to between populations. Independent of the level, pulse rate and fundamental frequency were less variable than intercall and call durations. The former were classified as static, the latter as dynamic properties of the signal. We analysed the effects of body size and temperature, assumed to represent, respectively, morphological and physiological constraints on the signals. Static properties were under strong constraints, either morphologically (fundamental frequency) or physiologically (pulse rate), whereas no significant effects of size and temperature were observed on dynamic properties. We used two-choice discrimination experiments to investigate females' preferences for call properties. Females preferred extreme to mean values of the dynamic properties, even when these fell above the typical range of variation of the population. In contrast, females had weak preferences for mean values, and for lower than average compared with higher than average values, of static properties. We discuss the hypothesis that static and dynamic call properties may convey different information to females: static properties may be important for species recognition, whereas dynamic properties may be important for mate selection.1998 The Association for the Study of Animal Behaviour

Journal Article↗

Assortative mating between chromosome forms of the mole rat, Spalax ehrenbergi.

Females of two parapatric chromosomal forms (2n = 52 and 2n =58) of the fossorial mole rat, Spalax ehrenbergi, in Israel, were tested for mate selection between two alternative, a homo- and a heterochromosomal, males. Estrous females significantly preferred the male of their own chromosomal form, on the basis of several behavioural criteria. The evolutionary significance of the positive assortative mating found, lies presumably in reinforcing reproductive isolation between the chromosome forms, thereby contributing to finalize speciation.

Animals↗

The role of infectious disease, inbreeding and mating preferences in maintaining MHC genetic diversity: an experimental test.

In house mice, and probably most mammals, major histocompatibility complex (MHC) gene products influence both immune recognition and individual odours in an allele-specific fashion. Although it is generally assumed that some form of pathogen-driven balancing selection is responsible for the unprecedented genetic diversity of MHC genes, the MHC-based mating preferences observed in house mice are sufficient to account for the genetic diversity of MHC genes found in this and other vertebrates. These MHC disassortative mating preferences are completely consistent with the conventional view that pathogen-driven MHC heterozygote advantage operates on MHC genes. This is because such matings preferentially produce MHC-heterozygours progeny, which could enjoy enhanced disease resistance. However, such matings could also function to avoid genome-wide inbreeding. To discriminate between these two hypotheses we measured the fitness consequences of both experimentally manipulated levels of inbreeding and MHC homozygosity and heterozygosity in semi-natural populations of wild-derived house mice. We were able to measure a fitness decline associated with inbreeding, but were unable to detect fitness declines associated with MHC homozygosity. These data suggest that inbreeding avoidance may be the most important function of MHC-based mating preferences and therefore the fundamental selective force diversifying MHC genes in species with such mating patterns. Although controversial, this conclusion is consistent with the majority of the data from the inbreeding and immunological literature.

Animals↗

Major histocompatibility complex variation and mate choice in a lekking bird, the great snipe (Gallinago media).

Genes of the major histocompatibility complex (MHC) play a major part in the activation of the vertebrate immune system. In addition, they also appear to function as cues for mate choice. In mammals especially, several kinds of MHC-dependent mate choice have been hypothesized and observed. These include choice of mates that share no or few alleles with the choosing individual, choice of mates with alleles that differ as much as possible from the choosing individual, choice of heterozygous mates, choice of certain genotypes and choice of rare alleles. We investigated these different aspects of mate choice in relation to MHC in a lekking bird species, the great snipe (Gallinago media). We found no evidence for MHC disassortative mating, no preference for males with many MHC alleles and no preference for rare alleles. However, we did find that some allelic lineages were more often found in males with mating success than in males without mating success. Females do not seem to use themselves as references for the MHC-dependent mate choice, rather they seem to prefer males with certain allele types. We speculate that these alleles may be linked to resistance to common parasites.

Alleles↗

The design of an olfactometer and a method for quantitative stud on the effect of odours on insect behaviour.

Vertical air-flow olfactometer suitable for study of the influence of odours on walking insect behaviour was described. The results of preliminary experiments proved that the olfactometer enables long-lasting "quasiethological" observations. Employed method of observation gave quantitative information about the influence of odours on ratios of basic predeterminate activities, insect distribution pattern and their tendency to choose zones with an odour. The Colorado beetle (Leptinotarsa decemilineata Say) males preferred zones with the female odour spending there more time. During emission of the pheromone males were more active. In zones with the pheromone males displayed the tendency to cluster, spent more time taping intensely and more frequently attempted to mate.

Animals↗

What do female rats like about sex? Paced mating.

The motivational aspects of female sexual behavior have been evaluated by a variety of methodologies including: the increasing barrier method, the runway procedure, partner preference test, operant behavior and conditioned place preference. When female rats are tested for sexual receptivity under traditional laboratory conditions, usually a small open area, both appetitive and aversive components of the sexual interaction are easily observed. For example, after prolonged testing, subsequent lordosis and the intensity of this response are reduced increasing the rejection behavior by the female. However, when female rats are allowed to pace (control) the rate of sexual stimulation they received, as usually occurs under seminatural and natural conditions, the aversive properties of mating are reduced. The conditioned place preference can be use to measure the positive affect elicited by mating. We have combined pacing and conditioned place preference in an attempt to reduced the possible aversive consequences associated with mating and increase the likelihood of detecting the appetitive effects of coital interaction in female rats. Only female rats that regulated (paced) their coital interactions with a stud male through a two-compartment chamber in which only the female could freely move from one compartment to the other developed a clear place preference. As well, females that received ten or 15 paced intromissions (without ejaculation) also developed place preference. The place preference induce by paced mating is blocked by the systemic administration of naloxone suggesting that opioids are involved in the reward processes associated with paced mating. Paced sexual interactions can induce a positive affect of sufficient intensity and duration to induce conditioning.

Animals↗

Olfactory eavesdropping by a competitively foraging stingless bee, Trigona spinipes.

Signals that are perceived over long distances or leave extended spatial traces are subject to eavesdropping. Eavesdropping has therefore acted as a selective pressure in the evolution of diverse animal communication systems, perhaps even in the evolution of functionally referential communication. Early work suggested that some species of stingless bees (Hymenoptera, Apidae, Meliponini) may use interceptive olfactory eavesdropping to discover food sources being exploited by competitors, but it is not clear if any stingless bee can be attracted to the odour marks deposited by an interspecific competitor. We show that foragers of the aggressive meliponine bee, Trigona spinipes, can detect and orient towards odour marks deposited by a competitor, Melipona rufiventris, and then rapidly take over the food source, driving away or killing their competitors. When searching for food sources at new locations that they are not already exploiting, T. spinipes foragers strongly prefer M. rufiventris odour marks to odour marks deposited by their own nest-mates, whereas they prefer nest-mate odour marks over M. rufiventris odour marks at a location already occupied by T. spinipes nest-mates. Melipona rufiventris foragers flee from T. spinipes odour marks. This olfactory eavesdropping may have played a role in the evolution of potentially cryptic communication mechanisms such as shortened odour trails, point-source only odour marking and functionally referential communication concealed at the nest.

Analysis of Variance↗

Social effects on mate choices of male Japanese quail, Coturnix japonica.

In four experiments, we examined effects on affiliative preferences of 'focal' male Japanese quail of seeing a conspecific female interact with another male. Each experiment was conducted in three 10-min phases: (1) a pretest during which a focal male chose between two females; (2) an observation phase, when each focal male watched the female he had spent more time near during the pretest (his 'preferred' female) interact with another male (referred to as a 'model' male); and (3) a post-test, during which each focal male again chose between his nonpreferred and preferred females. Focal males decreased their preferences for preferred females after seeing them together with a model male, even when preferred females and model males were separated by a transparent barrier that prevented them from mating, but allowed them to court. A focal male's preference for his preferred female did not decrease when the female mated with a model male out of sight of the focal male. These first results could reflect a tendency for males simply to avoid areas where they saw conspecifics courting. However, focal males also showed reduced preferences for preferred females they had seen mate when the locations of preferred and nonpreferred females were reversed between observation and post-test phases of the experiment and the effects of transposition were controlled for. We concluded that male quail tend to avoid areas that recently contained courting pairs, as well as particular females, seen courting. Copyright 1999 The Association for the Study of Animal Behaviour.

Journal Article↗

Size-assortative mating, male choice and female choice in the curculionid beetle Diaprepes abbreviatus.

In the beetle Diaprepes abbreviatus (L.) females are larger on average than males, as indicated by elytra length. Size-assortative matings were observed in wild populations in Florida and in laboratory mating experiments. We tested three mechanisms for this size-assortative mating: (1) mate availability; (2) mating constraints; and (3) mate choice. We found that mate choice influenced size-assortative mating by: (1) large and small males preferring to mate with large females; (2) large males successfully competing for large females, leaving small males to mate with small females; and (3) females accepting large males as mates more readily than small males. Males increased their reproductive success by mating with larger, more fecund females. They transferred protein to females during mating. Copyright 1999 The Association for the Study of Animal Behaviour.

Journal Article↗

How does the major histocompatibility complex influence behavior?

The major histocompatibility complex (MHC) encodes highly polymorphic cell surface glycoproteins that form the basis of immunological individuality. It has been postulated that MHC besides its role in immune defence also determines behavior through formation of specific odor cues. In addition several studies have implicated MHC disassortative odor and mating preferences in mice, rats, and humans. Further leading studies have suggested that mice and humans prefer to mate with MHC dissimilar individuals. Although the latter remains controversial, MHC dependent mating preferences provide a potentially important selective factor driving the polymorphisms of the MHC genes. Here we review some of the available data and hypotheses on the influence of the MHC on behavior and discuss its molecular and chemical basis.

Animals↗