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Multicenter genetic study of retinitis pigmentosa in Japan: I. Genetic heterogeneity in typical retinitis pigmentosa.

A nationwide, multicenter study of typical retinitis pigmentosa (RP) was carried out in collaboration with 18 hospitals throughout Japan to obtain current information for genetic counseling. We analyzed the genetic heterogeneity of RP based on the parental consanguinity of 434 probands registered during a 6-month period in 1990. A gradual decline in the frequency of consanguineous marriage was recognized among the normal parents of RP patients. The relative frequencies of inheritance patterns were estimated as: autosomal recessive, 25.2%; autosomal dominant, 16.9%; X-linked, 1.6%; and simplex, 56.3%. A comparison of these results with previous reports in Japan revealed a decline in the relative frequency of autosomal recessive cases and an increase in simplex cases. This suggests a decrease in the incidence of autosomal recessive retinitis pigmentosa in Japan, as well as the necessity for exhaustive investigations aimed at identifying inheritance patterns for RP patients seeking genetic counseling.

Adolescent↗

A maternal genetic effect on the composition of mouse aggregation chimaeras.

Two series of 12 1/2 day mouse chimaeric conceptuses were produced by aggregating (C57BL x CBA)F2 strain preimplantation embryos with embryos that differed at the Gpi-1s locus that encodes glucose phosphate isomerase, GPI-1. The composition of individual issues was evaluated by quantitative electrophoresis to estimate the % GPI-1A in the chimaeric tissue containing GPI-1A and GPI-1B. In one series of chimaeras, the GPI-1A cells were derived from a backcross between inbred BALB/c strain females and (BC x BALB/c)F1 males, where BC is the partly congenic strain C57BL/Ola.AKR-Gpi-lsa,c/Ws. In the other series of chimaeras, the GPI-1A cells were derived from the reciprocal backcross between (BC x BALB/c)F1 females and inbred BALB/c strain males. The [(BC x BALB/c)F1 female x BALB/c male]<==>(C57BL x CBA)F2 series of chimaeras was reasonably balanced so that GPI-1A and GPI-1B cells were fairly equally represented in the foetuses, placentas and extraembryonic membranes (tissue means: 37-51% GPI-1A). This series did not differ significantly in composition from an earlier series of (BC x BALB/c)F2<==>(C57BL x CBA)F2 chimaeras. However, the [BALB/c female x (BC x BALB/c)F1 male]<==>(C57BL x CBA)F2 series of chimaeras was unbalanced, with mean tissue compositions (28-33% GPI-1A) that were intermediate between the above two balanced series and the unbalanced (BALB/c x BALB/c)<==>(C57BL x CBA)F2 series (tissue means: 14-22% GPI-1A), that was studied previously. Thus, both (BALB/c x BALB/c) and [BALB/c x (BC x BALB/c)F1] embryos contributed less to the tissues of chimaeric conceptuses than either (BC x BALB/c)F2 or [BC x BALB/c)F1 x BALB/c] embryos. This implies that embryos from BALB/c mothers contributed less to the tissues of chimaeric conceptuses than embryos from (BC x BALB/c)F1 mothers. We, therefore, conclude that a maternal genetic effect is responsible for some of the differences in composition among the four groups of chimaeras. This maternal effect must act before the 8-cell stage but it is not yet known whether it is mediated via cytoplasmic inheritance, genomic imprinting or by the reproductive tract. Evidence that a maternal effect retards preimplantation development of embryos from BALB/c females is reviewed and the possibility that this might cause them to contribute poorly to chimaeric conceptuses when aggregated with more precociously developing embryos is discussed.

Alleles↗

Virus-induced diabetes mellitus. IV. Genetic and environmental factors influencing the development of diabetes after infection with the M variant of encephalomyocarditis virus.

The M variant of encephalomyocarditis virus (EMC) infects pancreatic beta cells and causes the development of a diabetic syndrome in susceptible strains of mice. By examining four F1 crosses of susceptible and resistant strains of mice, we found that the development of diabetes after infection was inherited as a recessive trait. Analysis of the data from the F2 generation indicated that more than one gene was involved in the development of EMC-diabetes. The severity and frequency of abnormal glucose levels in EMC-infected animals was markedly influenced by environmental factors.

Animals↗

Maternal inheritance and the evaluation of oxidative phosphorylation diseases.

Mitochondrial DNA is more susceptible than nuclear DNA to mutations. Mitochondrial mutations have been associated with a range of disorders, some of which can be inherited maternally as well as by mendelian patterns. The oxidative phosphorylation diseases are a group of such disorders characterised by a complex phenotype; the Kearns-Sayre syndrome, for example, can include cardiac abnormalities, diabetes mellitus, cerebellar ataxia, and deafness. An understanding of the genetic and biochemical basis of these disorders will help in the adoption of a systematic approach to their diagnosis and to patient management.

DNA↗

Epigenetic inheritance and the intergenerational transfer of experience.

Currently, behavioral development is thought to result from the interplay among genetic inheritance, congenital characteristics, cultural contexts, and parental practices as they directly impact the individual. Evolutionary ecology points to another contributor, epigenetic inheritance, the transmission to offspring of parental phenotypic responses to environmental challenges-even when the young do not experience the challenges themselves. Genetic inheritance is not altered, gene expression is. Organismic pathways for such transmission exist. Maternal stress during the latter half of a daughter's gestation may affect not only the daughter's but also grand-offspring's physical growth. The author argues that temperamental variation may be influenced in the same way. Implications for theory and research design are presented along with testable predictions.

Animals↗

Direct evidence for extensive paternal mitochondrial DNA inheritance in the marine mussel Mytilus.

Inheritance of mitochondrial DNA in animals was thought to be strictly maternal. Recently, evidence for incidental paternal mtDNA leakage was obtained in hybrid crosses of Drosophila and mice. In mice, the frequency of paternal mtDNA contributions was estimated at 10(-4), compared with maternal contributions. The common occurrence in the marine mussel Mytilus of heteroplasmic individuals with two or more types of highly diverged mtDNA molecules was interpreted as strong evidence for biparental mtDNA inheritance by some, but not by others. We report here results from pair-matings involving two species of mussels, Mytilus edulis and Mytilus trossulus. Extensive contribution of paternal mtDNA, amounting to several orders of magnitude higher than that inferred for Drosophila or mice, was observed in both intra- and interspecific crosses.

Alleles↗

Adaptive changes in degree of eye reduction in eyeless mutants of Drosophila melanogaster after thermal shock during the critical periods of faceted eye development.

Brief heating of the oocytes and larvae of eyeless mutants during the critical periods of faceted-eye development caused an increase in the thermal sensitivity of the eye rudiments, which led to an increase in the number of one-eyed individuals among the flies that hatched. These changes eye development were transmitted through a number of successive generations without exposure to additional thermal shock, by maternal inheritance. It was established that repeated heating of oocytes and larvae of eyeless mutants whose ancestors had been subjected to similar heating during the same stages of development caused a decrease rather than the expected increase in thermal sensitivity, i.e., there was an adaptive increase in the thermostability of the eye rudiments. Thus, the effect of reheating was the opposite of that of the original heating.

Animals↗

Genetics of inbred Drosophila melanogaster. XXIV. Effects on the strength of the M-type.

Several branches with genome from either of two inbred lines of Drosophila melanogaster, introduced into various sources of cytoplasms, were used in tests of the strength of the M-type. In contrast to the conventional tests of dysgenesis, we examined primary non-disjunction and chromosome loss in successive broods from M/P hybrid females. In broods from the 2nd week of egg-laying, there were increased frequencies of X0-males and a strong depression of fertility. There were no indications of cytoplasmic influence on the M-type. In a third line with the same cytoplasm as in a couple of the above mentioned ones, there was a lower effect on chromosome loss and on fertility. Crosses between different genotypes, but with the same source of cytoplasm, suggested a delayed genic influence in maternal inheritance. Tests of recombination in the X-chromosome indicated a gradual depression from the mid part to the distal end. There seemed to be no genic effect on the depression of recombination. It is suggested that there are pleiotropic effects of the P-factors and that the response to the various processes could be under both genic and cytoplasmic control in the M-type females.

Animals↗

An approach to population and evolutionary genetic theory for genes in mitochondria and chloroplasts, and some results.

We developed population genetic theory for organelle genes, using an infinite alleles model appropriate for molecular genetic data, and considering the effects of mutation and random drift on the frequencies of selectively neutral alleles. The effects of maternal inheritance and vegetative segregation of organelle genes are dealt with by defining new effective gene numbers, and substituting these for 2N(e) in classical theory of nuclear genes for diploid organisms. We define three different effective gene numbers. The most general is N(lambda), defined as a function of population size, number of organelle genomes per cell, and proportions of genes contributed by male and female gametes to the zygote. In many organisms, vegetative segregation of organelle genomes and intracellular random drift of organelle gene frequencies combine to produce a predominance of homoplasmic cells within individuals in the population. Then, the effective number of organelle genes is N(eo), a simple function of the numbers of males and females and of the maternal and paternal contributions to the zygote. Finally, when the paternal contribution is very small, N( eo) is closely approximated by the number of females, N( f). Then if the sex ratio is 1, the mean time to fixation or loss of new mutations is approximately two times longer for nuclear genes than for organelle genes, and gene diversity is approximately four times greater. The difference between nuclear and organelle genes disappears or is reversed in animals in which males have large harems. The differences between nuclear and organelle gene behavior caused by maternal inheritance and vegetative segregation are generally small and may be overshadowed by differences in mutation rates to neutral alleles. For monoecious organisms, the effective number of organelle genes is approximately equal to the total population size N. We also show that a population can be effectively subdivided for organelle genes at migration rates which result in panmixis for nuclear genes, especially if males migrate more than females.

Alleles↗

X-linked dominant inheritance in palmoplantar keratoderma with leukokeratosis: a study of the pedigree of two cases.

Keratoderma of the palms and soles is not of rare occurrence. Its association with leukokeratosis of the mouth is well recognized. We describe two siblings having callosities like keratoderma over the weight bearing areas of soles, pressure areas of palms and palmar creases with leukokeratosis of cheeks. On study of the pedigree of these probands we could trace the trait transmission by a rare X-linked dominant mechanism.

Adult↗

Mitochondrial inheritance in Aspergillus nidulans.

Mitochondrial chloramphenicol and oligomycin resistance mutations were used to investigate mitochondrial inheritance in A. nidulans. Mitochondrial RFLPs could not be used to distinguish between paternal and maternal mitochondria because none were detected in the 54 isolates investigated. Several thousand ascospores from each of 111 hybrid cleistothecia from 21 different crosses between 7 heterokaryon incompatible isolates were tested for biparental inheritance. All mitochondrial inheritance was strictly uniparental. Not one instance of paternal inheritance of mitochondria was observed. The implications of our results for the theory that uniparental inheritance evolved to avoid cytoplasmic conflict are discussed. Possible explanations for the maintenance of strict uniparental inheritance of mitochondria in an inbreeding homothallic organism are suggested. The chloramphenicol resistance marker was inherited preferentially to the oligomycin resistance marker probably due to the inhibited energy production of mitochondria with the oligomycin resistance mutation. The maternal parent was determined for 93 hybrid cleistothecia from 17 crosses between 7 different strains. Contrary to previous reports A. nidulans strains functioned as both maternal and paternal parent in most crosses.

Aspergillus nidulans↗

[Mitochondrial disorders: a classification for the 21st century].

Mitochondrial encephalomyopathies were described in the 60's when accumulation of mitochondria were observed in patients with exercise intolerance. The electronic transport chain is located in the mitochondria and forms the oxidative phosphorylation (OXPHOS) system that produces ATP in the cell. The electronic transport chain is coded by two different genomes, nuclear and mitochondrial, with different genetic characteristics. The main differences between nuclear and mitochondrial genetics are heteroplasmy and threshold effect, mitotic segregation and maternal inheritance. Mitochondrial diseases are due to defects in the genes encoding proteins involved in some mitochondrial pathways. Those genes may be ARNts, structural proteins of the electronic transport chain or associated proteins of the mitochondria (transporters or assembly proteins). Alterations in those genes may be point mutations, deletions or duplications in the mitochondrial DNA and alterations of the genomic signaling between nucleus and mitochondria.

Cell Nucleus↗

The bottleneck: mitochondrial imperatives in oogenesis and ovarian follicular fate.

Molecular geneticists and ovarian physiologists today face the challenge of defining and reconciling two major biological imperatives that each center on oogenesis, folliculogenesis and competition between ovarian follicles: (1), defining how the mitochondrial genome--important in both aging and a number of serious mitochondrial diseases--is refreshed and purified as it passes, via the oocyte's cytoplasm, from one generation to the next; and (2), endeavouring to discover what cytoplasmic factor(s) it is that permits some eggs but not others to produce viable embryos and ongoing pregnancies. We review here in detail the passage of mitochondria through the female germ cell line. For mitochondria, the processes of oogenesis, follicle formation and loss constitute a restriction/amplification/constraint event of the kind predicted by L. Chao for purification and refinement of a haploid genome. We argue that maintaining the integrity of mitochondrial inheritance is such a strong evolutionary imperative that we should expect at least some features of ovarian follicular formation, function and loss to be primarily adapted to this specific purpose. We predict, moreover, that to prevent accumulation of mild mitochondrial genomes in the population there is a need for physiological female sterility prior to total depletion of ovarian oocytes, a phenomenon for which there is empirical evidence and which we term the oöpause.

DNA, Mitochondrial↗

Incidence and inheritance of resistance to METI-acaricides in European strains of the two-spotted spider mite (Tetranychus urticae) (Acari: Tetranychidae).

A strain of Tetranychus urticae (Koch; Acari: Tetranychidae), collected from hops (Humulus humuli L; Cannabaceae) in England with a short history of tebufenpyrad use, exhibited resistance to four METI (mitochondrial electron transport inhibitor)-acaricides; tebufenpyrad, pyridaben, fenazaquin and fenpyroximate. Resistance factors for these compounds in a microimmersion assay were 46, 346, 168 and 77 respectively, and corresponded to those exhibited by a Japanese METI-acaricide-resistant reference strain. Levels of resistance remained stable without further selection, and selection with tebufenpyrad did not increase them. The UK strain was also resistant (c 6-fold) to bifenthrin. Crosses of homozygous, diploid females with hemizygous, haploid males showed that, in the UK strain, METI-acaricide resistance was paternally and maternally inherited, and was an incompletely dominant trait. Another tebufenpyrad-resistant strain from the UK, originating from a chrysanthemum nursery (Chrysanthemum foeniculaceum Giseke; Asteraceae) was collected eight months later at a site c 210 km distant from the first. These are the first published incidences of METI-acaricide resistance in Europe and implications for the future use of these compounds are discussed.

Animals↗

The dynamics of pAL2-1 homologous linear plasmids in Podospora anserina.

A natural population of recently isolated Podospora anserina strains was screened for homologues of the linear longevity-inducing plasmid pAL2-1. Of the 78 wild-type isolates, 14 hybridised with a pAL2-1 specific probe, half of which contained a single plasmid and the other half multiple plasmid copies (plasmid family). All strains except one plasmid-containing strain, senesced normally. However, no inserted plasmid sequences were detected in the mitochondrial DNA, as was the case for the longevity-inducing pAL2-1 plasmid. Occasional loss of plasmids and of repeated plasmid sequences occurred during sexual transfer. Plasmid transmission was equally efficient for mono- and dikaryotic spores and was independent of the genetic background of the strains. Furthermore, horizontal transfer experiments showed that the linear plasmid could easily infect plasmid-free strains. Horizontal transfer was even observed between strains showing a clear vegetative incompatibility response (barrage). The linear plasmids are inherited maternally; however, paternal transmission was observed in crosses between confronted vegetative-incompatible strains. Paternal transmission of the plasmid was never observed using isolated spermatia for fertilisation, showing that mitochondrial plasmids can only gain access to maternal sexual reproductive structures following horizontal transfer. These findings have implications for both the function of vegetative incompatibility in fungi and for the mechanism of maintenance of linear plasmids.

Ascomycota↗

Two models for a maternal factor in the inheritance of Huntington disease.

Huntington disease is a classic example of an autosomal dominant trait. Over the years, however, a number of investigators have reported anomalies regarding the age of onset of the disease that are inconsistent with this paradigm. We propose two models in which a maternal factor--cytoplasmic in one case, autosomal or X-linked in the other--acts to delay onset in a manner consistent with the previously reported anomalies. Relevant data from the Huntington's Disease Research Roster are presented that reinforce and extend the previous observations.

Adolescent↗

Dissimilarities in the process of formation of Curiaú, a semi-isolated Afro-Brazilian population of the Amazon region.

The genetic consequences of the social policy of the past in relation to the formation of Afro-Brazilian societies are interesting and have been studied at various biological levels (classical polymorphisms and the mitochondrial and nuclear levels. These allow the estimation of the contribution of African genes and the participation of other ethnic groups in the formation of these communities. With this objective, uniparental systems of exclusively maternal (mtDNA) or paternal (Y-DNA) inheritance in the Curiaú community were analyzed. The results demonstrate a differential contribution of the maternal and paternal genetic systems. Thirty-three sequences were identified by mtDNA analysis; 53% showing an African and 47% an Amerindian origin. For the paternal system, 57% were of African, 37% of European, and 6% of Amerindian origin.

Africa↗