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Selecting mating pairs with linear programming techniques.

Mate selection can increase progency merit if overall merit is nonlinear for one or more component traits. An index of expected progeny merit could be calculated for all possible mating pairs, and the set of pairs with the highest progeny mean could be selected. There are serious computational problems for more than a few males and females. To select and mate f, females, and m, males, from n of each, with k0 females per male, would require (nf)(nm)f!/(k0!)m evaluations. Linear programming algorithms can determine the optimal strategy efficiently by considering only a subset of these possibilities. Let pi ij be the index of progency merit of the ith sire mated to the jth dam and Xij be the decision variable for that mating (restricted to 0 or 1). Then the problem of selecting mating pairs can be stated as: maximize sigma i sigma j pi ij Xij, subject to sigma i Xij less than or equal to 1, sigma j Xij less than or equal to k0, sigma i sigma j Xij = f, and Xij = 0 or 1. By including an artificial sire and an artificial dam and choosing appropriate merit values for the artificial matings, this problem can be solved by efficient "transportation" algorithms. These algorithms could be used to develop rational mating packages for dairy artificial insemination studs provided that an objective evaluation of progeny merit could be formulated, provided that merit is not simply additively inherited.

Animal Husbandry↗

Use of computerized mate selection programs to control inbreeding of Holstein and Jersey cattle in the next generation.

The expected role of computerized mate selection programs with regard to inbreeding and lifetime profitability of Holstein and Jersey cattle was examined using data from 25 large registered herds of each breed. Sire selection and mate allocation were carried out using linear programming with the following objectives: 1) minimum inbreeding, 2) maximum net merit subject to a fixed inbreeding threshold, and 3) maximum expected lifetime profit after adjustment for inbreeding depression. Inbreeding of actual matings was similar to inbreeding from random matings, indicating that current inbreeding avoidance programs in these herds are ineffective. Inbreeding was reduced by 1.6 and 1.9% in Holsteins and Jerseys, respectively, when a mate allocation program was applied with service sires and usage levels fixed at the actual values. Benefits of mate selection programs increased when both sire selection and mate pair allocation were considered. Maximization of mean net merit with inbreeding restricted to a fixed level (5% in Holsteins and 8% in Jerseys) led to decreases in inbreeding of 0.9 and 1.4% and increases in lifetime profit of $16.66 and $26.86 in Holsteins and Jerseys, respectively, relative to programs that ignored inbreeding. Maximization of mean expected lifetime profit after adjustment for inbreeding depression decreased inbreeding by 1.8 and 2.8% and increased lifetime profit by $37.37 and $59.77 in Holsteins and Jerseys, respectively. Inbreeding coefficients estimated with pedigree traced to 1985 were inadequate predictors of inbreeding coefficients estimated with pedigrees traced to 1960. Mate selection programs cannot function optimally unless extensive historical pedigree data are available, particularly for service sires. Computerized mate selection programs can reduce inbreeding in the next generation, which will lead to an increase in farm profitability. However, if genetic diversity is to be maintained in the long term, procedures for selecting parents of AI sires must also be considered.

Algorithms↗

Mate selection by groups.

The two key components in a breeding program can be described as the development of an objective function and the implementation of an algorithm for mate selection to target the objective function. However, mate selection is unacceptably slow for objective functions that involve longer term aims, such as engineering a good connection between herds. This paper proposes animal clustering to facilitate group mate selection, plus a step to refine mate selection for individual animals. Cluster analysis is used to form groups of animals within each sex based on nominated factors such as breed, herd, age, and EBV. Mate selection is then performed on groups, reducing the size of the problem considerably. The example used involved a three-breed crossbred population with a simple objective function to maximize predicted progeny merit. Twenty sires and 500 dams were to be selected from 816 and 1784 candidates. Group mate selection achieved 96.9% efficiency (random selection, 0%; full mate selection, 100%) and took 0.28 s to compute (394.2 s for full mate selection). Permitting more candidates to reach the individual mate selection stage increased efficiency to, for example, 98.9% at the cost of an extra 1.15 s. Efficiency was also improved by permitting more clusters.

Algorithms↗

The "real" marriage squeeze: mate selection, mortality, and the mating gradient.

The nature and magnitude of the marriage squeeze in Canada is examined using vital statistics and census data. "Age differentials of brides and grooms in all marriages registered in 1981 are used to create 'availability indices' that estimate the number of unmarried persons of the opposite sex that are potentially available for every 100 unmarried persons. For men, availability indices are low in the 20s, and they increase with advancing age to about one-to-one in the 50s. For women, access to potential grooms is highest in the 20s and decreases with advancing age until, in the 50s, there are only 50 potential grooms per 100 unmarried women." The implications of unbalanced sex ratios are discussed with reference to changes in marriage and the family.

Age Factors↗

The role of attractiveness and mate selection in phylogenetic adaptation with particular reference to early man.

The author hypothesizes on the roles of sexual selection and assortative mating in human evolution. Basing his argument on a theory, which views neurosis as a maladaptive vicious cycle, he argues that there is dovetailing of the actions of neurosis and mate selection in promoting the phylogenetic adaptation of early man. He sees both neurosis and assortative mating as magnifying existing differences in viability. This process would, by favoring the most viable, have accelerated human evolution. The relationship between movement patterns and neurosis is also discussed.

Adaptation, Psychological↗

Models of selective mating and the initiation of the Fisherian process.

The effects of various rules of selective mating on the initial stages of Fisherian sexual selection are investigated. A comparison of three models of selective mating, fixed relative preference, best of N males and absolute preference is provided, with a special emphasis on their mathematical properties. Using a two-locus haploid model of sexual selection in a polygamous population, I show that the absolute preference rule of selective mating may lower the threshold frequency of the preference trait, required for the initiation of the Fisherian process, as low as zero. This was not observed in the previous analyses with fixed relative preference or best of N male rules. It is then argued that absolute preference may cause the initiations of the Fisherian process more easily without introducing additional assumptions such as pleiotropy or random genetic drift. Some problems associated with the mating rule are also discussed.

Animals↗

Gender differences in mate selection preferences: a test of the parental investment model.

Evolutionary-related hypotheses about gender differences in mate selection preferences were derived from Triver's parental investment model, which contends that women are more likely than men to seek a mate who possesses nonphysical characteristics that maximize the survival or reproductive prospects of their offspring, and were examined in a meta-analysis of mate selection research (questionnaire studies, analyses of personal advertisements). As predicted, women accorded more weight than men to socioeconomic status, ambitiousness, character, and intelligence, and the largest gender differences were observed for cues to resource acquisition (status, ambitiousness). Also as predicted, gender differences were not found in preferences for characteristics unrelated to progeny survival (sense of humor, "personality"). Where valid comparisons could be made, the findings were generally invariant across generations, cultures, and research paradigms.

Female↗

On sex, mate selection and the red queen.

The widespread occurrence of sexual reproduction despite the two-fold disadvantage of producing males, is still an unsolved mystery in evolutionary biology. One explanatory theory, called the "Red Queen" hypothesis, states that sex is an adaptation to escape from parasites. A more recent hypothesis, the mate selection hypothesis, assumes that non-random mating, possible only with sex, accelerates the evolution of beneficial traits. This paper tests these two hypotheses, using an agent-based or "micro-analytic" evolutionary algorithm where host-parasite interaction is simulated adhering to biological reality. While previous simpler models testing the "Red Queen" hypothesis considered mainly haploid hosts, stable population density, random mating and simplified expression of fitness, our more realistic model allows diploidy, mate selection, live history constraints and variable population densities. Results suggest that the Red Queen hypothesis is not valid for more realistic evolutionary scenarios and that each of the two hypotheses tested seem to explain partially but not exhaustively the adaptive value of sex. Based on the results we suggest that sexual populations in nature should avoid both, maximizing outbreeding or maximizing inbreeding and should acquire mate selection strategies which favour optimal ranges of genetic mixing in accordance with environmental challenges.

Animals↗

Assortative mating: sex differences in mate selection for married and unmarried couples.

We studied assortative mating for age, nationality, educational level, and occupational level in married and unmarried parents to test evolutionary models explaining mate selection among humans. We used the marriage and birth registers of the Venezuelan population to compare recently married, fertile married, and fertile unmarried couples. The results show significant assortative mating for all variables, but the results are strongest for age and education. These data suggest that (1) selection criteria based on age vary along the life cycle and differ between married and unmarried couples; (2) male's socioeconomic status is more related to the availability of younger females among unmarried couples compared with married couples, except for young couples; and (3) female selection for better (more educated and/or better employed) mates is stronger among married couples, whereas male selection for younger females or those showing actual reproductive potential is stronger among unmarried couples.

Adolescent↗

Is human mating adventitious or the result of lawful choice? A twin study of mate selection.

Pairs of middle-aged twins and their spouses provided data on 74 mainly psychological variables. Neither spousal similarity nor idiosyncratic criteria could account for specific mate selection in these 738 couples. Of the twins (and their spouses), 547 independently rated their initial attraction to their twin's mate (or to their spouse's twin): Findings suggest that characteristics both of the chooser and the chosen constrain mate selection only weakly. This article proposes that it is romantic infatuation that commonly determines the final choice from a broad field of potential eligibles and that this phenomenon is inherently random, in the same sense as is imprinting in precocial birds.

Adult↗

Mating-type differentiation and mate selection in the homothallic Chlamydomonas monoica.

By using combinations of phenotypically-distinct--but sexually-compatible--mutant strains of C. monoica (zym-1, zym-27, and nit-2) and assaying for zygote genotypes in genetically-mixed mating populations (where gametes of the two parental homothallic strains were present at similar frequencies), we have found that matings occur preferentially between cells of the same genotype. Additional support for an hypothesis of non-random mate selection was provided by using an easily-selectable genetic marker (sup-1) to verify the frequent occurrence of matings between cells of identical genotype in populations where the selectable genotype was present at very low relative frequency (10(-2) or 10(-3)) in a mixed mating population. Direct evidence for non-random mate selection was obtained by presenting nitrogen-starved cells with limiting nitrate to synchronize gametic differentiation in wild-type strains. Under these conditions, the four, eight, or 16 mitotic daughters released from the same mother sporangium often immediately established mating pairs within the group. Thus successive mitotic divisions of a single mother cell yielded progeny of opposite expressed mating-type.

Animals↗

Assortative versus selective mating: is the distinction worthwhile?

The study examines the distinction between assortative and selective mating made by Lewontin, Kirk, and Crow in 1968 and finds it unproductive. Not only has the difference been ignored on many occasions even as it was invoked, but maintaining it obscures several useful properties of both nonrandom mating schemes and some formally equivalent systems such as fertility selection. The elucidation of these similarities could have accelerated the work of population biologists.

Alleles↗

Factors and their origins in mate selection and choice among humans: implications for individual psychotherapy and counseling.

A mechanism of mate selection in humans is proposed and elaborated. It is further proposed that this mechanism constitutes one of the important factors for stability and the necessary longevity of the procreational dyad and therefore the procreational success of humans as a species. The concepts and mechanisms of assortative mating (homogamy) and that of complementarity of temperaments of the mates (heterogamy) which guide such selections are described, the relationships between the two are explored, and finally their possible early developmental origins are proposed. Evidence from a small study of 20 married couples' responses in temperament tests is offered as well as some illustrative case histories all pointing to those mechanisms. The argument is based mainly on principles of evolutionary psychology.

Adult↗

Motivational and personality trait relationships in mate selection.

This article discusses the question of homogamy and/or heterogamy in human mate selection with particular emphasis on Winch's principles of type I and type II complementarity. The experiment was performed on 82 married couples, at least one spouse of which was a graduate student at the University of Illinois. All were given the 16PF, the Motivational Analysis Test (MAT), and the Marriage Role Questionnaire. The authors found that except for fear and pugnacity all husband-wife trait correlations were positive, in contrast to Winch's principle of type I complementarity. They also found that their data did not support Winch's principle of type II complementarity.

Aggression↗

Mate selection and its impact on female marriage age, pregnancy wastages, and first child survival in Tamil Nadu, India.

Marriage in Indian society is a religious duty. Consanguineous marriage is common, where individuals prefer to marry within their clan (a unilateral kin group based on either matrilineal or patrilineal descent). Keeping in mind that this form of marriage has certain disadvantages for social and biological as well as demographic aspects of individuals and families, the present study examines the influence of mate selection (i.e., close relatives, distant relatives, not related) on female age at marriage, pregnancy wastages, and survival status of the first child. The study was designed based on the information collected on a sample size of 3,948 married women aged 13-49 in Tamil Nadu, India, by the National Family Health Survey (NFHS), 1992. Results suggest that 48 per cent of women in Tamil Nadu marry their relatives. This practice of marrying relatives is high in rural areas, among Hindus, Scheduled Castes/tribes, and illiterate women as compared to urban areas, among non-Hindus, non-SC/ST, and educated women, respectively. The bivariate analysis reveals that women marrying their close relatives had low age at marriage and experienced a higher per cent of pregnancy wastage and child loss (first child) as compared to those women marrying their distant relatives or nonrelatives. The result is found to be consistent even after controlling for selected background variables through multivariate techniques (applied separately for age at marriage, pregnancy wastages, and the survival status of first child). Hence, this study suggests that steps should be taken to inform people about the problems of marrying close relatives through appropriate IEC programs in Tamil Nadu.

Abortion, Spontaneous↗

A model for the analysis of mate selection in the marriages of twins: application to data on stature.

Analysis of the multiple correlations in body height within a sample of 117 monozygotic twin pairs and their spouses confirmed the existence of a high degree of assortative mating. However, the data also revealed an underlying asymmetry in the mate selection process. With respect to height, male twins were more selective than were members of female pairs, and among male twin pairs, those who were intermediate in height appeared to make the greatest contribution to the observed pattern of nonrandom mating. Because of their magnitude and potential asymmetry, the effects of phenotypic correlations between the spouses of related individuals must be correctly specified in any rigorous quantitative genetic analysis that extends beyond the nuclear family unit.

Body Height↗

The effect of scale dependent processes on kin selection: mating and density regulation.

Kin selection models describe fitness determining interactions that occur within small clusters of individuals often referred to as trait groups (Wilson, 1975). Because each individual influences not only its own fitness, but also the fitness of other members of the trait group, kin selection has both inter- and intra-group components (Hamilton, 1975; Wade, 1980). The importance of intergroup selection depends on the magnitude of inter-group differences in fertility and on the amount of genetic variation among trait groups. Migration and density regulation are likely to be important determinants of productivity and variation. Existing models integrate density regulation and migration structure into kin selection theory by applying carrying capacities or migration rates to trait groups. This requires that dispersal and density regulation both operate at the spatial scale of trait groups and excludes many cases of biological interest. I present a model that allows interaction, density regulation, and dispersion to operate over distinct spatial scales. The results of existing models can be retrieved as special cases of the general framework developed here. This model indicates that the appropriate scale for studying kin selection is determined by the spatial area over which the population is regulated. In effect, only a fraction of the total inter-trait group variance is available to intergroup selection. Processes that generate genetic variation over spatial scales larger than the "regulation scale" cannot aid the evolution of altruism. The analysis of a specific mating/migration model indicates how the various components of variation are determined by biological parameters such as migration rate. These results have important implications for the study of relatedness in natural populations.

Animals↗