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Modeling the maternal-age dependency of reproductive failure and genetic fitness.

The offspring of older parents are at a higher risk of suffering low birth weights and congenital birth defects that result from mutations and chromosomal anomalies. When the defect is paternal in origin, it often can be shown that the primary lesion arose during mitotic proliferation of the spermatogonial germ cell population. By contrast, germline mosaicism is seldom invoked to explain the age dependency of maternally derived aberrations because germline proliferation in the ovary is already completed during fetal development. Age-dependent defects of maternal origin might, however, be explained in part by the progressive loss of oocytes during the mother's reproductive life. A large number of oocytes undergo the initial stages of maturation each month, but typically only one completes maturation and is ovulated while the majority are discarded, probably by an apoptotic mechanism. Here we explore the possibility that the monthly choice of oocytes to undergo maturation is influenced by subtle phenotypic characters of those oocytes that may bear genetic defects such as trisomy 21. We have generated a mathematical model to describe the loss kinetics for such mutant oocytes relative to the overall pool of resting oocytes, and we assess evolutionary strategies that would favor their utilization faster than, at the same rate as, or slower than the normal oocytes. This formulation reveals that the slower-rate scheme would effectively diminish the utilization of mutant oocytes in young mothers but would increase the risk of related birth defects for older mothers. Accordingly, we propose that natural selection should have favored the delayed utilization of defective oocytes in a primitive high-mortality culture, but that this evolutionary strategy would be outmoded for modern society, because it would lead to an increased frequency of birth defects for older mothers.

Chromosome Aberrations↗

Effects of neonatal screening for cystic fibrosis on reproduction, attitudes toward reproductive behaviour and genetic knowledge.

An evaluation was carried out into whether neonatal screening for Cystic Fibrosis could potentially prevent the birth of more affected children in the same family. Although CF was detected in more than 50% within the first year of life in those cases where a diagnosis was made on clinical symptoms, in these families 10 children -- among whom two with CF -- were born prior to the CF diagnosis. With neonatal screening, no pregnancies were started before the CF-diagnosis. No differences were found in attitudes toward further reproduction and understanding of important genetic facts. Although prenatal diagnosis was not yet possible at the time of the study, approximately 50% of the parents showed a positive attitude toward this option. Minimizing the delay in diagnosis by neonatal screening, together with the availability of prenatal diagnosis may lead to a significant reduction in subsequent births of CF cases.

Attitude to Health↗

Cancer genetic testing and assisted reproduction.

PURPOSE: Because of increasing uptake of cancer genetic testing and the improving survival of young patients with cancer, health care practitioners including oncologists will increasingly be asked about options for assisted reproduction by members of families affected by hereditary cancer syndromes. Among these reproductive options, preimplantation genetic diagnosis (PGD) offers the opportunity to select embryos without familial cancer-predisposing mutations. METHODS: A review of the published literature supplemented by a survey of PGD centers in the United States. RESULTS: Prenatal diagnosis and/or embryo selection after genetic testing has already been performed in the context of more than a dozen familial cancer syndromes, including the common syndromes of genetic predisposition to colon and breast cancer. CONCLUSION: While constituting new reproductive options for families affected by cancer, the medical indications and ethical acceptance of assisted reproductive technologies for adult-onset cancer predisposition syndromes remain to be defined. Continued discussion of the role of PGD in the reproductive setting is needed to inform the responsible use of these technologies to decrease the burden of heritable cancers.

Breast Neoplasms↗

A survey of genetic diversity and reproductive biology of Puya raimondii (Bromeliaceae), the endangered queen of the Andes.

Puya raimondii Harms is an outstanding giant rosette bromeliad found solely around 4000 m above sea level in the Andes. It flowers at the end of an 80 - 100-year or even longer life cycle and yields an enormous (4 - 6 m tall) spike composed of from 15,000 to 20,000 flowers. It is endemic and currently endangered, with populations distributed from Peru to the north of Bolivia. A genomic DNA marker-based analysis of the genetic structure of eight populations representative of the whole distribution of P. raimondii in Peru is reported in this paper. As few as 14 genotypes out of 160 plants were detected. Only 5 and 18 of the 217 AFLP marker loci screened were polymorphic within and among these populations, respectively. Four populations were completely monomorphic, each of the others displayed only one to three polymorphic loci. Less than 4 % of the total genomic variation was within populations and genetic similarity among populations was as high as 98.3 %. Results for seven cpSSR marker loci were in agreement with the existence of a single progenitor. Flow cytometry of seed nuclear DNA content and RAPD marker segregation analysis of progeny plantlets demonstrated that the extremely uniform genome of P. raimondii populations is not compatible with agamospermy (apomixis), but consistent with an inbreeding reproductive strategy. There is an urgent need for a protection programme to save not only this precious, isolated species, but also the unique ecosystem depending on it.

Bromeliaceae↗

Estimation of genetic parameters among reproductive and growth traits in yearling heifers.

Growth and reproductive data were obtained on 779 beef heifers at the San Juan Basin Research Center, Hesperus, Co. Genetic parameters were estimated for age of puberty (AOP), age of first calving (AOC), julian day of first calving (DOC), julian day of second calving (DOSC), birth weight, weaning weight, yearling weight, and average daily gain from weaning to yearling and to cycling weights. The least squares model included birth year, age of dam and breed as fixed effects, sire/breed as a random variable, and day of birth and percent inbreeding as covariates. Day of birth was not included in the analyses of AOC, DOC or DOSC. Paternal half-sib estimates of heritability were: AOP, .10 +/- .17; AOC, .01 +/- .12; DOC, .09 +/- .13 and DOSC, .36 +/- .18. Genetic and phenotypic correlations were generally favorable, but genetic correlations were variable with large standard errors. Inbreeding had a detrimental effect on reproductive traits, and a seasonal effect was present for AOP.

Age Factors↗

Impact of BRCA1/2 status on young women's sexual function, relationships, and reproduction after predictive genetic testing.

The experiences and outcomes for women identified with a BRCA1/2 pathogenic variant during young adulthood are qualitatively described but not well quantified. This study investigated the impact of BRCA1/2 status on women's reproduction, intimate partner relationships, and sexual functioning. Australian women aged 18-40 years who had predictive BRCA1/2 testing, received either a positive or negative result, and had no personal cancer history, completed an online survey that used a case-control design. Outcome measures included childbearing, use of reproductive technologies, relationship status, and sexual functioning. 579 women participated (62.0% with a BRCA1/2 PV; 38.0% without a BRCA1/2 PV). More women with a BRCA1/2 PV had children compared to those who did not (49.0% c.f., 40.5%; p = 0.045). BRCA1/2 status did not predict whether women were partnered at survey completion (Odds Ratio 1.20; 95% CI 0.80, 1.78) or their sexual functioning over the previous month (β-coefficient -0.08; 95% CI -1.15, 0.98). Women with a BRCA1/2 PV were more likely to have children after genetic testing (OR 1.83: 95% CI 1.05, 3.21) and were more likely to have a greater number of children after genetic testing (β-coefficient 0.41; 95% CI 0.10, 0.73) compared to women without a BRCA1/2 PV, after adjustment for confounders. Receiving a positive predictive BRCA1/2 result is associated with an increased likelihood of childbearing and having a greater number of children compared to receiving a negative predictive BRCA1/2 result. These findings contribute to the evidence base to inform long-term follow-up for women after predictive BRCA1/2 testing.

Humans↗

Prospects for improving reproductive performance through genetic selection.

Prospects for improving female fertility in dairy cattle using genetic selection are reviewed. Today's high producing cows have shorter estrous cycles, fewer standing events, shorter duration of estrus, and more frequent multiple ovulations. Although high milk production is often implicated as the cause of impaired fertility, the impact of inadequate body condition appears to be greater, as the latter has a significant impact on probability of conception, rate of embryonic loss, and proportion of anestrous animals. Genetic improvement of female fertility can be achieved by indirect selection for longevity or body condition score, or by direct selection for traits such as daughter pregnancy rate. Most leading dairy countries have implemented genetic evaluation systems for female fertility in the past decade, but refinement of these systems to account for hormonal synchronization, differences in the voluntary waiting period, exposure to natural service bulls, and other confounding factors is warranted. Recent work has focused on the development of data collection and genetic evaluation systems that will allow selection of bulls that have daughters that are resistant to common health disorders, including mastitis, lameness, ketosis, displaced abomasum, and metritis. Such systems will allow selection of animals that can remain healthy and fertile while producing large quantities of milk.

Animals↗

Artificial creation of genetically identical individuals--reproductive cloning.

During the second half of the previous century, biologists were continuously searching for the answers to the questions about the creation of genetically identical individuals. From the very first ideas (Spemann, 1938) and the early reports on the attempts and successes in the reproductive cloning (Briggs and King, 1952; Stewart et al., 1958) to the recent news about the first cloned baby birth (published informally at the end of 2002), that topic gathered a significant scientific and non-scientific attention. All assertions about human cloning resounded as a sensation and made a particular public unrest, even though it was in fact an operation based on the existence of already well known scientific postulations, theories and experimental results. In spite of whether human individuals were cloned or not (many scientists expressed serious reserves regarding the above mentioned news), a wider public interest in cloning, its importance and procedures and a new technology practical possibilities increased significantly.

Journal Article↗

Reproductive hormonal function in the genetically obese (ob/ob) mouse.

Reproductive function is impaired in the genetically obese (C57 B1/6J) ob/ob mouse. Serum LH, FSH, and testosterone concentrations were assessed in male ob/ob and lean littermates from 39 to 78 days of age. The lean animals demonstrated a three-fold rise in serum LH between 39 and 45 days of age that preceded a steep increase in serum testosterone which peaked at age 70 days. The obese animals did not demonstrate this LH rise; serum testosterone levels were low and had a blunted increase with age that paralleled that of normal animals. Serum FSH was lower than normal at all ages in the obese mice. The ventral prostrate and testes were small in the ob/ob mice. The castration of adult animals resulted in increased serum concentrations of both LH and FSH, with higher levels attained in the lean animals. Fifty-four-day-old castrated lean and obese mice were treated with testosterone for 15 days. Measurements of serum LH and FSH after 8 and 15 days of treatment demonstrated a marked sensitivity in the ob/ob animals to feedback inhibition of gonadotropins. This finding suggested persistent immaturity of the hypothalamic-pituitary axis in obese mice. These studies indicate that the hypogonadism of the ob/ob mouse is the result of altered hypothalamic-pituitary function.

Age Factors↗

Genetic differentiation and reproductive isolation in a Cyprinodon fish species flock from Laguna Chichancanab, Mexico.

The Cyprinodon species flock from Laguna Chichancanab, aged 8000 years, provides another potential case of sympatric speciation. The flock consists of seven morphologically distinct species, each within partially different trophic niches, and a group of specimens which cannot unequivocally be assigned to one of these species. Genetic analyses, based on mtDNA and five microsatellite loci, revealed significant genetic differentiation of one species, C. maya, from other members of the species flock, providing strong evidence for reproductive isolation. For the remaining members of the flock significant genetic structuring was detected, with some evidence of gene flow with the most abundant species C. beltrani. These analyses suggest that speciation proceeds with ongoing hybridisation, and further suggest that the morphologically unidentifiable specimens found in the lake are probably hybrids. I propose that in the Cyprinodon species flock besides disruptive selection sexual selection plays an important part in achieving and maintaining reproductive isolation.

Animals↗

Genetic analysis of discrete reproductive traits in sheep using linear and nonlinear models: I. Estimation of genetic parameters.

Repeated records on fertility, litter size, and ovulation rate of Rambouillet ewes and on fertility and litter size of Finnsheep ewes were used to estimate heritabilities and repeatabilities with linear and nonlinear sire and animal models. Linear sire (LSM) and animal models were used with all traits. Nonlinear models were the threshold, Poisson, and negative binomial. Threshold sire (TSM) and animal models were used with all traits. Litter size and ovulation rate were analyzed also with Poisson sire and animal models and with negative binomial sire and animal models. Variance components for linear models were estimated using REML; in the threshold, Poisson, and negative binomial, they were estimated using approximate marginal maximum likelihood. Poisson and negative binomial analyses yielded results difficult to interpret due to problems in variance component estimation. Animal models resulted in slightly greater estimates of heritability for fertility than did sire models, but ovulation rate heritability estimates from sire models were much greater than estimates form animal models. Differences between sire and animal models for heritability estimates for litter size were not consistent. Threshold models resulted in higher heritability estimates for all traits in both breeds and with both sire and animal models. In general, repeatabilities were consistent across models. For example, LSM (TSM) repeatabilities were .10 (.14) for fertility, .20 (.25) for litter size, and .25 (.29) for ovulation rate in the Rambouillet, and .17 (.17) for fertility and .11 (.13 for litter size in the Finnsheep.

Aging↗

Control of female reproduction in Drosophila: genetic dissection using gynandromorphs.

The sexual behavior of Drosophila melanogaster gynandromorphs was studied to analyze the relationship between different steps in the female reproductive pathway. It was assumed that, in some gynandromorphs, certain female functions are missing because the corresponding control sites (foci) are either composed of male tissue or did not develop. A given gynandromorph can show elements of both male and female reproductive pathways. None of the steps of the female reproductive pathway appeared to be dependent on any other, in contrast to male behavior where, for example, following of females is a prerequisite for attempted copulation. By correlating each of the behaviors with the genotype of the cuticle, we confirmed previous findings that the focus for the female sex appeal is located in the abdomen, but receptivity to copulation is controlled by a site in the head. Many of the gynandromorphs did not lay eggs, presumably because either the focus controlling egg transfer from the ovaries to the uterus or the one controlling egg deposition was composed of male tissue. Many of the nonovipositing gynandromorphs laid eggs while dying or could be induced to deposit eggs after implantation of hormone-producing glands or topical application of a juvenile hormone analog. Some of the noninseminated gynandromorphs laid eggs at the rate characteristic for inseminated females, suggesting that an oviposition focus (mapping in the head region) suppresses oviposition in virgin females, but not in gynandromorphs whose focus is composed of male tissue. Some of the inseminated gynandromorphs oviposited eggs at a low rate, possibly because the focus responsible for detection of insemination could not function properly. Some of the inseminated gynandromorphs laid unfertilized eggs, revealing the importance of the focus controlling sperm release from the seminal receptacle. Foci controlling egg transfer, egg deposition and sperm release are located in the thorax, according to mosaic fate mapping results and studies on the reproductive behavior of decapitated females. The location of egg deposition in the culture vial seems to be controlled by a brain site. Sexual behavior in Drosophila does not depend on the presence (or absence) of the ovary or germ line.

Animals↗

Spawning times, reproductive compatibilities and genetic structuring in the Acropora aspera group: evidence for natural hybridization and semi-permeable species boundaries in corals.

Species boundaries among five sympatric coral species of the Indo-Pacific Acropora aspera group were examined by a combination of in vitro breeding trials, comparisons of spawning times and DNA sequence analysis of ribosomal DNA internal transcribed spacer (rDNA ITS) and 5.8S regions. The breeding trials showed that reproductive compatibility exists between at least some colonies of all the species pairs tested, suggesting a large potential for natural hybridization and introgression. The Acropora ITS regions exhibited extremely high levels of variability (up to approximately 62% for ITS1, approximately 11% for 5.8S and approximately 43% for ITS2), but most of the variation was shared among four of the five species, A. millepora, A. papillare, A. pulchra and A. spathulata, consistent with extensive introgression. Phylogenetic analyses did not resolve these four species as distinct clusters across a wide biogeographic region stretching from the southern Great Barrier Reef to Papua New Guinea. However, most colonies of the fifth species, A. aspera, constituted a distinct clade in phylogenetic analyses. This is consistent with our observations of a semi-permeable temporal barrier involving differences in spawning times between this and the other four species. Although the majority of colonies of all five species generally spawned within 90 min of each other, in two out of four years, gametes were absent prior to mass spawning episodes from at least some A. aspera colonies. Hence, our data suggest that transient reproductive barriers may be the result of year-to-year variation in the date of spawning and that this difference in spawning time contributes to the genetic structure detected among Acropora species in this group. Occasional leakage through the reproductive barrier was confirmed by the observation of A. aspera xA. pulchra F1 hybrids, identified based on additivity of ITS sequences.

Animals↗

Reproductive functions, fertility and genetic risks of ageing men.

The changes of reproductive functions, fertility and genetic risks of ageing females have been investigated relatively intensively. The state of knowledge about endocrine and reproductive changes in ageing men as well as possible age-related paternal genetic risks lags far behind. In general serum testosterone levels decrease with increasing age. In ageing men testis morphology and semen production can be absolutely normal. However, in some testes degenerative forms of germ cells can be observed. Fertility may be maintained up to a very high age. The genetic quality of sperm produced by older men may be reduced for several reasons, among which age-related increases in germ cell mutations, impairment of DNA-repair mechanisms and apoptotic processes are the most likely. The incidence of several autosomal dominant diseases, such as achondroplasia, polyposis coli, Marfan syndrome, Apert syndrome or basal cell naevi is associated with advanced paternal age, whereas there is no clear evidence for a paternal effect on structural or numeric chromosome anomalies. Hence even if offspring of older men have a slightly increased incidence of certain genetic diseases, the individual risk of such a new disease must be considered as extremely small, as the incidence of these diseases is very low.

Aging↗

Reproduction in three genetic lines of dairy cattle housed a total confinement system.

Dairy cattle of three genetic lines maintained year round in total confinement (either in loose housing or tie stall barn) were monitored for estrous cycle activity and reproductive performance. Only 54% of the 492 cows calving over a 12 month interval were observed in estrus at least once between parturition and day 55 postpartum. There was a significant genetic line by barn interaction in the detection of estrus mainly because more cows of the Ayrshire line were observed in estrus in the tie stall barn (75%) compared to cows of the same line in the loose housing barn (48%). Month of calving had no effect on the subsequent detection of estrus. Conceptions to either first, second, third or fourth and greater services were 43, 44, 43 and 37%, respectively. Cows housed in the loose housing barn had significantly more days open than cows in the tie stall barn. Season of calving had no effect on the subsequent reproductive performance. Failure to detect estrus was the major problem for not obtaining a 12 month calving interval.

Animals↗