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At least 19 recordsLinked to original sources

Ageing and parental age effects in Tribolium (review).

The experimental suitability of the flour beetles of the genus Tribolium has attracted ecologists, nutritionists, radiation biologists and geneticists for decades. I have, recently, evaluated their importance to gerontologists. This paper deals with age-related changes and parental age effects which were not included in a previous review. I have, first, discussed the known aspects of age-related changes in morphological, physiological, biochemical, behavioural and pathological parameters as well as on radiation-sensitivity and susceptibility to insecticides. Pre-adult biochemical and physiological changes have also been included, because of the important inter-relationship between growth and ageing. This is followed by an evaluation of parental age effects on physiological and genetic characteristics and of proposed areas for possible research.

Aging↗

[Aged parents and aging handicapped persons: a new situation, an attempt to respond].

The longevity increase which characterises the society evolution at the end of the 20th century, also concerns the handicapped people. The fact is particularly outstanding for mentally handicapped people such as the Down's Syndrome population. We are nowadays discovering the first generation of the "over 40 year-old people". Among the eldest, many of them have never left home as specialised structures were non existent when they were young. Even those, not many of them in that age group, who have been able to have access to a CAT and to profit by a specialised centre, cannot carry on working after their 35th birthday, because of their early ageing, and because of their tiredness. Therefore, they are early excluded from the CAT, they lose their advantage of being in a specialised centre and they finely have to go back home. Many parents of mentally handicapped people who live at home, even though they are not yet too old, seem to get more and more tired with their ageing advance, which, day after day, makes their unremitting action harder and harder towards their child who is also getting older. The makers relate the innovating and experimental initiative of a "Hameau Services", nowadays located at Sommières-du-Clain, a rural parish in the south of Vienne country, which offers to welcome still valid ageing parents and their mentally handicapped ageing child who lives in their own house. The collective services which are assured by the managing association, tend to relieve them in their daily material tasks in the aim of contributing to the prejudice of the unexpected arrival of the manifestations of the subordination through a proposition of a better life quality of the handicapped adult and his parents.

Aged↗

Parental age and incidence of cleft lip and cleft palate anomalies.

Maternal and paternal age effects have been studied on 90 patients (61 males and 29 females) suffering from cleft lip, cleft palate and, cleft lip and palate anomalies. Younger mothers are at higher risk of getting a child with congenital oral clefts than the older (above 30 years of age). Parental age gaps increase the incidence of congenital malformations.

Cleft Lip↗

Increased parental ages and uniparental disomy 15: a paternal age effect?

Parental ages associated with both maternal and paternal uniparental disomy (UPD) of chromosome 15 are highly elevated in comparison to Zurich population-based controls, with mean maternal and paternal ages of 35.6 and 38.1, respectively for UPD patients (diagnosed in Zurich) and 28.0 and 31.0, in controls. The parental ages are also significantly higher than observed for trisomies of other chromosomes diagnosed in Zurich. The higher age of UPD cases may be due to the fact that two errors, both a gain and a loss of a chromosome 15, are necessary. We suggest that gamete complementation, zygote formation from two gametes one of which is nullisomic and the other disomic for the same chromosome, may be a major mechanism of UPD formation, as well as secondary loss of a chromosome in a trisomic conception, and that there is an association between increased paternal age and nondisjunction.

Adult↗

Parental age dependent changes as a source of genetic variation in Drosophila melanogaster.

It has been shown repeatedly that numerous cumulative changes occur in chromosomes of D. melanogaster, as an effect of ageing which, especially in the homozygous state, significantly affect different fitness components of their carriers. It appears that the observed age-affected events are produced by systematic and ontogenetically programmed changes in genetic loads at specific chromosomes, which are transferable to following generations. It has been suggested that such changes could be of mutational origin, and that they could be more frequent at gene loci which are epigenetically active during ontogenesis. It was demonstrated that a large sample of identical chromosomes behave quite differently in the homozygous state when obtained from aged compared to non-aged parents, producing a significant decrease in relative viability, length of preadult development, and longevity of their carriers, as well as in the frequency of recombinations of corresponding chromosomes. A specific treatment by streptomycin resulted in remarkably milder effects of ageing, which is in accordance with the statement of some authors that such a treatment may diminish the frequency of spontaneous recessive mutations in their carriers. Thus the observed age-affected changes could be an important source of developmental and evolutionary variation of living organisms.

Aging↗

[Analysis of the relation of the frequency of new gene mutations for Mendelian diseases to parental age].

The effect of parental age on mutation rates of achondroplasia, neurophibromatosis, hereditary gastrointestinal adenomatosis and Duchenne muscular dystrophy loci was studied. A significant parental age effect on the occurrence of new mutations for achondroplasia and neurophybromatosis was shown. The paternal component of this parental age effect was the major factor in the occurrence of such mutations. The risk of the occurrence of new cases of achondroplasia and neurophybromatosis, as compared with their overall frequency, due to new mutations, are increased by a factor of 2 and 3, respectively, up to the paternal age of 50. The possibility of application of the data obtained in genetic counselling is discussed.

Female↗

Reciprocity in relationships: socio-economic and health influences on intergenerational exchanges between Third Age parents and their adult children in Great Britain.

In this paper data from a nationally representative British longitudinal study are used to analyse exchanges of support between Third Age parents (aged 55-75) and their adult children. Results show that between two thirds and three quarters of parents in this age group were involved in some sort of exchange relationship with at least one of their children. Generally, more Third Age parents were providers than recipients of help, but there was a strong reciprocal element to intergenerational exchange with, for example, married parents who provided support to at least one child being twice as likely as those who did not to receive support from a child, after allowance for a range of relevant parental and child characteristics. Parental characteristics associated with higher probability of providing help included higher income, home ownership and being married or widowed rather than divorced. Higher income and home ownership were, however, negatively associated with odds of receiving help from a child, again after adjustment for other co-variates, suggesting socio-economic differences in the balance of support exchanges. Children seem responsive to parental needs in that receipt of help from a child was positively associated with older parental age and with parental disability. The paper shows that in Britain, as in the USA, the balance of intergenerational exchanges involving Third Age adults is downward rather than upward, in contravention of depictions of older adults as 'burdens' on younger generations. Current demographic and social changes are, it is argued, likely to increase support demands from adult children to Third Age parents in coming decades.

Adult↗

Spontaneous mutation and parental age in humans.

A statistical analysis of parental age and the incidence of new mutation has been performed. Some new data on Apert, Crouzon, and Pfeiffer syndromes is presented and combined with all available data from the literature on parental age and new mutation. Significant heterogeneity among syndromes for the rate of increase in incidence with parental age was found. A parsimonious conclusion is that mutations fall into two groups, one with a high rate of increase with age and the other with a low rate of increase with age. For the high-rate-of-increase group, a linear model relating incidence to age is rejected, while an exponential model is not. In addition, for this group, increased paternal age cannot account for the observed increase in maternal age--that is, increased maternal age also contributes to the incidence of new mutations. For the low-rate-of-increase group, increased paternal age alone can account for the observed increase in maternal ages; also, either a linear or exponential model is acceptable. In addition, there is no evidence for a mixture of parental age-independent cases with parental age-dependent cases for any of the syndromes examined. The curves reflecting incidence of new mutation and paternal age for two syndromes, Apert and neurofibromatosis, have an anomalous shape. In both cases the curve increases up to age 37 and drops at age 42 before increasing again at age 47. The usual explanation for the effect of parental age on new mutations is the mechanism of "copy-error" at mitotic division in male sperone that specifies an increased probability of mutation with time spent by a spermatozoon or ovum in a haploid state, a period of time that may also increase with age of the parent. A firm answer to the question of parental age and new mutation awaits identification of the molecular defect underlying some of these syndromes; we will then be in a position to determine in which parent the mutation occurred and at what age it did so.

Acrocephalosyndactylia↗

Igbo students' attitudes toward supporting aged parents.

This study was designed to explore attitudes of Nigerian, i.e., Igbo, students toward caring for aged parents. A questionnaire consisting of descriptive information and eighteen statements of attitudes about supporting aged parents was administered to 134 students in a Nigerian teacher training college. Students expressed strong support for caring for aged parents; however, male students were not as keen about supporting aged parents as were females. Students' age correlated negatively with the desire to support aged parents in that older students were less willing to care for their aged parents than were younger students. Factors such as birth order, place of residence in the past five years, religion, and educational levels of the mother and father had no significant relationship with attitudes toward supporting aged parents.

Adolescent↗

The interaction of birth order and parental age on sexual orientation: an examination in two samples.

A birth order and sexual orientation relationship has been demonstrated numerous times in men, but a related variable, parental age (i.e. age of parents when the participant was born), has been less studied and has demonstrated contradictory results. In this research, the relations among birth order, parental age and sexual orientation were examined in a national probability sample of the US (Kessler, 1994; Kessler et al., 1994) and in a Canadian sample of homosexual and heterosexual men closely matched on demographic characteristics (Blanchard & Bogaert, 1996a). In both studies, an interaction between birth order and parental age was observed in men, such that there was positive association between number of older siblings and the likelihood of homosexuality, but this association weakened with increasing parental age. No significant effects were observed for women. The results are discussed in relation to recent theories of the birth order/sexual orientation relationship.

Adolescent↗

In search of correspondences between age at psychiatric breakdown and parental age at death--'anniversary reactions'.

The phenomenon of psychiatric breakdown occurring when the subject reaches the age his/her parent was at death, misleadingly referred to by Hilgard as an 'anniversary reaction', is examined. It is contrasted to breakdown occurring at the anniversary of the death of a significant person and compared with the concept of nemesis as described by Chapman. An attempt is made to assess the incidence and clinical characteristics of patients breaking down at times of such age correspondence in samples of early and late mother-bereaved women from North-East Scotland. It is concluded that the phenomenon is not common and is not associated with specific clinical features. Some illustrative cases are presented.

Adolescent↗

Parental age in sporadic hereditary retinoblastoma.

Of 104 children with sporadic hereditary retinoblastoma born between 1945 and 1970, we studied the age of their parents at the birth and compared this age with the mean age of parents at the birth of their children during the same period in The Netherlands. The mean age of fathers at the birth of their children with sporadic hereditary retinoblastoma (33.7 years) was significantly higher than the mean age of fathers at the birth of their children in the general population (32.5 years) (P less than .05, one sided). Similarly, the mean age of mothers at the birth of their children with sporadic hereditary retinoblastoma (31.2 years) was significantly higher than the mean age of mothers at the birth of their children in the general population (29.5 years) (P less than .05, one sided). We further analyzed this parental age factor by measuring the relative risk of age groups and comparing the incidence of sporadic hereditary retinoblastoma in the various parental age groups with the incidence of sporadic hereditary retinoblastoma in the total population. Mothers 35 years of age or older had a relative risk of 1.7 to have a child with sporadic hereditary retinoblastoma compared with mothers in the population in general (P = .006, one sided). Similarly, fathers 50 years of age or older had a relative risk of 5.0 to have a child with sporadic hereditary retinoblastoma compared with fathers in the population in general (P = .04, one sided). No parental age effect was found in children with nonhereditary retinoblastoma. We conclude that a high paternal and a high maternal age are significant risk factors for sporadic hereditary retinoblastoma.

Adult↗

Effects of host age, host density and parent age on reproduction of the filth fly parasite Urolepis rufipes (Hymenoptera: Pteromalidae).

Urolepis rufipes Ashmead, a pteromalid wasp, was recently discovered parasitizing house fly and stable fly pupae in eastern Nebraska dairies. Studies have been conducted on the biology of this parasite to evaluate its potential as a biological control agent of stable flies (Stomoxys calcitrans (L.] and house flies (Musca domestica L.). House fly pupae were suitable as hosts for U.rufipes at all ages; however, significantly higher parasitism occurred on host pupae aged 96-120 h. Parasite-induced mortality (host mortality without progeny production) was higher than for other pteromalid parasites of filth flies under similar conditions. Parasitism increased with parasite--host ratio at 20 degrees C; however, the opposite was noted at 30 degrees C for parasite--host ratios ranging from 5:50 to 50:50. Fly eclosion decreased as parasite--host ratio increased at 20 degrees C, and no host eclosion occurred at the highest parasite--host ratios (20:50 and 50:50) at 30 degrees C. Females produced an average of 18.6 female and 7.6 male progeny. 88% of the progeny were produced during the first 6 days post parental eclosion. The short life span, low progeny emergence rate and high per cent host eclosion, in comparison with other parasite species, suggests that the Nebraska strain of U.rufipes may not an effective biological control agent of house flies.

Age Factors↗