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Selection bias associated with contraceptive practice in time-to-pregnancy studies.

In studies of subfertility using data on time to pregnancy (the number of noncontracepting menstrual cycles required to conceive), many pregnancies are not included in analyses because time-to-pregnancy data cannot always be collected. Birth control failures are one such group (couples who are using birth control regularly or sporadically, but become pregnant anyway). The more fecund couples are more likely to have birth control failures, and consequently, more likely to be excluded from analyses. If an exposure of interest is associated with irregular use of birth control or with the choice of less effective methods of birth control, the fecundability in the exposed (based on data from couples who can provide adequate time to pregnancy data) will be underestimated. Such bias may account for the findings in the literature showing reduced fecundability among smokers. More generally, when a subset of couples who differ in their fecundability are excluded from analysis, there will be opportunity for selection bias to produce under or overestimation of the strength of an association between an exposure and fecundability. This problem affects both retrospective and prospective studies. Time-to-pregnancy studies need to be designed to minimize this potential bias and to collect data to evaluate it adequately.

Contraception↗

Inheritance of larval resistance to permethrin in Aedes aegypti and association with sex ratio distortion and life history variation.

The genetic mechanisms that confer larval permethrin resistance were investigated in two strains of Aedes aegypti, vectors of yellow fever and dengue hemorrhagic fever. Larval resistance to permethrin in an Ae. aegypti field-collected resistant Couva (R) strain was associated with the sex-determining locus by analysis of backcrosses to the susceptible Rockefeller (S) strain. The median lethal concentrations (LC50s) of these strains were 23.1 (95% confidence interval = 22.0-24.3) and 2.2 (2.0-2.3) parts/billion of permethrin, respectively. The estimated resistance ratio (RR) for the R strain was 10.8 (10.3-11.4) compared with the S strain. Resistance was inherited as partly recessive (dominance [D] = -0.31) with an estimated RR of 2.3 (2.1-2.4) in the F1 hybrids when the R parent was male. There were also significantly male-biased sex ratios for this cross. In contrast, inheritance was slightly dominant (D = 0.19) with an estimated RR of 4.1 (3.8-4.4) when the R parent was female, and no significant sex ratio bias of progeny was observed. Analysis revealed a strong paternal-strain effect in bioassay mortality, sex ratio, egg hatch, and fecundity. A maternal-strain effect was also evident for bioassay mortality. Similarly, a strong maternal by paternal strain interaction was also evident for sex ratio. Progeny of single-family backcrosses of F1 hybrids to R were statistically homogeneous for sex ratio, duration of oviposition, fecundity, and hatch rate. A significant increase in male bias was found for only one backcross to R, after treatment with permethrin. In contrast, complex patterns of inheritance of life histories were observed among backcrosses to S. Backcrosses to S had greater mean fecundities, shorter mean times to the start of oviposition, and shorter mean oviposition periods than did backcrosses to R. Hatch rates were statistically homogeneous among backcrosses, but all strikingly reduced relative to the parental generation. Times of start and duration of oviposition were highly negatively correlated with fecundity (first gonotropic cycle only) and rate of egg hatch. Females with lower fecundities had lower hatch rates, and there was a threshold of approximately 80 eggs per female, below which no eggs hatched. Generally all backcrosses had higher LC50s than expected from single-locus inheritance. Association between sex bias and inheritance of resistance was apparent, but no single genetic linkage model based on current understanding of sex chromosome genetics was consistent with these observations. These results may have epidemiologic importance considering that permethrin-soaked bed nets are being used in many countries to control the biting activity of disease vectors.

Aedes↗

Demographic responses of the polychaete Dinophilus gyrociliatus to chromium exposure.

The effects of chromium on the life history and demography of Dinophilus gyrociliatus (Polychaeta) were studied on a control and three treated cohorts kept in artificial seawater enriched with nominal concentrations of chromium at 1.0, 1.4, and 1.6 microg/ml. Survival and fecundity were significantly reduced by chromium. Fecundity was higher in the chromium treatments than in the control group at the beginning of the reproductive period; however, overall, the highest fecundity was observed in the control. Life expectancy, net growth rate, and generation time were also significantly reduced by chromium. The population growth rate (lambda) was higher in the treated animals than in the controls. The differences in lambda between the treated animals and the controls (deltalambda) were almost completely due to the differences in the life tables observed during the first three weeks of life. The differences in survival between the treated and control animals did not contribute to deltalambda. The contribution to deltalambda of the slight increase in age-specific fecundity in the early reproductive events compensated for the marked decrease in overall fecundity in the treated animals. The complex effects of chromium enrichment on D. gyrociliatus underline the importance of analyzing both individual and population responses when assessing the effects of pollutants on organisms. Our results confirm that D. gyrociliatus might serve as an indicator species in confined areas of polluted seawater such as lagoons and harbors.

Age Factors↗

[Fluctuations in numbers in box populations of Drosophila and selective genetic mechanism of their regulation].

Box populations of Drosophila melanogaster are characterized by two types of periodical fluctuations of numbers: with low and high frequency. High frequency fluctuations are determined by existence of preimago and imago stages and subsequent delay in density-dependent limitation of imago reproduction, duration of which is determined by time of preimago stage. The period of these fluctuations should be limited within two generation, that is confirmed by experimental data. Low frequency fluctuations with the period of 13-15 generations are the result of ecological density-dependent effect. In this case during pick density one can observe continuous degradation of population (i.e. decrease in fecundity and life time of imago) and following decrease in numbers. Temporary changes in fecundity of females and their offspring of the second generation are positively correlated with low frequency fluctuations in numbers. Such relationships show the possibility of density-dependent, cyclic, genetic changes in fecundity connected with fluctuations in numbers. It means that at the phase of growth in numbers when the density is still low, the selection is directed to the individuals with high fecundity sensible to overpopulation. The phase of decline in numbers is connected with high density and selection directed to the individuals with low fecundity in low density populations. The changes in genetic structure of fluctuating population lead to the weakening of this fluctuations and to the maintaining of population under such conditions.

Animal Husbandry↗

[Study on BMP15 and GDF9 as candidate genes for prolificacy of Small Tail Han sheep].

Bone morphogenetic protein 15 (BMP15) gene and growth differentiation factor 9 (GDF9) gene which control the fecundity of Belclare and Cambridge ewes were studied as candidate genes on the prolificacy of Small Tail Han sheep. Single nucleotide polymorphism of GDF9 gene and BMP15 gene was detected in both high fecundity sheep breeds (Small Tail Han sheep and Hu sheep) and low fecundity sheep breeds (Dorset sheep, Texel sheep and German Mutton Merino sheep) by PCR-RFLP. The results showed that the G8 mutation (C --> T) of GDF9 gene and the B4 mutation (G --> T) of BMP15 gene were not detected in five sheep breeds. There was the same B2 mutation (C --> T) of BMP15 gene in Small Tail Han sheep as that in Belclare and Cambridge ewes. The same B2 mutation did not exist in other four sheep breeds. Concerning the B2 mutation of BMP15 gene, AA and AB genotypes were detected in Small Tail Han sheep, frequency of A allele was 0. 734, frequency of B allele was 0.266. The BMP15 B2 genotype distributions were high significantly different (P < 0.001) between Small Tail Han sheep and other four sheep breeds. The ewes with heterozygous mutant AB had 0.62 (P < 0.01) lambs more than those with wild homozygous type AA in Small Tail Han sheep. These results indicated that the B2 mutation of BMP15 gene had significant effect on the fecundity of Small Tail Han sheep and ruled out the possibility that the fecundity of Small Tail Han sheep was affected by the G8 mutation of GDF9 gene and the B4 mutation of BMP15 gene.

Animals↗

Biomonitoring insecticide pollution using non-target soil microarthropods.

The scope of biomonitoring insecticide pollution in soil is discussed with the help of field and laboratory findings on the density, prey-predator ratio and fecundity of non-target microarthropod fauna. Field experiments were conducted in small plots with mustard, wheat and lady's finger crops and insecticides namely heptachlor 20EC (3.25 kg ai/ha = 16.25 lit/ha) and endosulfan 35EC (0.875 kg ai/ha = 2.5 lit/ha) applied at the seedling stages. Soil microarthropod population estimated at fortnightly intervals in the treated and untreated control plots revealed a general trend of adverse effect of the insecticides, prominently on the density and relative abundance of major prey groups like Collembola and Acari leading to notable decline in prey-predator ratio. Comparison of the percentage reductions of major taxonomic and trophic groups between pre-treatment and post-treatment intervals also demonstrated the ill effect of both heptachlor and endosulfan, notably on Collembola and the prey category. In the laboratory the survival success and fecundity of Cyphoderus javanus (Collembola) and Archegozetes longisetosus (Acari) were compared by exposing freshly emerged adults to sub-lethal concentrations of heptachlor and endosulfan for varying durations. The untreated control sets recorded high fecundity for both C. javanus and A. longisetosus, but chronic toxicity of the insecticides on adults confined to the treated soil resulted into very low fecundity. Even short duration exposure to heptachlor and endosulfan treated soil for 24 or 72 hours only was found to delay the egg-laying and decrease the fecundity of both the species. It is concluded that population responses and reproductive sensitivity in non-target soil microarthropods are potential eco-toxicological parameters for detecting pesticide pollution in soil and for ecological health assessment since the results are based on the bioactivity of toxicants.

Agriculture↗

Heterogeneity, the masked part of reproductive technology success rates.

BACKGROUND: Heterogeneity in women and men's fecundity is a well-established fact. The selection process of men and women treated for infertility might bias the success rates of reproductive technology. Bias may also arise from frequency and timing of intercourse with respect to the day of ovulation. METHODS: Several datasets were collected and analysed. They concern normally fertile couples who used natural family planning methods and infertile couples treated by artificial insemination with husband or donor's spermatozoa. The effects of heterogeneity on the success rates of treatment cycles are described and solutions are proposed as to data collection and statistical analysis in this specific field. RESULTS: The decrease in the success rates along successive cycles of assisted reproduction is a consequence of heterogeneity. The probability of conception varies among women and among men. After a first success, the probability of another success is higher. After a failure, the probability of success is lower. The most specialised centres treat the less fecund couples. There is a negative correlation between men and women's fertility in case of oligo/azoospermia. The fecund window cannot be correctly located by calendar calculations, but more appropriately by assessment of cervical mucus at the vulva. The variability of this location is wide. The decrease in the success rate with men and women's age results from a complex mixture of an increase in the proportion of sterile patients and a decrease in fecund patients' fecundity. CONCLUSION: Care should be taken to limit the bias due to patient selection and specific statistical methods should be used to allow for the progressive selection of patients during fertility studies and for the variability of the frequency and the timing of intercourse or insemination relative to ovulation.

Data Interpretation, Statistical↗

A randomized, controlled trial of clomiphene citrate and intrauterine insemination in couples with unexplained infertility or surgically corrected endometriosis.

This study was initiated to test the hypothesis that treatment with clomiphene citrate (CC) and intrauterine insemination (IUI) results in increased fecundity when compared with periovulatory intercourse in couples with either unexplained infertility or surgically corrected endometriosis. Sixty-seven couples entered a randomized, prospective trial comparing CC/IUI with observation. During the study, there were 14 pregnancies in 148 treated cycles (fecundity = 0.095) compared with 5 pregnancies in 150 untreated cycles (fecundity = 0.033). Using life-table analysis and the log-rank test, the difference in fecundities was statistically significant. Pregnancy outcome was not significantly different between the two groups. When comparing conception with nonconception cycles during treatment, no differences between the size of the lead follicle or the number of dominant follicles was detected. We conclude that treatment with CC/IUI improves fecundity in couples with unexplained infertility or surgically corrected endometriosis.

Clomiphene↗

Computer modeling of human fertility: the impact of reproductive heterogeneity on measures of fertility.

As a result of the paucity of biological markers for both reproductive events and exposure to reproductive toxicants, it is likely that individual members of populations will be misclassified with respect to reproductive performance and xenobiotic exposure. A four-parameter computerized model of fertility (frequency of intercourse, male fecundity, female fecundity, and spontaneous abortion) was developed to explore the effect of misclassification of populations on several measures of fertility. The measures of fertility explored include cumulative percent pregnant, time to pregnancy, cycle specific fertility, and fecundability ratio. The cumulative percent pregnant and time to pregnancy appeared to be insensitive to small changes in reproductive competence. The fecundability ratio decreased in proportion to the size of population exposed to a reproductive toxicant. The three reproductive parameters, time to pregnancy, cumulative percent pregnant, and fecundability, do not appear useful as measures of reproductive heterogeneity in populations. The reproductive heterogeneity of a population was best defined by the change in cycle-specific fertility rate over the period of observation. These simulations suggest that the change in the cycle-specific fertility rate should be evaluated and comparable in all population groups over the period of observation to assure reproductive homogeneity.

Abortion, Spontaneous↗

Genetic control of immunity to Trichinella spiralis infections of mice. Hypothesis to explain the role of H-2 genes in primary and challenge infections.

H-2 congenic strains of mice were compared for their ability to expel T. spiralis infections from the small intestine and for their ability to limit the reproduction of adult female worms. B10.M mice (H-2f) expelled both primary and challenge infections more quickly than did the strains B10.Q(H-2q) and B10.BR(H-2k). During a primary infection, expulsion of worms from B10.M mice began before Day 9 post-infection and worm counts differed significantly (P less than .05 Student's t-test) from counts in B10.BR mice on each of Days 12 and 15.B10.Q mice expelled worms more rapidly than B10.BR but worm counts did not differ significantly until Day 15. Whereas B10.M mice responded most quickly to expel worms from the gut, B10.Q mice were most effective in limiting worm reproduction. Female worms harvested from B10.Q mice and cultured for 24 hr in vitro produced significantly fewer newborn larvae than did worms from B10.M or B10.BR mice. Worms from B10.M mice were less fecund than worms from B10.BR, but this difference was not apparent before Day 9 post-infection, and worms from B10.M were always more fecund than worms from B10.Q. Challenge infections 21 days following a priming dose of 200 T. spiralis muscle larvae were rejected very quickly. B10.M mice expelled 65% of their worms during the first 24 h. By Day 6 after challenge, B10.M mice had expelled 84% of their worms; B10.Q and B10.BR expelled 75% and 37% respectively. These results suggest that a rapid expulsion response may be expressed in many different strains of mice depending on how the mice are immunized and the size of the infecting dose. Fecundity of female worms 6 days following a challenge infection was reduced for all strains tested when compared to primary infection controls; however, worms from B10.Q mice were less fecund than worms from B10.M or B10.BR. Results of these experiments demonstrate that H-2 genes play an important role in controlling the immune response which expels worms from the gut and the response which limits worm reproduction. These H-2-controlled differences are expressed during both primary and challenge infections. As the present results conflict somewhat with results published elsewhere, we have proposed a new hypothesis to explain the data collected in our laboratories thus far. According to this hypothesis, the anti-adult response, the anti-fecundity response, and the rapid expulsion response are under independent genetic control and influenced by the interacting products of both H-2 and non-H-2 genes.

Animals↗

The successful use of hyperstimulated washed therapeutic donor insemination after standard therapeutic donor insemination has failed.

OBJECTIVE: To investigate whether an aggressive therapeutic donor insemination regimen (stimulated folliculogenesis and ovulation plus intrauterine insemination) can produce a better fecundability rate than a more traditional insemination regimen (non-stimulated folliculogenesis plus LH-timed intracervical insemination) in women who have failed to become pregnant during an initial series of six traditional insemination cycles. DESIGN: A retrospective comparison of fecundability rates was undertaken between women undergoing the traditional insemination protocol and those who voluntarily switched to ovarian hyperstimulation coupled with intrauterine insemination. PARTICIPANTS: Eight-two women who failed to become pregnant during an initial series of six intracervical insemination cycles. RESULTS: Fecundability was 5.6% in cycles of continued urinary LH-timed intracervical insemination and 19.4% when the more aggressive regimen was applied. The difference in fecundability between protocols was significant (P < .005). CONCLUSION: After an initial series of donor inseminations has failed, a more aggressive insemination regimen involving ovarian hyperstimulation followed by washed intrauterine insemination provides a higher fecundability rate than continued intracervical insemination.

Adult↗

Life-History Consequences of Divergent Selection on Egg Size in Drosophila melanogaster.

Life histories are generally assumed to evolve via antagonistic pleiotropy (negative genetic correlations) among traits, and trade-offs between life-history traits are typically studied using either phenotypic manipulations or selection experiments. We investigated the trade-off between egg size and fecundity in Drosophila melanogaster by examining both the phenotypic and genetic relationships between these traits after artificial selection for large and small eggs, relative to female body size. Egg size responded strongly to selection in both directions, increasing in the large-egg selected lines and decreasing in the small-egg selected lines. Phenotypic correlations between egg size and fecundity in the large-egg selected lines were negative, but no relationship between these traits occurred in either the control or small-egg selected lines. There was no negative genetic correlation between egg size and fecundity. Total reproductive allocation decreased in the small-egg selected lines but did not increase in the large-egg lines. Our results have three implications. First, our selection procedure may have forced females selected for large eggs into a physiological trade-off not reflected in a negative genetic correlation between these traits. Second, the lack of a negative genetic correlation between egg size and number suggests that the phenotypic trade-off frequently observed between egg size and number in other organisms may not evolve over the short term via a direct genetic trade-off whereby increases in egg size are automatically accompanied by decreased fecundity. Finally, total reproductive allocation may not evolve independently of egg size as commonly assumed.

Drosophila melanogaster↗

Interrelationship between food availability, fat body, and ovarian cycles in the frog, Rana tigrina, with a discussion on the role of fat body in anuran reproduction.

Long-term experiments were conducted to study the progression of vitellogenic cycles in Rana tigrina (an annual breeder) having different foraging backgrounds and held under conditions of weekly or daily food supply and in presence or absence of abdominal fat bodies. They were autopsied in June to assess fecundity. In nature an adult R. tigrina produces on an average 4,000 eggs/100 g body mass (b.m.) And spawns in June-July following monsoon rains. Weekly feeding from July to next breeding season, June resulted in a significant decrease in both fecundity (1700 eggs/100 g body b.m.) And mean size of eggs, compared to well-fed or wild-caught frogs. The abdominal fat bodies were barely seen in frogs fed weekly throughout, whereas in frogs fed weekly from July-December but daily from January onwards, the fat bodies became noticeable (1% of b.m.) And number and mean size of eggs increased significantly over those fed weekly throughout. Frogs captured in January possessed enlarged fat bodies (5% of b.m.), depicting a good foraging history. Maintenance of these frogs on a weekly feeding regimen led to an exhaustion of fat stores. They produced less number of eggs (2, 000/100 g b.m.) As compared to wild frogs but of normal size, whereas daily feeding slowed down a depletion of fat body mass and also significantly increased fecundity (3,000/100 g b.m.) Over the weekly fed individuals. Sham operation or fat body ablation in October or February had no significant effect on total fecundity per se (3,000-3,500 eggs/100 g b.m.) Compared to that of wild-caught frogs. However, eggs were significantly smaller due to fat body ablation despite daily feeding. The study shows that food abundance/fat bodies influence egg size and number in R. tigrina and that a direct or indirect functional relationship exists between fat body and ovarian cycles that are characteristically inverse to each other. J. Exp. Zool. 286:487-493, 2000.

Animals↗

The effect of lead on male fertility: a time to pregnancy (TTP) study.

BACKGROUND: Growing attention has been paid in recent decades to the effects on male reproduction of occupational exposures to toxic agents. There is strong evidence that high level exposure to lead, i. e. blood lead level (PbB) > 70 microg/dl, is associated with male infertility and some reports suggest an effect even at lower PbB (i. e. < 50 microg/dl). The aim of this study is to shed more light on the postulated association between occupational exposure to relatively low levels of inorganic lead and reduced fertility in men estimated by the length of time taken to conceive: time to pregnancy (TTP). METHODS: A survival analysis of TTP of the last pregnancy was performed adopting the Kaplan Meier methodology. The target population included 782 lead-exposed workers and 165 controls. 251 lead workers and 119 controls were finally eligible and interviewed. Lead-exposed subjects were distributed into four exposure levels according to their blood lead concentration (i.e. < 20; 20-29; 30-39, and >/= 40 microg/dl). The Cox model was adopted to estimate the Relative Risk of unsuccessful waiting time to pregnancy associated to the exposure to lead. RESULTS: A statistically significant difference in fecundability (shorter TTP) in favor of exposed subjects was detected. Nevertheless, longer TTP was associated within the exposed group to higher levels of PbB, even though the gradient is not statistically significant. The exposed workers revealed an average number of children larger than those not exposed, and a clear gradient of the same variable was evident from the lowest to the highest PbB level. Focusing on subjects with one child only, the Cox model confirmed no significant difference in fecundability between exposed and not exposed, whereas a statistically significant longer TTP was associated to the exposure level >/= 40 microg/dl. CONCLUSIONS: It is not easy to assert or to deny the effect of inorganic lead on male fecundity, quantitatively estimated by TTP, with the data available for this study. In fact, while the general data seem to exclude effects of Pb on male fecundability a more detailed analysis suggests an unfavorable effect at relatively high levels of exposure but some confounding attributable to personal and social conditions of the workers cannot be ruled out. Further investigations with a better control of confounding are needed.

Adult↗

Courtship feeding in tree crickets increases insemination and female reproductive life span

Courtship feeding in the majority of insects may influence female reproductive patterns either directly, through effects of the gift material, or indirectly, through correlated effects of prolonged copulation and larger ejaculates. This distinction is important because the cause of changes in fecundity may influence patterns of the allocation of resources between the sexes, with implications for the intensity of sexual selection and magnitude of sexual conflict. I show that post-copulatory feeding on the secretions of a gland on the metanotum of male Oecanthus nigricornis. Walker correlates with oviposition and affects the number of sperm remaining within the spermatophore. Manipulations of gland feeding and insemination duration showed that changes in fecundity are due to the gift rather than the ejaculate. Metanotal gland feeding increased female fecundity by increasing reproductive life span without significantly increasing oviposition rate. These changes in reproduction were directly due to the gift itself. Although gland feeding was positively correlated with the duration of insemination and thus the number of sperm transferred from the spermatophore to the female, experimentally prolonging or reducing insemination had no significant effect on reproductive life span. Male phenotype was also associated with female fecundity but in this case the effect was caused by an increase in the oviposition rate of females that mated with relatively large males. Male size had no significant effect on female reproductive life span, suggesting that its effect is not simply due to a quantitative increase in gift size. Three other measures of male phenotype, fluctuating asymmetry, condition (i.e. size-standardized wet body mass) and age, had no significant effects on female reproduction.Copyright 1997 The Association for the Study of Animal BehaviourCopyright 1997The Association for the Study of Animal Behaviour.

Journal Article↗

Parental investment strategies in two species of nuthatch vary with stage-specific predation risk and reproductive effort.

Life-history theory predicts that differences in reproductive effort and residual reproductive value among species should result in differences in the level of risk that parents are willing to tolerate to themselves versus their offspring. Specifically, highly fecund and shorter-lived species are expected to place greater value in current offspring than themselves, whereas less fecund and longer-lived species are expected to place greater value in their own survival and future breeding opportunities. Here, we test the prediction that parental investment decisions are correlated with life histories by comparing risk-taking behaviour in two species of nuthatch that differ in reproductive effort: the white-breasted nuthatch, Sitta carolinensis (more fecund, lower survival) and the red-breasted nuthatch, S. canadensis (less fecund, higher survival). We experimentally manipulated stage-specific predation risk by presenting models of an adult predator (hawk) and an egg predator (wren) and measured the willingness of males to feed incubating females on the nest. We found that both species of nuthatch responded to predators by increasing the length of time between visits and aborting more visits to the nest. However, as predicted by their life histories, S. carolinensis displayed a significantly stronger response to the egg predator, whereas S. canadensis responded more strongly to the adult predator. Thus, species can differ in their willingness to tolerate risk to themselves and their young, and such differences appear to be related to differences in investment in current reproduction and the probability of future survival. Copyright 2000 The Association for the Study of Animal Behaviour.

Journal Article↗

Are mouse strains differentially susceptible to the reproductive toxicity of ethylene glycol monomethyl ether? A study of three strains.

Most rodent reproductive toxicology studies utilize strains of high fecundity. These studies were conducted to examine the possibility that mouse strains of differing fecundity would respond differently to a known reproductive toxicant. Thirty pairs each of Swiss CD-1, C57B1, and C3H mice were cohabited for 14 weeks while consuming 0, 0.03, 0.10, or 0.30% EGME in the drinking water. Litter data were collected during cohabitation. Body and organ weights, and various sperm data, were collected at necropsy, and second-generation fertility was evaluated. The data show that the most fecund strain (Swiss) was affected the least by exposure to EGME, while the least fecund strain (C3H) suffered the greatest declines in fertility. These differences might alter interspecies extrapolation factors, or the permissible exposure levels for humans.

Animals↗

Population Dynamics of Evolutionary Change: Demographic Parameters as Indicators of Fitness

I evaluated demographic parameters as indicators of fitness by calculating the net reproductive rate (R0), exponential rate of change (r), lifetime reproductive success (LRS), and Malthusian parameter (m) for nine genotypes and four phenotypes (two alleles at each of two independent loci) of an age-structured population. The given starting conditions included age-specific survival rates of males and females and age-specific fecundity of females for each genotype (to simplify the problem I presumed no differences in survivorship or fecundity of genotypes with the same phenotype) and the same age structure for each genotype. The prevailing genotype had the greatest m, but it did not have the greatest r, R0 , or LRS, or even the greatest survivorship of either juveniles or adults, or the greatest fecundity. This result indicates that m is the only correct measure of fitness (i.e., as a predictor of which genotype should prevail from among a group of genotypes) and that comparisons of r, R0 , LRS, juvenile or adult survival rates, or fecundity may be misleading indicators of which genotype should prevail (i.e., be most "fit") over time (i.e., be selected for).

Journal Article↗